WO2010109299A2 - Substituted 1, 4-dioxa-8-azaspiro [4,5] decanes useful as fungicides and a process for the preparation thereof - Google Patents

Substituted 1, 4-dioxa-8-azaspiro [4,5] decanes useful as fungicides and a process for the preparation thereof Download PDF

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WO2010109299A2
WO2010109299A2 PCT/IB2010/000648 IB2010000648W WO2010109299A2 WO 2010109299 A2 WO2010109299 A2 WO 2010109299A2 IB 2010000648 W IB2010000648 W IB 2010000648W WO 2010109299 A2 WO2010109299 A2 WO 2010109299A2
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azaspiro
dioxa
decane
group
compound
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PCT/IB2010/000648
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French (fr)
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WO2010109299A3 (en
WO2010109299A8 (en
Inventor
Mukund Vinayak Deshpande
Sunita Ranjan Deshpande
Fazal Shirazi
Preeti Madhukar Chaudhary
Nelavelli Malleswara Rao
Baidyanath Mohanty
Nageshwar Nath Sharma
Anand Kumar Bachhawat
Ganesan Kaliannan
Sanjoy Paul
Raj Kumar
Bommena Vittal Rao
Bhimrao Bodhanrao Gawali
Vaddu Venkata Narayana Reddy
Jhillu Singh Yadav
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Council Of Scientific & Industrial Research
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Priority to EP10717743.8A priority Critical patent/EP2410854B1/en
Priority to US13/260,720 priority patent/US8841296B2/en
Priority to BRPI1014213-4A priority patent/BRPI1014213A2/en
Priority to JP2012501405A priority patent/JP5738268B2/en
Priority to AU2010227195A priority patent/AU2010227195B2/en
Publication of WO2010109299A2 publication Critical patent/WO2010109299A2/en
Publication of WO2010109299A3 publication Critical patent/WO2010109299A3/en
Priority to IL215299A priority patent/IL215299A/en
Publication of WO2010109299A8 publication Critical patent/WO2010109299A8/en

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    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07DHETEROCYCLIC COMPOUNDS
    • C07D498/00Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
    • C07D498/12Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains three hetero rings
    • C07D498/20Spiro-condensed systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P31/00Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
    • A61P31/10Antimycotics

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  • This present invention relates to substituted l ,4-dioxa-8-azaspiro[4,5] decane of general formula ( 1 )
  • R2 is selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C l -
  • the present invention also relates to the process for the preparation of substituted 1 , 4- dioxa-8-azaspiro [4,5] decane of general formula ( 1).
  • the present invention further relates to fungicidal activity of substituted I .
  • fungicidal compounds that are widely used include triazole and strobilurin fungicides. But generally fungi develop resistance to antifungal agents easily, so also with the triazoles and strobilurins. Therefore, there is an urgent need in the art to have compounds to which fungi are not resistant. Also, the newly synthesized compounds should show fungicidal effect with high efficacy and low toxicity.
  • the invention discloses compounds that are substituted l,4-dioxa-8-aza-spiro[4,5]decane as fungicidal agents.
  • the main objective of the present invention is to provide substituted I , 4-dioxa-8- azaspiro [4, 5] decane of general formula (1).
  • the present invention provides substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds of general formula 1
  • Rl is selected from the group consisting of alkyl (C 1 -C6), substituted alkyl (C 1-C6), or substituted aryl (unsaturated) and substituted heteroaryl and R2 is selected from the group comsisting of halo group, hydroxyl group, thio group, amino group, alkyl (C I -C6), substituted alkyl (C 1 -C6), substituted aryl (unsaturated) and substituted heteroaryl.
  • the present invention provides substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds as claimed in claim 1 , wherein R l is selected from the group consisting of 2-phenethyl. 4,6-dimethoxypyrimidin-2-ylmethyl, (2-chlorothiazol- 5-yl)methyl and R2 is selected from the group consisting of hydroxy, 4-bromo-2- chlorophenoxy, morpholin-4-yl (2-chloro-5-thiazolyl)methyloxy, benzyloxy; phenylsulfanyl, benzotriazol- 1 -yl and 5-chIoro-2-fluoroanilino.
  • substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are represented by:
  • process for the preparation of compounds (2) to (6) of general formula 1 comprises the steps of: i. providing compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8- azaspiro [4,5] decane(l );
  • step (i) 8-azaspiro[4,5]decane ( 1 ) as provided in step (i) with a reagent selected from the group consisting of 2-chloro-4-bromophcnol. morpholine, 2-chloro-5-chloromethyl-thiazole, benzyl chloride. and thiophenol, in the presence of catalyst in an organic solvent to obtain a reaction mixture; iii. stirring the reaction mixture as obtained in step (ii) at a temperature in the range of 25-120°C for a period of I O to 20 hrs; iv. cooling the solution as obtained in step (iii) to a temperature of
  • step (iv) filtering, purifying the cooled solution as obtained in step (iv) by known method to obtain the desired compounds of formula (2) to (6),
  • compound 2 is obtained with reagent 2-chloro-4-bromophenol.
  • compound 3 is obtained with reagent morpholine.
  • compound 4 is obtained with reagent 2-chloro-5-chloromethyl-thiazole.
  • compound 5 is obtained with reagent benzyl chloride.
  • compound 6 is obtained with reagent thiophenol.
  • the catalyst used in step (ii) for the preparation of compounds 4 and 5 is tetrabutylammonium bromide (TBAB).
  • the catalyst used in step (ii) for the preparation of compounds 2, 3 and 6 is para toluene sulfonic acid (PTSA).
  • the reaction for the preparation of compounds 4 and 5 in step (ii) is carried out in the presence of sodium hydride.
  • step (I I) cooling the stirred solution as obtained in step (I I) to a temperature of 25-3O 0 C and distilling solvent to obtain the compound 2-(benzotriazol- 1 -yl)methyl-8-(4,6-dimetho ⁇ y- pyrimidin-2-yl)- l ,4-dioxa-8-azaspiro[4,5] decane (7).
  • step (b) reacting the above said resultant compound with 5-cholro-2- fluoroaniline in the presence of potassium carbonate and potassium iodide, under stirring, at a temperature of 100- 150 °C, for a period of 20- 30hrs, (c) cooling the stirred solution as obtained in step (II) to a temperature of
  • substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are fungicidal.
  • substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are showing fungicidal activity against wide range of fungi selected from the group consisting of, but not limited to Pyricularia oryazac, RJiizoctonia solani, Pythium aphanidematum, Dreshlera oryazae, Collatrolricum capsicum, Fusarium oxysporum and Magnaportha grisea.
  • substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds show 40- 100% inhibition against all the test pathogens.
  • formulation for fungicidal activity comprises at least one active compound of general formula ( 1 )
  • R I is selected from the group consisting of alkyl with 1 to 6 carbon atoms , substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heleroaryl and R2 is selected from the group consisting of halo group, hydroxyl group, lhio group, amino group, alkyl (C 1 -C6), substituted alkyl (C I -C6), substituted aryl (un), and substituted heteroaryl.
  • the formulation comprises a) at least one active compound of general formula ( 1 )
  • R l is selected from the group consisting of alkyl with I to 6 carbon atoms, substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heteroaryl and R2 selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C 1 -C6), substituted alkyl (C 1 -C6), substituted aryl (un), and substituted heteroaryl, wherein said formulation is selected from the group consisting of Emulsifiable Concentrate (EC), Suspension Concentrate (SC) or Water Dispersible Granules (WDG).
  • EC Emulsifiable Concentrate
  • SC Suspension Concentrate
  • WDG Water Dispersible Granules
  • Emulsifiable Concentrate is formulated as: a) active ingredient 20-25% b) emulsifier 10-20 wt% and c) an organic solvent 60-70wt%.
  • emulsifier used is a mixture of calcium dodecylbenzene sulfonate and styrinated ethoxylated phenol in the ratio of 3:7.
  • organic solvent used is selected from the group consisting of toluene, N-methylpyrrolidinone, cyclohexanone and C-IX (petroleum fraction).
  • Suspension Concentrate is formulated as: a) Active ingredient (a.i.) 3% to 72% b) Dispersing agent / c) Suspending agent 3 to 15% d) Wetting agent 1 % to 2% e) Anti freezing agent 5% to 15% f) Anti fungal agent 0.05% to 0.2 % g) Anti foam agent 0.2% to 1 .0% h) Thickening agent(s) 0.1% to 1 .0% i) Demineralized water: Balance
  • WDG Water Dispersible Granules
  • the present invention further provides a process for the preparation of compound ( I ) to (6) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( 1 ) and the said process comprising the steps of a) passing dry HCI gas into N substituted-4-piperidone taken in toluene, followed by adding glycerol, at a temperature of 25-90 °C to obtain the compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4,5
  • the present invention further provides a process for the preparation of compound (7) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( I ) and the said process comprising the steps of passing dry HCI gas into the solution N-(4,6-dimethoxypyrimidin-2yl)-4- piperidone and glycerol in DMF to obtain the compound 2-chloromethyl-8- (4,6-dimethoxy-pyrimidin-2-yl)- l ,4-dioxa-8-azaspiro [4,5] decane and reacting the above said resultant compound with benzotriazole, in the presence of potassium carbonate, under stirring, at a temperature of 100- 150 °C, for a period of 20-30hrs, followed by cooling up to 25-30 0 C and distilling of the solvent to obtain the compound 2-(benzotriazol- l -yl)methyl- 8-(4,6-dimethoxy-pyrimidin-2-yl)-l
  • the present invention further provides a process for the preparation of compound (8) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( 1 ) and the said process comprising the steps of passing dry HCI gas into the solution 2-hydroxymethyl-8-(2-chloro-5- thiazolyl) methyl)-l ,4-dioxa-8-azaspiro[4,5]decane, methanol in DMF to obtain the 2-chloromethyl-8-(2-chloro-5-thiazolyl)methyl- l ,4-dioxa-8- azaspiro[4,5]decane and reacting the above said resultant compound with 5- cholro-2-fluoroaniline, in the presence of potassium carbonate and potassium iodide, under stirring, at a temperature of 100- 150 °C, for a period of 20-
  • the catalyst used in step (b) for the preparation of compounds 1 , 4 and 5 is tetrabutylammonium bromide (TBAB).
  • step (b) The catalyst used in step (b) for the preparation of compounds 2, 3 and 6 is para toluenesulfonic acid (PTSA).
  • PTSA para toluenesulfonic acid
  • the reaction for the preparation of compound 4 and 5 in step (b) is carried out in the presence of sodium hydride.
  • the fungicidal compounds of the invention are formulated as Emulsifiable Concentrate (EC), Suspension Concentrate (SC) and Water Dispersible Granules (WDG).
  • the formulation comprises at least one active compound of general formula ( 1 ).
  • the emulsion concentrate (EC) of the invention was formulated as exemplified herein Active ingredient : 20-25%
  • Emulsifier 10-20 wt%
  • the emulsifier used is a mixture of calcium dodecylbenzene sulfonate and styrinatcd ethoxylated phenol in the range of 3:7.
  • the organic solvent used is selected from the group consisting of N- methylpyrrolidinone, cyclohexanone and C-IX (petroleum fraction).
  • the water dispersible granules (WDG) of the invention was formulated as exemplified herein
  • Active ingredient ( a.i.) - 2.5% to 90%
  • Anti foam agent 0.2% to 1.0%
  • the dispersing/suspending agent is polycondensate of sodium methylnaphthalcne and formaldehyde.
  • the wetting agent is anionic surfactant belonging to sulphatcd fatty alcohol class.
  • the anti foam agent is dimethylpolysiloxane.
  • Anti freezing agent 5% to 15%
  • Anti fungal agent 0.05% to 0.2 %
  • Anti foam agent 0.2% to 1.0%
  • Thickening agent(s) 0.1% to 1 .0% Demineralized water -- Balance
  • the anti freezing agent is propylene glycol and the thickening agent is gum heteropolysaccharide, preferably xanthan gum and the anti fungal agent is 1 ,2- benzisothiazolin-3-one EXAMPLES
  • Example 1 The present invention will be more specifically explained by following examples. However, the scope of the present invention is not limited to the scope of these examples below.
  • Example 1 The present invention is not limited to the scope of these examples below.
  • phase transfer catalyst tetrabutylammonium bromide TBAB 2 gm was added and 3 1 gm of 2-chloro-5- chloromethylthiazole in toluene (225 ml) was then added drop wise at 10 0 C and the reaction mixture was refluxed for 15 hrs. The reaction mixture was washed with water and the product was extracted with methylene chloride 100 ml. The solvent was distilled off to get thick dark colored liquid. The yield of the product was 85%.
  • Example 5 Preparation of 2-benzyloxymethyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4.5] decane (Compound 5)
  • Example 7 Preparation of 2-hydroxymethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)-l ,4-dioxa-8- azaspiro[4,5]decane (starting material for the preparation of Compound-7) 25 g of piperdone hydrochloride was slowly added in lots to 2g of TBAB and 67g of K2CO3 in 250 ml of acetonitrile at 50-60° (provide exact value), then 25 g of piperdone hydrochloride was slowly added in lots and the reaction mixture stirred for I hr. 29 g of 4,6-dimethoxy-2- chloropyrimidine was added slowly over a period of I hr and the reaction mixture was refluxed for 1 1 hours at 60 0 C.
  • reaction mixture was neutralized with aq.NaOH solution and extracted with MDC, (methylene dichloride). Organic layer was distilled off to get l -(4-6-dimctho ⁇ y- pyrimidin-2-yl)-piperidin-4-one.
  • DOCUMENT TYPE Patent CA Section: 28 (Heterocyclic Compounds (More Than One Hetero Atom)) Section cross-reference(s): 45
  • Example 10 Preparation of l-(2-chloro-5-thiazolylmethyl) piperidine 4-one 25 gm of piperidone hydrochloride was taken in 250 ml acetonitrile. 68.7 gm Of K 2 COj was added under stirring at 60 0 C, followed by addition of 27.8 gm of 2-chloro-5- chloromethylthiazole and refluxed for 6 hours.
  • Grind blended material on Air jet mill add 15 g water in air jet material & make dough in Sigma mixer. Pass the dough thro' die roller extruder. Collect extruded granules and dry in dryer. Sieve the dried granules. Pack the material after getting clearance from QA.
  • aphanidermatum were inoculated in potato dextrose broth at 28 °C for 48 hr.
  • Compounds were solubilized in DMSO (2.5% v/v) and stock solution of 1 .28 mg/ml was prepared.
  • the medium was distributed equally into the petri plates and allow the medium to solidify. The suitable number of replications for each treatment was maintained.
  • the actively growing test organisms were taken in pelri plates. Small uniform discs of the test fungal culture were cut using sterile cork borer (7 mm) and each one of them were transferred aseptically to the centre of petri plates.
  • the solvent control was maintained by adding 2.5% of solvent used in the experiment to the media and pouring into the plate. Suitable checks were maintained by transferring discs of test organisms to petri plates containing medium without the compound or the solvent. Both the treated plates and control plates were incubated at 28 °C. The colony diameter was measured at 24 hour intervals and mean values calculated.
  • FUNGICIDAL ACTIVITY All the synthesized compounds were evaluated for fungicidal activity against plant pathogenic fungi and all were found to be active. Compound 7 exhibited 40-60% of inhibition against R.solani, F.oxysporum and P .aphanidermatum, whereas compound 8 showed 50-60% inhibition against P.aphnidermatum, . Compound 5 exhibited 40-50% inhibition against R.solani and F.oxysporum, whereas 60-70% against D.oryzae and M.grisea. Compound 4 showed 20-30% of inhibition against all the tested strains. Compounds 2 and 6 were found to be active against all pathogens.
  • Compound 2 showed 90- 100% inhibition against all the test pathogens where as, compound 6 inhibited 90- 100% growth of Rhi ⁇ octonia solani and 60-90% that of C. capsici, D. oi ⁇ zae, F.oxysporum and P. or ⁇ ae.
  • Compound 3 registered 70-80% inhibition of R.solani, F.oxysporum; 60-70% of D. oryzae and 40-50% of P. oty ⁇ ae.
  • 2(20%EC), 6(20%EC) and mixture of 2 and 6 (3: 1, 20 % EC) were evaluated to find out their efficacy in controlling grape downy mildew in comparison with standards.
  • a field experiment was conducted on pruned grapevine, in a randomized block design with ten treatments (Table No. 3) and three replications. Two sprays were given at an interval of 6 days starting at 28 days after pruning. The plot size was ten vines per treatment/ replication. The spraying was done by Knapsack sprayer using 1000 L spray volume/hectare. The observations on downy mildew incidence were recorded from 10 randomly selected branches/treatment/replication by counting the total number of leaves and number of downy mildew infected leaves at 7 and 10 days after second spray.
  • Grape Downy mildew (7 Days after 2 nd spray) From the results presented in the Table No 3, it is evident that, both the doses of Compound 2, 20 % EC @ 400 & 800 g a. i./ha were found comparable with standard check fungicides Metalaxyl 8 % + Mancozeb 64 % 72 WP @ (80 + 640 g a. i./ha). Azoxystrobin 23 SC @ 230 g a. i./ha and Dimethomorph 50 WP @ 500 g a. i./ha effective in controlling downy mildew and registered 2.39 to 6.01 % incidence and reduction over untreated check 64.33 to 85.81 %. The untreated check recorded highest downy mildew incidence of 16.85 %. Grape Downy mildew (10 Days after 2 nd spray)
  • Compound 2 20% EC @ 800 g a. i./ha was found to be at par with standard check fungicides, Metalaxyl 8 % + Mancozeb 64 % 72 WP @ (80 + 640 g a. i./ha), Azoxystrobin 23 SC @ 230 g a. i./ha and Dimethomorph 50 WP @ 500 g a. i./ha in controlling downy mildew and registered per cent incidence in the range of 2.42 to 5.27. The untreated check recorded highest downy mildew incidence of 22.78 %.
  • the observations on powdery mildew incidence were recorded from 10 randomly selected branches/treatment/replication by counting total number of leaves and number of powdery mildew infected leaves at 4 days after first spraying. Based on the observations percent incidence was worked out. The data was subjected to statistical analysis.
  • the main advantage of the present invention is: Substituted l ,4-dioxa-8-azaspiro[4,5] decane are useful as fungicidal compound alone or in combination.

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Abstract

This invention relates provides novel substituted 1, 4-dioxa-8-azaspiro[4,5 ]decanc of general formula (1), wherein R1 is selected from phenethyl, 4, 6-dimethoxypyrimidin- 2-yl and (2-chloro-5-thiazolyl) methyl and R2 is selected from the group consisting of hydroxy, 4-bromo-2-chlorophenoxy, morpholin-4-yl, (2-chloro-5-thiazolyl) methyloxy, benzyloxy, phenylsulfanyl, benzotriazol- 1 -yl and 5-chloro-2-fluoroanilino. The present invention also relates to a process for the preparation of novel substituted l,4-dioxa-8- azaspiro[4,5]decanes of general formula (1). The novel substituted l,4-dioxa-8- azaspiro[4,5]decane of general formula ( 1) has fungicidal activity.

Description

SUBSTITUTED 1, 4-DIOXA-8-AZASPIRO [4, 5] DECANES USEFUL AS FUNGICIDES AND A PROCESS FOR THE PREPARATION THEREOF
FIELD OF THE INVENTION
This present invention relates to substituted l ,4-dioxa-8-azaspiro[4,5] decane of general formula ( 1 )
Figure imgf000002_0001
General formula ( 1 ) wherein Rl is selected from the group consisting of alkyl(C l-Cό), substituted alkyl
(C1-C6) or substituted aryl (un) and substituted heteroaryl and R2 is selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C l -
C6), substituted alkyl (C 1-C6), substituted aryl (un) and substituted heteroaryl.
The present invention also relates to the process for the preparation of substituted 1 , 4- dioxa-8-azaspiro [4,5] decane of general formula ( 1).
The present invention further relates to fungicidal activity of substituted I . 4-dioxa-8- azaspiro [4,5] decane of general formula (1 ), their and compositions comprising them.
BACK GROUND OF THE INVENTION AND PRIOR ART
During the last decade, there has been tremendous increase in the frequency of fungal infections. The current fungicidal compounds that are widely used include triazole and strobilurin fungicides. But generally fungi develop resistance to antifungal agents easily, so also with the triazoles and strobilurins. Therefore, there is an urgent need in the art to have compounds to which fungi are not resistant. Also, the newly synthesized compounds should show fungicidal effect with high efficacy and low toxicity. References may be made to patent application EP0833561, wherein fungicidal agents combining A) 8-t-butyl-2-(N-ethyl-N-n-propylamino)-methyl-l ,4- dioxaspiro[4,5]decane of formula (I), B) l -(4-chlorophenyl)-4,4-dimethyl-3-( 1 ,2,4,- triazol-l-yl-methyl)pentane-3-ol of formula (II) and C) a triazole derivative of formula (III) X = CH(OH) (triadimenol) (Ilia) or X = CO (triadimephon) (1Mb) having fungicidal properties is disclosed. References may be made to patent application JP3158631 , wherein dioxa-aza- (acetylphenyl) spirodecane. l, 4-Dioxa-8-aza-8-(4-acetylphenyl) spiro (4, 5) dccane of formula (1) as nonlinear optical materials comprising the spirodecane and compositions containing the spirodecane is disclosed. References may be made to patent application US 4900833, wherein titled "Asymmetrical ester derivatives of l ,4-dihydropyridine-3,5-dicarboxylic acid" relates to novel asymmetrical esters derived from l,4-dihydropyridine-3,5-dicarboxylic acid, of formula I, in which Rl represents a Cl — C4 alkyl group, R2 represents a C 1 -C4 alkyl group, a benzyl group, a benzoyl group or a phenyl group optionally substituted by one or more C l — C4 alkoxy, C l — C4 alkyl, cyano, nitro, hydroxyl or trifluoromethyl groups or by one or more halogen atoms, and R3 and R4, which are identical or different, each represent the hydrogen atom, a nitro group or a chlorine atom, their optical isomers and diastereoisomers and also the corresponding addition salts are disclosed. They are used as antihypertensive. To fulfill the need in the art for compounds that possess fungicidal activity and further to have fungicidal compounds to which the fungi have not developed resistance, the invention discloses compounds that are substituted l,4-dioxa-8-aza-spiro[4,5]decane as fungicidal agents.
OBJECTIVE OF THE INVENTION
The main objective of the present invention is to provide substituted I , 4-dioxa-8- azaspiro [4, 5] decane of general formula (1).
Another objective of the present invention is to provide a process for the preparation of substituted l ,4-dioxa-8-azaspiro[4,5] decane of general formula ( I ). Yet another objective of the present invention is to provide substituted I , 4-dioxa-8- azaspiro [4, 5] decane of general formula ( 1 ) having fungicidal activity. Still another objective of the present invention is to provide formulations of said compounds to be used as fungicides.
SUMMARY OF THE INVENTION
Accordingly, the present invention provides substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds of general formula 1
Figure imgf000004_0001
General formula 1 wherein Rl is selected from the group consisting of alkyl (C 1 -C6), substituted alkyl (C 1-C6), or substituted aryl (unsaturated) and substituted heteroaryl and R2 is selected from the group comsisting of halo group, hydroxyl group, thio group, amino group, alkyl (C I -C6), substituted alkyl (C 1 -C6), substituted aryl (unsaturated) and substituted heteroaryl.
In an embodiment, the present invention provides substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds as claimed in claim 1 , wherein R l is selected from the group consisting of 2-phenethyl. 4,6-dimethoxypyrimidin-2-ylmethyl, (2-chlorothiazol- 5-yl)methyl and R2 is selected from the group consisting of hydroxy, 4-bromo-2- chlorophenoxy, morpholin-4-yl (2-chloro-5-thiazolyl)methyloxy, benzyloxy; phenylsulfanyl, benzotriazol- 1 -yl and 5-chIoro-2-fluoroanilino.
In yet another embodiment of the present invention, substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are represented by:
2-(4-bromo-2-chlorophenoxy)methyl-8-phenethyl- l ,4-dioxa-8- azaspiro[4,5]decane (2);
Figure imgf000004_0002
2-(morpholin-4-yl)methyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4,5]decane (3);
Figure imgf000004_0003
2-(2-chloro-5-thiazolyl)methoxymethyl-8-phenethyl- 1 ,4-dioxa-8 azaspiro[4,5]decane (4);
Figure imgf000005_0001
2-benzyloxymethyl-8-phenethyl-l,4-dioxa-8-azaspiro[4,5]decane(5);
Figure imgf000005_0002
8-phenethyl-2-phenylsulphanylmethyl-l ,4-dioxa-8-azaspiro[4,5]decanc (6);
Figure imgf000005_0003
2-(benzotriazol-l-yl)methyl-8-(4,6-dimethoxy-pyrimidin-2-yl)-l ,4-dioxa- azaspiro[4,5]decane (7) and
Figure imgf000005_0004
N-(5-chloro-2-fluorophenyl)-N-[8-[(2-chloro-5-thiazolyl)methyl]- l ,4-dioxa- azaspiro[4,5]dec-2-yl] methanamine (8)
Figure imgf000005_0005
In yet another embodiment of the present invention, process for the preparation of compounds (2) to (6) of general formula 1 is provided and said process comprises the steps of: i. providing compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8- azaspiro [4,5] decane(l );
Figure imgf000005_0006
( I ) ii. reacting the compound 2-hydroxymethyl-8-phencthyl- l ,4-dioxa-
8-azaspiro[4,5]decane ( 1 ) as provided in step (i) with a reagent selected from the group consisting of 2-chloro-4-bromophcnol. morpholine, 2-chloro-5-chloromethyl-thiazole, benzyl chloride. and thiophenol, in the presence of catalyst in an organic solvent to obtain a reaction mixture; iii. stirring the reaction mixture as obtained in step (ii) at a temperature in the range of 25-120°C for a period of I O to 20 hrs; iv. cooling the solution as obtained in step (iii) to a temperature of
25-3O0C; v. filtering, purifying the cooled solution as obtained in step (iv) by known method to obtain the desired compounds of formula (2) to (6), In yet another embodiment of the present invention, compound 2 is obtained with reagent 2-chloro-4-bromophenol.
In yet another embodiment of the present invention, compound 3 is obtained with reagent morpholine.
In yet another embodiment of the present invention, compound 4 is obtained with reagent 2-chloro-5-chloromethyl-thiazole.
In yet another embodiment of the present invention, compound 5 is obtained with reagent benzyl chloride.
In yet another embodiment of the present invention, compound 6 is obtained with reagent thiophenol.
In yet another embodiment of the present invention, the catalyst used in step (ii) for the preparation of compounds 4 and 5 is tetrabutylammonium bromide (TBAB).
In yet another embodiment of the present invention, the catalyst used in step (ii) for the preparation of compounds 2, 3 and 6 is para toluene sulfonic acid (PTSA). In yet another embodiment of the present invention, the reaction for the preparation of compounds 4 and 5 in step (ii) is carried out in the presence of sodium hydride.
In yet another embodiment of the present invention, a process for preparation of compounds (7) of general formula ( 1 ) is disclosed, and said process comprises the steps of:
I. passing dry HCI gas into the solution of N-(4,6 dimethoλy pyrimidin-2-yl)-4-piperidone and glycerol in DM F to obtain the compound 2-chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-y I)- 1 ,4- dioxa-8-azaspiro [4,5] decane;
I I. reacting 2-chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)- l .4- dioxa-8-azaspiro [4,5] decane as obtained in step (1) with benzotriazole in the presence of potassium carbonate, under stirring, at a temperature of 100- 150 0C, for a period of 20-30 hrs; III. cooling the stirred solution as obtained in step (I I) to a temperature of 25-3O0C and distilling solvent to obtain the compound 2-(benzotriazol- 1 -yl)methyl-8-(4,6-dimetho\y- pyrimidin-2-yl)- l ,4-dioxa-8-azaspiro[4,5] decane (7).
In yet another embodiment of the present invention, a process for the preparation of compounds (8) of general formula ( 1 ) is disclosed and said process comprises the steps of:
(a) passing dry HCI gas into the solution of 2-hydroxymetnyl- 8-(2-chloro- 5-thiazolyl) methyl-l ,4-dioxa-8-azaspiro[4,5]decane. in DM F to obtain the 2-chloromethyl-8-(2-chloro-5-thiazolyl)methyl- 1 ,4-dioxa-8- azaspiro[4,5] decane;
(b) reacting the above said resultant compound with 5-cholro-2- fluoroaniline in the presence of potassium carbonate and potassium iodide, under stirring, at a temperature of 100- 150 °C, for a period of 20- 30hrs, (c) cooling the stirred solution as obtained in step (II) to a temperature of
25-30°C and distilling solvent to obtain the compound N-(5-chloro-2- fluorophenyl)-N-{8-(2-chloro-5-thiazolyl)methyl- l ,4-dioxa-8- azaspiro[4,5] dec-2-yl} methanamine (8). In yet another embodiment of the present invention, substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are fungicidal.
In yet another embodiment of the present invention, substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds are showing fungicidal activity against wide range of fungi selected from the group consisting of, but not limited to Pyricularia oryazac, RJiizoctonia solani, Pythium aphanidematum, Dreshlera oryazae, Collatrolricum capsicum, Fusarium oxysporum and Magnaportha grisea.
In yet another embodiment of the present invention, substituted l ,4-dioxa-8- azaspiro[4,5]decane compounds show 40- 100% inhibition against all the test pathogens.
In yet another embodiment of the present invention, formulation for fungicidal activity comprises at least one active compound of general formula ( 1 )
Figure imgf000008_0001
Formula ( 1 ) wherein R I is selected from the group consisting of alkyl with 1 to 6 carbon atoms , substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heleroaryl and R2 is selected from the group consisting of halo group, hydroxyl group, lhio group, amino group, alkyl (C 1 -C6), substituted alkyl (C I -C6), substituted aryl (un), and substituted heteroaryl.
In yet another embodiment of the present invention, the formulation comprises a) at least one active compound of general formula ( 1 )
Figure imgf000008_0002
Formula ( I ) wherein R l is selected from the group consisting of alkyl with I to 6 carbon atoms, substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heteroaryl and R2 selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C 1 -C6), substituted alkyl (C 1 -C6), substituted aryl (un), and substituted heteroaryl, wherein said formulation is selected from the group consisting of Emulsifiable Concentrate (EC), Suspension Concentrate (SC) or Water Dispersible Granules (WDG).
In yet another embodiment of the present invention, Emulsifiable Concentrate (EC) is formulated as: a) active ingredient 20-25% b) emulsifier 10-20 wt% and c) an organic solvent 60-70wt%.
In yet another embodiment of the present invention, emulsifier used is a mixture of calcium dodecylbenzene sulfonate and styrinated ethoxylated phenol in the ratio of 3:7.
In yet another embodiment of the present invention, organic solvent used is selected from the group consisting of toluene, N-methylpyrrolidinone, cyclohexanone and C-IX (petroleum fraction).
In yet another embodiment of the present invention, Suspension Concentrate (SC) is formulated as: a) Active ingredient (a.i.) 3% to 72% b) Dispersing agent / c) Suspending agent 3 to 15% d) Wetting agent 1 % to 2% e) Anti freezing agent 5% to 15% f) Anti fungal agent 0.05% to 0.2 % g) Anti foam agent 0.2% to 1 .0% h) Thickening agent(s) 0.1% to 1 .0% i) Demineralized water: Balance
In yet another embodiment of the present invention, Water Dispersible Granules (WDG) is formulated as: a) active ingredient 2.5% to 90% b) dispersing/suspending agent 3% to 15% c) wetting agent 1% to 3% d) anti foam agent 0.2% to 1 .0% e) precipitated sil ica (for free flowing) 1 % to 4% f) china clay (filler) Balance
DETAILED DESCRIPTION OF THE INVENTION Present invention provides substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( I ), wherein Rl is selected from the group consisting of alkyl (C I -C6), substituted alkyl (C 1 -C6), substituted aryl (un) and substituted heteroaryl and R2 is selected from the group consisting of halo group, hydroxyl group, thio group, am ino group, alkyl (C 1 -C6), substituted alkyl (C 1 -C6), substituted aryl (un) and substituted heteroaryl.
The present invention further provides a process for the preparation of compound ( I ) to (6) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( 1 ) and the said process comprising the steps of a) passing dry HCI gas into N substituted-4-piperidone taken in toluene, followed by adding glycerol, at a temperature of 25-90 °C to obtain the compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4,5 | decane( l ), b) reacting the compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8-a/.aspiro [4,5] decane ( 1 ) with a reagent selected from 2-chloro-4-bromophcnol, morpholine, 2-chloro-5-chloromethylthiazole, benzyl chloride, and thiophenol, in the presence of catalyst selected from para toluenesul Ionic acid (PTSA) and tetrabutylammonium bromide (TBAB), in organic solvent, under stirring , at a temperature in the range of 25- 12O0C, for a period of I O to 20 hrs, followed by cooling to a temperature of 25-30°C. filtration and purification by known method to obtain the desired compounds of formula
2-6.
The present invention further provides a process for the preparation of compound (7) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( I ) and the said process comprising the steps of passing dry HCI gas into the solution N-(4,6-dimethoxypyrimidin-2yl)-4- piperidone and glycerol in DMF to obtain the compound 2-chloromethyl-8- (4,6-dimethoxy-pyrimidin-2-yl)- l ,4-dioxa-8-azaspiro [4,5] decane and reacting the above said resultant compound with benzotriazole, in the presence of potassium carbonate, under stirring, at a temperature of 100- 150 °C, for a period of 20-30hrs, followed by cooling up to 25-300C and distilling of the solvent to obtain the compound 2-(benzotriazol- l -yl)methyl- 8-(4,6-dimethoxy-pyrimidin-2-yl)-l ,4-dioxa-8-azaspiro [4,5] decane (7). The present invention further provides a process for the preparation of compound (8) of substituted 1 , 4-dioxa-8-azaspiro [4, 5] decane of general formula ( 1 ) and the said process comprising the steps of passing dry HCI gas into the solution 2-hydroxymethyl-8-(2-chloro-5- thiazolyl) methyl)-l ,4-dioxa-8-azaspiro[4,5]decane, methanol in DMF to obtain the 2-chloromethyl-8-(2-chloro-5-thiazolyl)methyl- l ,4-dioxa-8- azaspiro[4,5]decane and reacting the above said resultant compound with 5- cholro-2-fluoroaniline, in the presence of potassium carbonate and potassium iodide, under stirring, at a temperature of 100- 150 °C, for a period of 20-
30hrs, followed by cooling up to 25-30°C and distilling of the solvent to obtain the compound N-(5-chloro-2-fluorophenyl)-N-{8-(2-chloro-5- thiazolyl)methyl-l ,4-dioxa-8-azaspiro[4,5]dec-2-yl} methanamine (8).
The catalyst used in step (b) for the preparation of compounds 1 , 4 and 5 is tetrabutylammonium bromide (TBAB).
The catalyst used in step (b) for the preparation of compounds 2, 3 and 6 is para toluenesulfonic acid (PTSA). The reaction for the preparation of compound 4 and 5 in step (b) is carried out in the presence of sodium hydride.
The fungicidal compounds of the invention are formulated as Emulsifiable Concentrate (EC), Suspension Concentrate (SC) and Water Dispersible Granules (WDG). The formulation comprises at least one active compound of general formula ( 1 ). The emulsion concentrate (EC) of the invention was formulated as exemplified herein Active ingredient : 20-25%
Emulsifier , : 10-20 wt%
An organic solvent : 60-70 wt%
The emulsifier used is a mixture of calcium dodecylbenzene sulfonate and styrinatcd ethoxylated phenol in the range of 3:7.
The organic solvent used is selected from the group consisting of N- methylpyrrolidinone, cyclohexanone and C-IX (petroleum fraction). The water dispersible granules (WDG) of the invention was formulated as exemplified herein
Active ingredient ( a.i.) - 2.5% to 90%
Dispersing/suspending agent — 3% to 15%
Wetting agent -- 1% to 3%
Anti foam agent -- 0.2% to 1.0%
Precipited silica (for free flowing) -- I% to 4%
China clay (filler) -- Balance
100% w/w
The dispersing/suspending agent is polycondensate of sodium methylnaphthalcne and formaldehyde. The wetting agent is anionic surfactant belonging to sulphatcd fatty alcohol class. The anti foam agent is dimethylpolysiloxane.
The Suspension Concentrate (SC) of the invention was formulated as exemplified herein
Active ingredient (a.i.) - 3% to 72%
Dispersing agent /
Suspending agent - 3 to 15% Wetting agent ~ l% to 2%
Anti freezing agent -- 5% to 15%
Anti fungal agent -- 0.05% to 0.2 %
Anti foam agent -- 0.2% to 1.0%
Thickening agent(s) -- 0.1% to 1 .0% Demineralized water -- Balance
100% w/w
The anti freezing agent is propylene glycol and the thickening agent is gum heteropolysaccharide, preferably xanthan gum and the anti fungal agent is 1 ,2- benzisothiazolin-3-one EXAMPLES
The present invention will be more specifically explained by following examples. However, the scope of the present invention is not limited to the scope of these examples below. Example 1
Preparation of 2-hydroxymethyl-8-phenethyl-l ,4-dioxa-8-azaspiro [4,5] decane
(Compound 1) 50 gm (0.2463 mole) of N-2-phenethyl-4-piperidone was taken in 300ml toluene .To this lOOgm HCI gas was passed to make N-2-phenethyl-4-piperidone hydrochloride.
Added 27gram of glycerol slowly at room temperature 250C to 75°C in presence of 4.6 gram of catalyst Para toluene sulfonic acid (PTSA). Reaction mixture was heated to
1 15°C for 14 hrs. After cooling, the product was filtered. It was then neutralized and extracted with ethyl acetate. The solvent was distilled off to obtain the cream colored solid product with melting point of 96 °C. and 94% yield.
Example 2
Preparation of 2-(4-bromo-2-chlorophenoxy)methyl-8-phenethyl-l ,4-dioxa-8-azaspiro
[4,5] decane (Compound 2) 2-hydroxymethyl-8-phenethyl-l ,4-dioxa-8-azaspiro[4,5]decane (compound-1 , 50 gm.
0.18 mole) was dissolved in toluene (300 ml) at room temperature. To this 44 gms of
2-chloro-4-bromophenol in toluene (150 ml) was added at room temperature 28°C in the presence of ParaToluenesulfonic Acid (PTSA, 3.5gm). Reaction mixture was refluxed with stirring for 13 hrs. It was then cooled and filtered. The filtrate was given water wash to bring the pH to neutral. Toluene was removed under vacuum to obtain a thick brick red colored product 95% yield.
Example 3
Preparation of 2-(morpholin-4-yl) methyl-8-phenethyl-l ,4-dioxa-8-azaspiro [4,51 decane (Compound 3) 2-hydroxymethyl-8-phenethyl-l , 4-dioxa-8-azaspiro [4, 5] decane (Compound- 1 , 50 gm, O. l δmole), Para Toluenesulfonic Acid (PTSA, 3.5 gms) was dissolved in toluene
(300 ml) at 280C. To this was added 18.5 gm of morpholine drop wise with continuous stirring, continued the stirring for 13 hrs at reflux temperature. Toluene was distilled under vacuum to get a semi-solid with brick red color. The yield of the product was 90%.
Example 4
Preparation of 2-(2-chloro-5-thiazolyl) methoxymethyl-8-phenethyl- l , 4-dioxa-8- azaspiro [4, 5] decane (Compound 4) To 8.64 g (0.36 mole) of sodium hydride in toluene (250 ml) was added 2- hydroxymethyl-8-phenethyl- l , 4-dioxa-8-azaspiro [4, 5] decane (compound- 1 , 50 gm, 0.18 mole) in toluene (350 ml) with stirring at 28°C. The phase transfer catalyst tetrabutylammonium bromide TBAB 2 gm was added and 3 1 gm of 2-chloro-5- chloromethylthiazole in toluene (225 ml) was then added drop wise at 10 0C and the reaction mixture was refluxed for 15 hrs. The reaction mixture was washed with water and the product was extracted with methylene chloride 100 ml. The solvent was distilled off to get thick dark colored liquid. The yield of the product was 85%. Example 5 Preparation of 2-benzyloxymethyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4.5] decane (Compound 5)
2-hydroxymethyl-8-phenethyl-l,4-dioxa-8-azaspiro[4,5]decane (compound- 1 , 50 gm, 0.18 mole) was dissolved in toluene (250 ml) at room temperature. 10 gm of 60% of sodium hydride in toluene (300 ml) was added to the above solution until the effervescence ceased. 2 gram of phase transfer catalyst tetrabutylammonium bromide (TBAB) was added. Benzyl chloride, 23 gm was then added drop wise to the above reaction mass and the reaction was maintained at 58°C for 15 hrs. The reaction mass was poured into water and organic layer was separated. Toluene was removed under reduced pressure to get a thick reddish brown liquid. The yield is 84%. Example 6
Preparation of 8-phenethyl-2-phenylsulphanylmethyl-l, 4-dioxa-8 azaspiro [4, 5 | decane. (Compound 6)
2-hydroxymethyl-8-phenethyl-l, 4-dioxa-8-azaspiro [4, 5] decane (Compound- 1 , 50 gm, 0.18 mole) and Para Toluenesulfonic Acid (PTSA, 2 gm) were dissolved in toluene (350 ml) at room temperature. 20 gm of thiophenol was added drop wise to the above solution. The reaction was refluxed for 13 hrs at reflux temperature. The solvent was distilled off to get the light brown solid product with a melting point of 58°C. The yield of the product was 95%. Example 7 Preparation of 2-hydroxymethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)-l ,4-dioxa-8- azaspiro[4,5]decane (starting material for the preparation of Compound-7) 25 g of piperdone hydrochloride was slowly added in lots to 2g of TBAB and 67g of K2CO3 in 250 ml of acetonitrile at 50-60° (provide exact value), then 25 g of piperdone hydrochloride was slowly added in lots and the reaction mixture stirred for I hr. 29 g of 4,6-dimethoxy-2- chloropyrimidine was added slowly over a period of I hr and the reaction mixture was refluxed for 1 1 hours at 600C.
The reaction mixture was neutralized with aq.NaOH solution and extracted with MDC, (methylene dichloride). Organic layer was distilled off to get l -(4-6-dimctho\y- pyrimidin-2-yl)-piperidin-4-one.
45g of l -(4-6-dimethoxy-pyrimidin-2-yl)-piperidin-4-one. and 5.2 g of PTSA were stirred in toluene (400 ml) for half an hour. 21 g Glycerol ( 1.2 mole) was added drop wise and the reaction mixture was refluxed at 120° C for 7 hours. Toluene was removed to get the desired product with 85% yield. Example 8
Preparation of 2-chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-yl) - l ,4-dioxa-8- azaspiro[4,5]decane (intermediate for compound 7)
20 g (0.064 mole) of 2-hydroxymethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)- l ,4-dio\a-8- azaspiro[4,5]decane was taken in DMF (250 ml) and 50 gram of dry HCI gas was passed into the reaction mass over a period of 3 hrs at -10 to 0 °C and stirred for 1 .0 hr to get the required chloromethyl compound. 90% yield. Example 9
Preparation of 2-(benzotriazol-l -yl)methyl-8-(4,6-dimethoxy-pyrimidin-2-yl) - 1 ,4- dioxa-8-azaspiro[4,5]decane (compound 7). To 37.63 gm (0.3163 mole) of benzotriazole and 35gm of potassium carbonate in Dimethylformamide (DMF) (350 ml) was added slowly under stirring 82 gm of 2- chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)-l,4-dioxa-8-azaspiro[4,51decane (intermediate for compound 7) in DMF (300 ml). After the addition, reaction mixture was heated to 120°C and maintained for 30 hrs. The reaction mixture was cooled to room temperature 280C and filtered. The solvent was distilled off to get the product. It was a thick dark brown liquid. Yield of product was 90%
Compound 2-chloro-5-chloromethylthiazole is known. Ref. Ref. 137:33289 Miyazaki, Takashi; Satou, Makoto; Inoue, Yoshihisa (Takeda Chemical Industries, Ltd., Japan). U.S. US 6407251 B l 18 Jun 2002, 4 pp. (English). (United States of America). CODEN: USXXAM. CLASS: ICM: C07D277-20. NCL: 548202000. APPLICATION: US 2001 -4829 7 Dec 2001. PRIORITY: JP 2000-400802 28 Dec 2000. DOCUMENT TYPE: Patent CA Section: 28 (Heterocyclic Compounds (More Than One Hetero Atom)) Section cross-reference(s): 45 Example 10 Preparation of l-(2-chloro-5-thiazolylmethyl) piperidine 4-one 25 gm of piperidone hydrochloride was taken in 250 ml acetonitrile. 68.7 gm Of K2COj was added under stirring at 60 0C, followed by addition of 27.8 gm of 2-chloro-5- chloromethylthiazole and refluxed for 6 hours. Example 11 Preparation of N-(5-chloro-2-fluorophenyl)- N-{8-(2-chloro5-thiazolyl)methyl- l ,4- dioxa-8-aza-spiro[4,5]dec-2-yl} methanamine (compound 8).
21 gm (0.065 mole) of 2-chloromethyl- 8-(2-chloro-5-thiazolyl) methyl- l,4-dio\a-8- azaspiro[4,5]decane was taken in DMF (300 ml) at 280C. To this mixture was added 28 gm of potassium carbonate, 10 gm of 5-chloro-2-fluoroaniline and the catalyst potassium iodide. The mass was kept at 140 °C for 20 hrs. The mixture was poured into ice-cooled water and the mass was extracted with ethyl acetate. The solvent was distilled off to get the dark brick red colored product with yield 85%. Example 12
20 gram of active compound (1), 10 gram of emulsifier made of calcium dodecylbenzene sulfonate (3gram) and styrinated ethoxylated phenol (7 gram) were taken in 70 gram C-IX (Petroleum fraction) and stirred well for 60 minutes to get the respective formulated product. Yield 100 gram. Example 13
Charge 49.4 g water in a container. Add 0.5 g defoamer & stirred. Add 4g dispersing & Ig wetting agent under stirring. Add 10 g anti freezing agent under stirring. Add 0. 1 g anti fungal agent under stirring. Add 25g active ingredient (as 100%basis) & homogenize for 30 minutes. Pass above pre mix thro' Dyno mill till get desire particle size. Collect the milled material in a container. Add 10 g of 2% thickening agent & stir slowly for 30 minutes. Example 14
Blende 50 g active ingredient (as 100% basis), 7 g dispersing/suspending agent, 2g wetting agent, 0.2 g anti foam agent, 3 g prcipited silica and 37.8 g China clay. Grind blended material on Air jet mill .Add 15 g water in air jet material & make dough in Sigma mixer. Pass the dough thro' die roller extruder. Collect extruded granules and dry in dryer. Sieve the dried granules. Pack the material after getting clearance from QA.
Example 15 FUNGICIDAL ACTIVITY MATERIALS AND METHODS Fusarium oxysporum, Magnaporthe grisea, Pyrricularia oryzae and Pyihnim aphanidermatum were maintained on potato dextrose agar slants at 28 °C. Rhizoctonia solani, Colletotήchiim capsici, Drechslera oryzae were maintained on czapek dox agar slants at 28 °C. R.solani, C.capsici, D.oryzae, F. oxysporum, M. grisea, P. oryzae and P. aphanidermatum were inoculated in potato dextrose broth at 28 °C for 48 hr. Compounds were solubilized in DMSO (2.5% v/v) and stock solution of 1 .28 mg/ml was prepared.
GROWTH INHIBITION PLATE ASSAY
2 liters of potato dextrose medium was prepared and 200 ml dispensed per 500ml Erlenmeyer's flask and sterilized. Stock solutions of 12.5, 25 and 37.5 mg of the test compound (100% purity) were prepared in 5 ml standard flasks separately. The compound was dissolved using suitable solvent (2.5% v/v DMSO) and volume made up. This gives a concentration of 2500, 5000 and 7500 ppm respectively. 1 ml of stock solution was transferred to 100 ml of the medium while sterilized medium is molten Io obtain the required concentrations of 25, 50 & 75 ppm from 2500, 5000 and 7500 ppm stock solution, respectively. The medium was distributed equally into the petri plates and allow the medium to solidify. The suitable number of replications for each treatment was maintained. The actively growing test organisms were taken in pelri plates. Small uniform discs of the test fungal culture were cut using sterile cork borer (7 mm) and each one of them were transferred aseptically to the centre of petri plates. The solvent control was maintained by adding 2.5% of solvent used in the experiment to the media and pouring into the plate. Suitable checks were maintained by transferring discs of test organisms to petri plates containing medium without the compound or the solvent. Both the treated plates and control plates were incubated at 28 °C. The colony diameter was measured at 24 hour intervals and mean values calculated.
FUNGICIDAL ACTIVITY All the synthesized compounds were evaluated for fungicidal activity against plant pathogenic fungi and all were found to be active. Compound 7 exhibited 40-60% of inhibition against R.solani, F.oxysporum and P .aphanidermatum, whereas compound 8 showed 50-60% inhibition against P.aphnidermatum, . Compound 5 exhibited 40-50% inhibition against R.solani and F.oxysporum, whereas 60-70% against D.oryzae and M.grisea. Compound 4 showed 20-30% of inhibition against all the tested strains. Compounds 2 and 6 were found to be active against all pathogens. Compound 2 showed 90- 100% inhibition against all the test pathogens where as, compound 6 inhibited 90- 100% growth of Rhi∑octonia solani and 60-90% that of C. capsici, D. oiγzae, F.oxysporum and P. orγ∑ae. Compound 3 registered 70-80% inhibition of R.solani, F.oxysporum; 60-70% of D. oryzae and 40-50% of P. oty∑ae.
Table 1 . In vitro fungicidal activities of compounds
Comps Plate assay with Plant pathogenic Fungi (25ppm)
No. Pl P2 P3 P4 P 5 P6
C2 90- 100 90-100 90-100 90- 100 90- 100 90- 100
C3 70-80 ND 60-70 70-80 40-50 ND
C4 20-30 20-30 ND 30-40 30-40 ND
C5 40-50 20-Oct 60-70 40-50 ND ND
C6 90-100 60-70 70-80 70-80 80-90 50-60
C7 40-50 30-40 20-Oct 40-50 ND 50-60
C8 20-Oct ND 20-Oct 20-30 ND 50-60
ND - Not Detectable.
Pl R. solani; P2 C. capsici; P3 D. oryzae; P4 F.oxysporum; P5 P. oryzae; P6
P. aphanidermatum Example 14
Fungicidal efficacy of compounds against grape powdery mildew.
A field experiment was conducted on pruned grapevine, in a randomized block design with ten treatments (Table No 1) and three replications. Two sprays were given at an interval of 10 days. The plot size was eight vines per treatment/ replication. The spraying was done by Knapsack sprayer using 850 L spray volume/hectare.
The observations on powdery mildew incidence were recorded at 1 1 and 15 days after second spray from 10 randomly selected bunches/treatment/replication by counting total number of berries and number of downy mildew infected berries. Based on the observations percent incidence was worked out. The data was subjected to statistical analysis and presented in the Table 2.
Table No 2: Efficacy of compounds, 2, 20% EC and 6, 20% EC in comparison with standards against grape powdery mildew.
Figure imgf000019_0001
*PDI- Percent Disease Incidence, DAIIS - Days after 2n Spray a) g.a.i / ha - gram active ingredient per hectare.
At 1 1 days after second spray Compound 6 20 % EC @ 510 & 680 g a. i./ha (gram ■ active indgredient/hectare) was observed at par with standards Hexaconazole 5% E @ 42.50 g a. i./ha, Kresoxim methyl 50% SC @ 425 g a. i./ha and Azoxystrobin 25% SC @ 212 g a. i./ha in reducing powdery mildew incidence in the range of 5.50 to 10.09 % and recorded percent reduction over untreated check. 66.26 to 81.61 %. Whereas, the untreated check recorded highest powdery mildew incidence of 29.91 %.
At 15 days after second spray, Compound 6, 20 % EC @ 680 g a. i./ha (gram active indgredient/hectare) was found comparable standards Hexaconazolc 5% E @ 42.50 g a. i./ha, Kresoxim methyl 50% SC @ 425 g a. i./ha and Azoxystrobin 25%
SC @ 212 g a. i./ha in reducing powdery mildew incidence in the range of 3.55 to 7.65 %.The untreated check treatment registered highest powdery mildew incidence of 26.13 %.
Example 16 Efficacy of compounds in comparison with standards against grape downy mildew
In this example, 2(20%EC), 6(20%EC) and mixture of 2 and 6 (3: 1, 20 % EC) were evaluated to find out their efficacy in controlling grape downy mildew in comparison with standards. A field experiment was conducted on pruned grapevine, in a randomized block design with ten treatments (Table No. 3) and three replications. Two sprays were given at an interval of 6 days starting at 28 days after pruning. The plot size was ten vines per treatment/ replication. The spraying was done by Knapsack sprayer using 1000 L spray volume/hectare. The observations on downy mildew incidence were recorded from 10 randomly selected branches/treatment/replication by counting the total number of leaves and number of downy mildew infected leaves at 7 and 10 days after second spray. Based on the observations, percent disease incidence was worked out. The data was subjected to statistical analysis. The results on efficacy of the compounds against grape downy mildew are presented in Table No 3. Table No 3: Efficacy of compounds in comparison with standards against grape downy mildew
Figure imgf000020_0001
Figure imgf000021_0001
DAIIS- Days After 2nd Spray
Grape Downy mildew (7 Days after 2nd spray) From the results presented in the Table No 3, it is evident that, both the doses of Compound 2, 20 % EC @ 400 & 800 g a. i./ha were found comparable with standard check fungicides Metalaxyl 8 % + Mancozeb 64 % 72 WP @ (80 + 640 g a. i./ha). Azoxystrobin 23 SC @ 230 g a. i./ha and Dimethomorph 50 WP @ 500 g a. i./ha effective in controlling downy mildew and registered 2.39 to 6.01 % incidence and reduction over untreated check 64.33 to 85.81 %. The untreated check recorded highest downy mildew incidence of 16.85 %. Grape Downy mildew (10 Days after 2nd spray)
At 10 days after second spray, Compound 2, 20% EC @ 800 g a. i./ha was found to be at par with standard check fungicides, Metalaxyl 8 % + Mancozeb 64 % 72 WP @ (80 + 640 g a. i./ha), Azoxystrobin 23 SC @ 230 g a. i./ha and Dimethomorph 50 WP @ 500 g a. i./ha in controlling downy mildew and registered per cent incidence in the range of 2.42 to 5.27. The untreated check recorded highest downy mildew incidence of 22.78 %.
Example 17
Efficacy of compounds in comparison with standards against rose powdery mildew A field experiment was conducted on rose variety in a randomized block design with ten treatments (Table No. 4) and three replications. Two sprays were given at an interval of 4 days. The spraying was done by Foot operated sprayer using 1200 L spray volume/hectare.
The observations on powdery mildew incidence were recorded from 10 randomly selected branches/treatment/replication by counting total number of leaves and number of powdery mildew infected leaves at 4 days after first spraying. Based on the observations percent incidence was worked out. The data was subjected to statistical analysis.
Table No 4: Efficacy of compounds in comparison with standards against rose powdery mildew
Figure imgf000022_0001
*DAS- Days after Spray
It was evident from the results that, 6 ,20 % EC @ 480 and 720 g a. i./ha was effective in minimizing the powdery mildew incidence in the range of 23.21 to 29.45 % and recorded percent control over untreated check in the range of 42.84 to 54.3 1 %, whereas, the untreated check recorded highest powdery mildew incidence of 5 1 .53 %.
ADVANTAGES OF THE INVENTION
The main advantage of the present invention is: Substituted l ,4-dioxa-8-azaspiro[4,5] decane are useful as fungicidal compound alone or in combination.

Claims

We claim
1. Substituted l ,4-dioxa-8-azaspiro[4,5]decane compounds of general formula I
Figure imgf000023_0001
General formula 1 wherein R l is selected from the group consisting of alkyl (C 1 -C6), substituted alkyl (C 1 -C6), or substituted aryl (unsaturated) and substituted heteroaryl and R2 is selected from the group consisting of halogen group, hydroxyl group, thio group, amino group, alkyl (C 1-C6), substituted alkyl (C 1-C6), substituted aryl (unsaturated) and substituted heteroaryl.
2. Substituted l ,4-dioxa-8-azaspiro[4,5]decane compounds as claimed in claim I , wherein R l is selected from the group consisting of 2-phenethyl, 4,6- dimethoxypyrimidin-2-ylmethyl, (2-chlorothiazol-5-yl)methyl and R2 is selected from the group consisting of hydroxy, 4-bromo-2-chlorophenoxy. morpholin-4-yl (2-chloro-5-thiazolyl)methyloxy, benzyloxy; phenylsulfanyl, benzotriazol- 1 -yl and 5-chloro-2-fluoroanilino.
3. Substituted l ,4-dioxa-8-azaspiro[4,5]decane compounds as claimed in claim 1 , wherein compounds are represented by:
2-(4-bromo-2-chlorophenoxy)methyl-8-phenethyl- l ,4-dioxa-8- azaspiro[4,5]decane (2);
Figure imgf000023_0002
2-(morpholin-4-yl)methyl-8-phenethyl- l ,4-dioxa-8-azaspiro[4,5]decane (3);
Figure imgf000023_0003
2-(2-chloro-5-thiazolyl)methoxymethyl-8-phenethyl- 1 ,4-dio\a-8
azaspiro[4,5]decane (4);
Figure imgf000024_0001
2-benzyloxymethyl-8-phenethyl-l,4-dioxa-8-azaspiro[4,5]decane(5);
Figure imgf000024_0002
-phenethyl-2-phenylsulphanylmethyl-l ,4-dioxa-8-azaspiro[4,5]decane (6);
Figure imgf000024_0003
2-(benzotriazol-l-yl)methyl-8-(4,6-dimethoxy-pyrimidin-2-yl)-l,4-dioxa-8- azaspiro[4,5]decane (7) and
Figure imgf000024_0004
N-(5-chloro-2-fluorophenyl)-N-[8-[(2-chloro-5-thiazolyl)methyl]-l,4-dioxa- azaspiro[4,5]dec-2-yl] methanamine (8)
Figure imgf000024_0005
4. A process for the preparation of compounds (2) to (6) of general formula I and the said process comprising the steps of: vi. providing compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-8- azaspiro [4,5] decane(l);
) vii. reacting the compound 2-hydroxymethyl-8-phenethyl- l ,4-dioxa-
8-azaspiro[4,5]decane ( 1 ) as provided in step (i) with a reagent selected from the group consisting of 2-chloro-4-bromophcnol. morpholine, 2-chloro-5-chloromethyl-thiazole, benzyl chloride, and thiophenol, in the presence of catalyst in an organic solvent to obtain a reaction mixture; viii. stirring the reaction mixture as obtained in step (i i) at a temperature in the range of 25- 120°C for a period of I O to 20 hrs; ix. cooling the solution as obtained in step (iii) to a temperature of
25-300C; x. filtering, purifying the cooled solution as obtained in step (iv) by known method to obtain the desired compounds of formula (2) to (6). 5. A process as claimed in claim 4, wherein compound 2 is obtained with reagent
2-chloro-4-bromophenol.
6. A process as claimed in claim 4, wherein compound 3 is obtained with reagent morpholine.
7. A process as claimed in claim 4, wherein compound 4 is obtained with reagent 2-chloro-5-chloromethyl-thiazole.
8. A process as claimed in claim 4, wherein compound 5 is obtained with reagent benzyl chloride.
9. A process as claimed in claim 4, wherein compound 6 is obtained with reagent thiophenol.
10. A process as claimed in claim 4, wherein the catalyst used in step (ii) for the preparation of compounds 4 and 5 is tetrabutylammonium bromide (TBAB).
1 1. A process as claimed in claim 4, wherein the catalyst used in step (ii) for the preparation of compounds 2, 3 and 6 is Para toluene sulfonic acid (PTSA).
12. A process as claimed in claim 4, wherein the reaction for the preparation of compounds 4 and 5 in step (ii) is carried out in the presence of sodium hydride.
13. A process for preparation of compounds (7) of general formula ( I ) and the said process comprising the steps of:
I. passing dry HCI gas into the solution of N-(4,6 dimcthoxy pyrimidin-2-yl)-4-piperidone and glycerol in DMF to obtain the compound 2-chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)- l ,4- dioxa-8-azaspiro [4,5] decane;
II. reacting 2-chloromethyl-8-(4,6-dimethoxy-pyrimidin-2-yl)- 1 ,4- dioxa-8-azaspiro [4,5] decane as obtained in step (I) with benzotriazole in the presence of potassium carbonate, under stirring, at a temperature of 100-150 "C, for a period of 20-30 hrs; III. cooling the stirred solution as obtained in step (II) Io a temperature of 25-30°C and distilling solvent to obtain the compound 2-(benzotriazol-l -yl)methyl-8-(4,6-dimelhoxy- pyrimidin-2-yl)-l ,4-dioxa-8-azaspiro[4.5] decane (7).
14. A process for the preparation of compounds (8) of general formula ( 1 ) and the said process comprising the steps of:
(a) passing dry HCI gas into the solution of 2-hydroxymetnyl- 8-(2-chloro- 5-thiazolyl) methyl-l ,4-dioxa-8-azaspiro[4,5]decane, in DMF to obtain the 2-chloromethyl-8-(2-chloro-5-thiazolyl)methyl- l ,4-dioxa-8- azaspiro[4,5] decane;
(b) reacting the above said resultant compound with 5-cholro-2- fluoroaniline in the presence of potassium carbonate and potassium iodide, under stirring, at a temperature of 100-150 °C, for a period of 20- 30hrs,
(c) cooling the stirred solution as obtained in step (II) to a temperature of 25-30°C and distilling solvent to obtain the compound N-(5-chloro-2- fluorophenyl)-N-{8-(2-chloro-5-thiazolyl)methyl- 1 ,4-dioxa-8- azaspiro[4,5] dec-2-yl} methanamine (8).
15. Substituted 1 , 4-dioxa-8-azaspiro[4,5]decane compounds as claimed in claim I , wherein said compounds are fungicidal.
16. A formulation for fungicidal activity comprising at least one active compound of general formula ( 1)
Figure imgf000026_0001
Formula ( 1 ) wherein Rl is selected from the group consisting of alkyl with 1 to 6 carbon atoms , substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heteroaryl and R2 is selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C 1 -C6), substituted alkyl (C 1 -C6), substituted aryl (un), and substituted heteroaryl.
17. A formulation as claimed in claim 18 comprising a) at least one active compound of general formula ( 1 )
Figure imgf000027_0001
Formula ( 1 ) wherein R l is selected from the group consisting of alkyl with I to 6 carbon atoms, substituted alkyl ( 1 -6), or substituted aryl (un) and substituted heteroaryl and R2 selected from the group consisting of halo group, hydroxyl group, thio group, amino group, alkyl (C 1 -C6), substituted alkyl (C 1 -C6), substituted aryl
(un), and substituted heteroaryl, wherein said formulation is selected from the group consisting of Emulsifiable Concentrate (EC), Suspension Concentrate
' (SC) or Water Dispersible Granules (WDG).
18. The formulation as claimed in claim 19, wherein Emulsifiable Concentrate (BC) is formulated as: a) active ingredient 20-25% b) emulsifier 10-20 wt% and c) an organic solvent 60-70wt%.
19. An Emulsion Concentrate (EC) as claimed in claim 20, wherein the emulsifier used is a mixture of calcium dodecylbenzene sulfonate and styrinated ethoxylated phenol in the ratio of 3:7.
20. An Emulsion Concentrate (EC) as claimed in claim 20, wherein the organic solvent used is selected from the group consisting of toluene, N- methylpyrrolidinone, cyclohexanone and C-IX (petroleum fraction).
21 . The formulation as claimed in claim 19, wherein Suspension Concentrate (SC) is formulated as: a) Active ingredient (a.i.) 3% to 72% b) Dispersing agent / c) Suspending agent 3 to 15% d) Wetting agent 1 % to 2% e) Anti freezing agent 5% to 15% f) Anti fungal agent 0.05% to 0.2 % g) Anti foam agent 0.2% to 1.0% h) Thickening agent(s) 0.1% to 1.0% i) Demineralized water: Balance 22. The formulation as claimed in claim 19, wherein Water Dispersible Granules
(WDG) is formulated as: a) active ingredient 2.5% to 90% b) dispersing/suspending agent 3% to 15% c) wetting agent 1 % to 3% d) anti foam agent 0.2% to 1.0% e) precipitated silica (for free flowing) 1% to 4% f) china clay (filler) Balance
PCT/IB2010/000648 2009-03-27 2010-03-23 Substituted 1, 4-dioxa-8-azaspiro [4,5] decanes useful as fungicides and a process for the preparation thereof WO2010109299A2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102796111A (en) * 2012-09-10 2012-11-28 贵州大学 Carboxylate (sulfonate) compounds with oxoaza-spiro-amido group, and preparation method and application thereof
CN113024454A (en) * 2021-03-25 2021-06-25 浙江工业大学 Synthesis method of brigatinib intermediate
CN113200997A (en) * 2021-05-07 2021-08-03 上海合全医药有限公司 Synthesis method of 2, 5-dioxa-8-azaspiro [3.5] nonane and salt thereof

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0023308A1 (en) * 1979-07-26 1981-02-04 Bayer Ag N-acyl-piperidone cetals, process for their preparation and their use as antidotes in the protection of crop plants against damage by herbicides
EP0240398A1 (en) * 1986-04-02 1987-10-07 Fournier Innovation Et Synergie Dissymmetrical 1,4-dihydropyridine-3,5-dicarboxylic-acid derivatives, preparation processes and therapeutical use
WO1995025106A1 (en) * 1994-03-15 1995-09-21 Pharmacia & Upjohn Company Oxazolidinone derivatives and pharmaceutical compositions containing them
DE19519710A1 (en) * 1995-05-30 1996-12-05 Bayer Ag Fungicidal active ingredient combinations
WO2005054234A2 (en) * 2003-09-08 2005-06-16 Wockhardt Limited Substituted piperidino phenyloxazolidinones having antimicriobial activity with improved in vivo efficacy

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH469736A (en) * 1966-06-28 1969-03-15 Geigy Ag J R Process for the preparation of new heterospiroalkanes
JPS4932542B1 (en) * 1970-08-17 1974-08-31
JP3158631B2 (en) 1992-04-21 2001-04-23 日立化成工業株式会社 Nonlinear optical material comprising 1,4-dioxa-8-aza-8- (4'-acetylphenyl) -spiro [4,5] decane
EP0621267A1 (en) * 1993-04-07 1994-10-26 Shell Internationale Researchmaatschappij B.V. Spiropiperidine derivatives and their use as fungicides
ATE257829T1 (en) * 1995-09-15 2004-01-15 Upjohn Co AMINOARYL OXAZOLIDINONE N-OXIDE

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0023308A1 (en) * 1979-07-26 1981-02-04 Bayer Ag N-acyl-piperidone cetals, process for their preparation and their use as antidotes in the protection of crop plants against damage by herbicides
EP0240398A1 (en) * 1986-04-02 1987-10-07 Fournier Innovation Et Synergie Dissymmetrical 1,4-dihydropyridine-3,5-dicarboxylic-acid derivatives, preparation processes and therapeutical use
WO1995025106A1 (en) * 1994-03-15 1995-09-21 Pharmacia & Upjohn Company Oxazolidinone derivatives and pharmaceutical compositions containing them
DE19519710A1 (en) * 1995-05-30 1996-12-05 Bayer Ag Fungicidal active ingredient combinations
WO2005054234A2 (en) * 2003-09-08 2005-06-16 Wockhardt Limited Substituted piperidino phenyloxazolidinones having antimicriobial activity with improved in vivo efficacy

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
MERTES, M.P. ET AL.: "Ketals and Hemithioketals of 1-Methyl-4-piperidone and Tropinone" JOURNAL OF PHARMACEUTICAL SCIENCEES, vol. 50, no. 6, June 1961 (1961-06), pages 475-480, XP002598625 DOI: 10.1002/jps.2600500606 *

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102796111A (en) * 2012-09-10 2012-11-28 贵州大学 Carboxylate (sulfonate) compounds with oxoaza-spiro-amido group, and preparation method and application thereof
CN113024454A (en) * 2021-03-25 2021-06-25 浙江工业大学 Synthesis method of brigatinib intermediate
CN113200997A (en) * 2021-05-07 2021-08-03 上海合全医药有限公司 Synthesis method of 2, 5-dioxa-8-azaspiro [3.5] nonane and salt thereof
CN113200997B (en) * 2021-05-07 2023-10-03 上海合全医药有限公司 Synthesis method of 2, 5-dioxa-8-azaspiro [3.5] nonane and salt thereof

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