TW201900786A - Solution for silicone hydrogel contact lens and distribution solution including the same improving the surface hydrophilicity and surface lubricity of a silicone hydrogel contact lens - Google Patents

Solution for silicone hydrogel contact lens and distribution solution including the same improving the surface hydrophilicity and surface lubricity of a silicone hydrogel contact lens Download PDF

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TW201900786A
TW201900786A TW107117551A TW107117551A TW201900786A TW 201900786 A TW201900786 A TW 201900786A TW 107117551 A TW107117551 A TW 107117551A TW 107117551 A TW107117551 A TW 107117551A TW 201900786 A TW201900786 A TW 201900786A
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櫻井俊輔
宮本幸治
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日商日油股份有限公司
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Abstract

This invention provides a solution for a silicone hydrogel contact lens, which may improve the surface hydrophilicity and surface lubricity of a silicone hydrogel contact lens. The solution for the silicone hydrogel contact lens contains a copolymer (P) having structural units represented by the following formulas (1a) to (1c) and a water-soluble polymer (Q), wherein the ratio na:nb:nc of the structural units in the copolymer (P) is 100:10-400:2-50. In the formulas (1a) to (1c) of [Chemical Formula 1] [Chemical Formula 2] [Chemical Formula 3], R1, R2 and R5 are each independently hydrogen atom or a methyl group; R3 and R4 are each independently a hydrogen atom, a methyl group or an ethyl group, or bonded to each other to form a morpholinyl group; and R6 is a hydrocarbyl group having 12 to 24 carbon atoms.

Description

矽酮水凝膠隱形眼鏡用溶液及其配送液Acetone hydrogel contact lens solution and its delivery solution

本發明涉及含有特定的聚合物的矽酮水凝膠隱形眼鏡用溶液。This invention relates to a solution for an anthrone ketone hydrogel contact lens containing a specific polymer.

日本國內的隱形眼鏡佩戴者已超過1000萬人,由於其簡單、便利,使用者急劇增加。然而,根據報告,由於其簡單,因此尤其以年輕人為中心,佩戴隱形眼鏡的長時間化不斷推進,有人指出該長時間化會導致缺氧並對角膜等產生不良影響(非專利文獻1)。因此,一直以來,在不斷地進行對摻合有透氧性優異的矽酮材料的矽酮水凝膠隱形眼鏡的開發。There are more than 10 million contact lens wearers in Japan, and the number of users has increased dramatically due to its simplicity and convenience. However, according to the report, the use of contact lenses has been progressing for a long time, especially in the case of young people, and it has been pointed out that this prolongation causes hypoxia and adverse effects on the cornea and the like (Non-Patent Document 1). Therefore, development of an anthrone hydrogel contact lens which incorporates an anthrone material excellent in oxygen permeability has been continuously performed.

根據矽酮材料的特性可知,矽酮水凝膠隱形眼鏡的疏水性高,因此表面親水性及表面潤滑性低、佩戴感差。因此,在不斷地對提高矽酮水凝膠隱形眼鏡本身的表面親水性及表面潤滑性的技術以及用於改善矽酮水凝膠隱形眼鏡的表面親水性及表面潤滑性的配送液進行研究(專利文獻1~3)。According to the characteristics of the anthrone material, the anthrone ketone hydrogel contact lens has high hydrophobicity, so the surface hydrophilicity and surface lubricity are low, and the wearing feeling is poor. Therefore, research is being continuously conducted on a technique for improving the surface hydrophilicity and surface lubricity of an anthrone ketone hydrogel contact lens, and a delivery liquid for improving surface hydrophilicity and surface lubricity of an anthrone ketone hydrogel contact lens ( Patent Documents 1 to 3).

另一方面,已知使用2-(甲基丙烯醯氧基)乙基-2’-(三甲基銨基)乙基磷酸酯(別名:2-甲基丙烯醯氧乙基磷酸膽鹼,以下,也縮寫為MPC)而得到的共聚物可改善隱形眼鏡的佩戴感(專利文獻4~6)。On the other hand, it is known to use 2-(methacryloxy)ethyl-2'-(trimethylammonio)ethyl phosphate (alias: 2-methacryloyloxyethylphosphocholine, Hereinafter, the copolymer obtained by abbreviating as MPC) can improve the wearing feeling of the contact lens (Patent Documents 4 to 6).

先前技術文獻Prior technical literature

專利文獻 專利文獻1:日本特表2015-524090號 專利文獻2:日本特開平10-130448號 專利文獻3:日本特開2015-227909號 專利文獻4:國際公開第99/026637號 專利文獻5:美國專利第5461433號 專利文獻6:國際公開第2013/128633號Patent Document 1: Patent Document 1: Japanese Patent Publication No. 2015-524090 Patent Document 2: Japanese Laid-Open Patent Publication No. Hei No. Hei No. Hei. No. Hei. No. Hei. No. Hei. U.S. Patent No. 5,461,333, Patent Document 6: International Publication No. 2013/128633

非專利文獻 非專利文獻1:Walline J. J., 2013, Long-term Contact Lens Wear of Children and Teens, Eye&Contact Lens, 39, 283-289。Non-Patent Literature Non-Patent Document 1: Walline J. J., 2013, Long-term Contact Lens Wear of Children and Teens, Eye&Contact Lens, 39, 283-289.

本發明所要解決的技術問題Technical problem to be solved by the present invention

然而,上述專利文獻1~3的技術效果有限。此外,即使將上述專利文獻4~6的共聚物適用於矽酮水凝膠隱形眼鏡,提高表面親水性及表面潤滑性的效果也低,因此改善鏡片佩戴感的效果也有限。因此,需要能夠賦予更好的佩戴感的技術的開發。However, the technical effects of the above Patent Documents 1 to 3 are limited. Further, even if the copolymers of the above Patent Documents 4 to 6 are applied to an anthrone hydrogel contact lens, the effect of improving the surface hydrophilicity and the surface lubricity is low, and therefore the effect of improving the lens wearing feeling is also limited. Therefore, there is a need for development of a technology that can give a better wearing feeling.

本發明的技術問題在於提供一種可改善矽酮水凝膠隱形眼鏡的表面親水性和表面潤滑性的矽酮水凝膠隱形眼鏡用溶液。The technical problem of the present invention is to provide a solution for an anthrone hydrogel contact lens which can improve the surface hydrophilicity and surface lubricity of an anthrone ketone hydrogel contact lens.

解決技術問題的技術手段Technical means to solve technical problems ..

本申請的發明人為瞭解決上述技術問題進行了深入研究,結果發現藉由將以特定比例具有三種不同的結構單元的共聚物與特定的水溶性高分子組合使用,可改善矽酮水凝膠隱形眼鏡的表面親水性及表面潤滑性,從而完成了本發明。The inventors of the present application conducted intensive studies in order to solve the above technical problems, and as a result, found that an indole ketone hydrogel invisible can be improved by using a copolymer having three different structural units in a specific ratio in combination with a specific water-soluble polymer. The surface of the spectacles is hydrophilic and surface lubricated, thereby completing the present invention.

本發明的矽酮水凝膠隱形眼鏡用溶液含有0.001~1.0w/v%的共聚物(P)和0.001~10.0w/v%的水溶性高分子(Q)。共聚物(P)具有5,000~2,000,000的重量平均分子量,具有後述式(1a)~(1c)表示的結構單元。水溶性高分子(Q)為選自由聚乙烯吡咯烷酮、聚乙烯醇、海藻酸及其鹽、透明質酸及其鹽、聚乙二醇、羥丙基甲基纖維素、羧基乙烯基聚合物、羥乙基纖維素、甲基纖維素以及與共聚物(P)不同的磷脂聚合物組成的群組中的至少一種高分子。 [化學式1][化學式2][化學式3] The solution for the fluorenone hydrogel contact lens of the present invention contains 0.001 to 1.0 w/v% of the copolymer (P) and 0.001 to 10.0 w/v% of the water-soluble polymer (Q). The copolymer (P) has a weight average molecular weight of 5,000 to 2,000,000 and has a structural unit represented by the following formulas (1a) to (1c). The water-soluble polymer (Q) is selected from the group consisting of polyvinylpyrrolidone, polyvinyl alcohol, alginic acid and salts thereof, hyaluronic acid and salts thereof, polyethylene glycol, hydroxypropylmethylcellulose, carboxyvinyl polymer, At least one polymer of the group consisting of hydroxyethyl cellulose, methyl cellulose, and a phospholipid polymer different from the copolymer (P). [Chemical Formula 1] [Chemical Formula 2] [Chemical Formula 3]

式(1a)~(1c)中,R1 、R2 及R5 各自獨立地為氫原子或甲基,R3 及R4 各自獨立地為氫原子、甲基或乙基,或者彼此鍵合而形成嗎啉基,R6 是碳原子數為12~24的烴基。共聚物(P)中的結構單元的個數比na :nb :nc 為100:10~400:2~50。In the formulae (1a) to (1c), R 1 , R 2 and R 5 are each independently a hydrogen atom or a methyl group, and R 3 and R 4 are each independently a hydrogen atom, a methyl group or an ethyl group, or are bonded to each other. The morpholinyl group is formed, and R 6 is a hydrocarbon group having 12 to 24 carbon atoms. The number ratio of structural units in the copolymer (P) is n a : n b : n c is 100: 10 to 400: 2 to 50.

發明效果Effect of the invention

本發明的矽酮水凝膠隱形眼鏡用溶液可簡便地對矽酮水凝膠隱形眼鏡賦予優異的表面親水性和表面潤滑性,因此能夠改善矽酮水凝膠隱形眼鏡的佩戴感。The solution for the fluorenone hydrogel contact lens of the present invention can easily impart excellent surface hydrophilicity and surface lubricity to the fluorenone hydrogel contact lens, and thus can improve the wearing feeling of the fluorenone hydrogel contact lens.

本發明的矽酮水凝膠隱形眼鏡用溶液含有共聚物(P)和水溶性高分子(Q)。以下,將“本發明的矽酮水凝膠隱形眼鏡用溶液”簡稱為“本發明的溶液”。The solution for an anthrone ketone hydrogel contact lens of the present invention contains a copolymer (P) and a water-soluble polymer (Q). Hereinafter, the "solution for an anthrone ketone hydrogel contact lens of the present invention" will be simply referred to as "a solution of the present invention".

用於本發明的溶液的共聚物(P)至少具有三個結構單元,即PC結構單元、醯胺結構單元及疏水性結構單元。共聚物(P)可以包含多種PC結構單元,也可以包含多種醯胺結構單元,還可以包含多種疏水性結構單元。The copolymer (P) used in the solution of the present invention has at least three structural units, namely, a PC structural unit, a guanamine structural unit, and a hydrophobic structural unit. The copolymer (P) may comprise a plurality of PC structural units, may also comprise a plurality of guanamine structural units, and may also comprise a plurality of hydrophobic structural units.

以下述式(1a)表示上述PC結構單元。PC結構單元可對共聚物(P)賦予親水性及水凝膠形成能力,並提高潤滑性。 [化學式4] The above PC structural unit is represented by the following formula (1a). The PC structural unit imparts hydrophilicity and hydrogel forming ability to the copolymer (P) and improves lubricity. [Chemical Formula 4]

式(1a)中,R1 為氫原子或甲基。In the formula (1a), R 1 is a hydrogen atom or a methyl group.

在合成共聚物(P)時,PC結構單元可由含有下述式(1a’)表示的磷醯膽鹼類似基團的單體(以下,稱為PC單體)得到。 [化學式5] In the synthesis of the copolymer (P), the PC structural unit can be obtained from a monomer containing a phosphonium choline-like group represented by the following formula (1a') (hereinafter referred to as a PC monomer). [Chemical Formula 5]

式(1a’)中,X表示具有包含不飽和鍵的聚合性官能團的一價有機基團。In the formula (1a'), X represents a monovalent organic group having a polymerizable functional group containing an unsaturated bond.

從獲取性的角度出發,PC單體較佳為2-((甲基)丙烯醯氧基)乙基-2’-(三甲基銨基)乙基磷酸酯,進一步較佳為下述式(1a’’)表示的2-(甲基丙烯醯氧基)乙基-2’-(三甲基銨基)乙基磷酸酯。 [化學式6] From the viewpoint of availability, the PC monomer is preferably 2-((meth)acryloxy)ethyl-2'-(trimethylammonium)ethyl phosphate, further preferably the following formula 2-(Methethyloxy)ethyl-2'-(trimethylammonio)ethyl phosphate represented by (1a''). [Chemical Formula 6]

可以利用公知的方法製備PC單體。例如,可以利用下述方法製備:如日本特開昭54-63025號所示的、使含羥基的聚合性單體與2-溴乙基磷醯二氯在叔鹼的存在下進行反應,並使由此得到的化合物與叔胺反應的方法;或如日本特開昭58-154591號公報等所示的、藉由含羥基的聚合性單體與環狀磷化合物的反應得到環狀化合物後,利用叔胺使其進行開環反應的方法等。The PC monomer can be produced by a known method. For example, it can be produced by a method in which a hydroxyl group-containing polymerizable monomer and 2-bromoethylphosphonium dichloride are reacted in the presence of a tertiary base, as shown in JP-A-54-63025, and A method of reacting a compound thus obtained with a tertiary amine; or a reaction of a hydroxyl group-containing polymerizable monomer with a cyclic phosphorus compound, as shown in JP-A-58-154591, etc., to obtain a cyclic compound A method in which a tertiary amine is used to carry out a ring opening reaction.

以下述式(1b)表示上述醯胺結構單元。醯胺結構單元可將共聚物(P)高分子量化,並提高本發明的溶液對矽酮水凝膠隱形眼鏡的密著性。 [化學式7] The above guanamine structural unit is represented by the following formula (1b). The guanamine structural unit can polymerize the copolymer (P) and improve the adhesion of the solution of the present invention to an fluorenone hydrogel contact lens. [Chemical Formula 7]

式(1b)中,R2 為氫原子或甲基。R3 及R4 各自獨立地為氫原子、甲基或乙基,或者彼此鍵合而形成嗎啉基。In the formula (1b), R 2 is a hydrogen atom or a methyl group. R 3 and R 4 are each independently a hydrogen atom, a methyl group or an ethyl group, or are bonded to each other to form a morpholinyl group.

共聚物(P)中,將na 換算為100時,PC結構單元的個數na 與醯胺結構單元的個數nb 的比na :nb 為100:10~400,較佳為100:30~250。醯胺結構單元的個數nb 相對於PC結構單元的個數na 的比過大時,存在製備本發明的溶液時進行的無菌過濾變難的可能。另一方面,該比過小時,本發明的溶液對矽酮水凝膠隱形眼鏡的密著性不充分,不能期待提高潤滑性的效果。Copolymer (P), the terms n a is 100, the number n b n a number with a PC Amides structural units the structural unit ratio n a: n b is 100: 10 to 400, preferably 100:30~250. When the ratio of the number n b of the indoleamine structural units to the number n a of the PC structural units is too large, there is a possibility that the aseptic filtration performed when preparing the solution of the present invention becomes difficult. On the other hand, when the ratio is too small, the solution of the present invention has insufficient adhesion to the fluorenone hydrogel contact lens, and the effect of improving lubricity cannot be expected.

在合成共聚物(P)時,醯胺結構單元可由下述式(1b’)表示的單體、即(甲基)丙烯醯胺或(甲基)丙烯醯胺衍生物得到。 [化学式8] In the synthesis of the copolymer (P), the decylamine structural unit can be obtained from a monomer represented by the following formula (1b'), that is, a (meth) acrylamide or a (meth) acrylamide derivative. [Chemical Formula 8]

式(1b’)中的R2 、R3 及R4 分別與式(1b)中的R2 、R3 及R4 同義。作為式(1b’)表示的單體的具體例,可列舉出N,N-二甲基(甲基)丙烯醯胺、N,N-二乙基(甲基)丙烯醯胺、N-丙烯醯嗎啉等。R 2 , R 3 and R 4 in the formula (1b') have the same meanings as R 2 , R 3 and R 4 in the formula (1b), respectively. Specific examples of the monomer represented by the formula (1b') include N,N-dimethyl(meth)acrylamide, N,N-diethyl(meth)acrylamide, and N-propylene.醯 morpholine and the like.

以下述式(1c)表示上述疏水性結構單元。疏水性結構單元可提高共聚物(P)對矽酮水凝膠隱形眼鏡的吸附性,提高基於疏水性相互作用的物理交聯凝膠形成能力,並提高潤滑性。 [化学式9] The above hydrophobic structural unit is represented by the following formula (1c). The hydrophobic structural unit can improve the adsorption of the copolymer (P) on the fluorenone hydrogel contact lens, improve the physical cross-linking gel formation ability based on the hydrophobic interaction, and improve the lubricity. [Chemical Formula 9]

式(1c)中,R5 為氫原子或甲基,R6 是碳原子數為12~24的烴基。作為該烴基的具體例,可列舉出十二烷基、十八烷基、二十二烷基等。In the formula (1c), R 5 is a hydrogen atom or a methyl group, and R 6 is a hydrocarbon group having 12 to 24 carbon atoms. Specific examples of the hydrocarbon group include dodecyl group, octadecyl group, behenyl group and the like.

共聚物(P)中,將na換算為100時,PC結構單元的個數na與疏水性結構單元的個數nc的比na :nc 為100:2~50,較佳為100:5~25。疏水性結構單元的個數nc 相對於PC結構單元的個數na 的比過小時,潤滑效果的持續不充分。另一方面,該比過大時,由於共聚物(P)的親水性降低,因此在水溶液中的溶解性降低,存在變得難以製備矽酮水凝膠隱形眼鏡用溶液的可能。In the copolymer (P), when na is converted to 100, the ratio n a : n c of the number of PC structural units to the number of hydrophobic structural units n a : n c is 100: 2 to 50, preferably 100: 5 ~25. N c the number of hydrophobic structural unit ratio is too small relative to the number of PC n a structural unit, the lubricating effect is insufficient duration. On the other hand, when the ratio is too large, the hydrophilicity of the copolymer (P) is lowered, so that the solubility in an aqueous solution is lowered, and it may become difficult to prepare a solution for an fluorenone hydrogel contact lens.

在合成共聚物(P)時,疏水性結構單元可由下述式(1c’)表示的疏水性單體得到。 [化学式10] In the synthesis of the copolymer (P), the hydrophobic structural unit can be obtained from a hydrophobic monomer represented by the following formula (1c'). [Chemical Formula 10]

式(1c’)中的R5 及R6 分別與式(1c)中的R5 及R6 同義。作為式(1c’)表示的疏水性單體的具體例,可列舉出(甲基)丙烯酸月桂酯、(甲基)丙烯酸十八酯、(甲基)丙烯酸二十二酯等(甲基)丙烯酸直鏈烷基酯等。R 5 and R 6 in the formula (1c') are synonymous with R 5 and R 6 in the formula (1c), respectively. Specific examples of the hydrophobic monomer represented by the formula (1c') include lauryl (meth)acrylate, octadecyl (meth)acrylate, and behenyl (meth)acrylate (methyl). A linear alkyl acrylate or the like.

在不損害本發明的效果的範圍內,共聚物(P)還可以包含除上述PC結構單元、醯胺結構單元及疏水性結構單元以外的、任意的結構單元。共聚物(P)中,將na 換算為100時,PC結構單元的個數na 與任意的結構單元的個數ne 的比na :ne 較佳為100:50以下。The copolymer (P) may further contain any structural unit other than the above PC structural unit, guanamine structural unit, and hydrophobic structural unit, within a range not impairing the effects of the present invention. Copolymer (P), the number n of the structural unit 100 in terms of a number n a structural unit PC arbitrary ratio n e a n: n e is preferably 100: 50 or less.

上述任意的結構單元例如可以來自選自除式(1a’)、(1b’)及(1c’)的單體以外的、直鏈或支鏈的(甲基)丙烯酸烷基酯、(甲基)丙烯酸環烷基酯、含芳香族基團的(甲基)丙烯酸酯、苯乙烯類單體、乙烯基醚單體、乙烯基酯單體、親水性的含羥基的(甲基)丙烯酸酯、含酸基的單體、含有含氮基團的單體、含氨基的單體、及含陽離子基團的單體的聚合性單體。Any of the above structural units may be, for example, a linear or branched alkyl (meth)acrylate other than a monomer selected from the formulae (1a'), (1b'), and (1c'), (methyl a cycloalkyl acrylate, an aromatic group-containing (meth) acrylate, a styrene monomer, a vinyl ether monomer, a vinyl ester monomer, a hydrophilic hydroxyl group-containing (meth) acrylate A polymerizable monomer of an acid group-containing monomer, a nitrogen group-containing monomer, an amino group-containing monomer, and a cationic group-containing monomer.

共聚物(P)的重量平均分子量為5,000~2,000,000,較佳為100,000~1,500,000。重量平均分子量小於5,000時,共聚物(P)對矽酮水凝膠隱形眼鏡表面的吸附力不充分,可能不能期待潤滑性的提高。重量平均分子量大於2,000,000時,黏度增大,存在操作變難的可能。The copolymer (P) has a weight average molecular weight of 5,000 to 2,000,000, preferably 100,000 to 1,500,000. When the weight average molecular weight is less than 5,000, the adsorption force of the copolymer (P) on the surface of the fluorenone hydrogel contact lens is insufficient, and improvement in lubricity may not be expected. When the weight average molecular weight is more than 2,000,000, the viscosity is increased, and there is a possibility that the operation becomes difficult.

共聚物(P)例如可以按照國際公開第2013/128633號中記載的方法通過進行上述單體的共聚而製備。共聚物(P)雖然通常為無規則共聚物,但也可以為各結構單元規則排列而成的交替共聚物或嵌段共聚物,還可以一部分中具有接枝結構。The copolymer (P) can be produced, for example, by copolymerization of the above monomers in accordance with the method described in International Publication No. 2013/128633. Although the copolymer (P) is usually a random copolymer, it may be an alternating copolymer or a block copolymer in which each structural unit is regularly arranged, or may have a graft structure in a part.

本發明的溶液在水、醇(甲醇、乙醇、正丙醇、異丙醇等)、或它們的混合溶劑中含有0.001~1.0w/v%的共聚物(P)。該共聚物(P)的濃度較佳為0.002~1.0w/v%,更佳為0.003~1.0w/v%,進一步較佳為0.005~1.0w/v%。若共聚物(P)的濃度小於0.001w/v%,則不能獲得充分的表面親水性及表面潤滑性的改善效果。若大於1.0w/v%,則由於不能獲得與摻合量相當的效果,因此在經濟方面上是不利的。The solution of the present invention contains 0.001 to 1.0 w/v% of the copolymer (P) in water, alcohol (methanol, ethanol, n-propanol, isopropanol or the like) or a mixed solvent thereof. The concentration of the copolymer (P) is preferably from 0.002 to 1.0 w/v%, more preferably from 0.003 to 1.0 w/v%, still more preferably from 0.005 to 1.0 w/v%. When the concentration of the copolymer (P) is less than 0.001 w/v%, sufficient surface hydrophilicity and surface lubricity improving effect cannot be obtained. If it is more than 1.0 w/v%, since the effect equivalent to the blending amount cannot be obtained, it is economically disadvantageous.

另外,本發明中,“w/v%”以克(g)來表示100ml的溶液中的某種成分的質量。例如,“本發明的溶液含有1.0w/v%的共聚物(P)”是指100ml的溶液含有1.0g的共聚物(P)。Further, in the present invention, "w/v%" represents the mass of a component in a 100 ml solution in grams (g). For example, "the solution of the present invention contains 1.0 w/v% of the copolymer (P)" means that 100 ml of the solution contains 1.0 g of the copolymer (P).

上述水溶性高分子(Q)為選自由聚乙烯吡咯烷酮、聚乙烯醇、海藻酸及其鹽、透明質酸及其鹽、聚乙二醇、羥丙基甲基纖維素、羧基乙烯基聚合物、羥乙基纖維素、甲基纖維素、以及與上述共聚物(P)不同的磷脂聚合物組成的組中的至少一種高分子。這些高分子可以單獨使用一種,或者也可以組合使用兩種以上。另外,本發明中,“磷脂聚合物”是指含有PC結構單元及疏水性結構單元的聚合物。The above water-soluble polymer (Q) is selected from the group consisting of polyvinylpyrrolidone, polyvinyl alcohol, alginic acid and salts thereof, hyaluronic acid and salts thereof, polyethylene glycol, hydroxypropylmethylcellulose, carboxyvinyl polymer At least one polymer selected from the group consisting of hydroxyethyl cellulose, methyl cellulose, and a phospholipid polymer different from the above copolymer (P). These polymers may be used alone or in combination of two or more. Further, in the present invention, the "phospholipid polymer" means a polymer containing a PC structural unit and a hydrophobic structural unit.

作為聚乙烯吡咯烷酮的例子,可列舉出聚乙烯吡咯烷酮K25、聚乙烯吡咯烷酮K30、聚乙烯吡咯烷酮K90等。作為聚乙烯醇的例子,可列舉出聚乙烯醇的完全皂化物及部分皂化物等。作為海藻酸及其鹽的例子,可列舉出海藻酸、海藻酸鈉等。作為透明質酸及其鹽的例子,可列舉出透明質酸鈉等。作為聚乙二醇的例子,可列舉出macrogol 200、macrogol 300、macrogol 400、macrogol 600、macrogol 1500、macrogol 1540、macrogol 4000、macrogol 6000、macrogol 20000、macrogol 35000等。作為羥丙基甲基纖維素的例子,可列舉出Hypromellose(2208)、Hypromellose(2906)、Hypromellose(2910)等。作為羧基乙烯基聚合物的例子,可列舉出Wako Pure Chemical, Ltd.製造的HIVISWAKO 105等。作為羥乙基纖維素的例子,可列舉出DAICEL FINECHEM LTD.製造的HEC Daicel SP400等。作為甲基纖維素的例子,可列舉出Shin-Etsu Chemical Co., Ltd.製造的METOLOSE SM-15等。作為磷脂聚合物的例子,可列舉出後述的共聚物(q)等。Examples of the polyvinylpyrrolidone include polyvinylpyrrolidone K25, polyvinylpyrrolidone K30, and polyvinylpyrrolidone K90. Examples of the polyvinyl alcohol include a complete saponified product of a polyvinyl alcohol, a partially saponified product, and the like. Examples of the alginic acid and salts thereof include alginic acid and sodium alginate. Examples of the hyaluronic acid and the salt thereof include sodium hyaluronate and the like. Examples of the polyethylene glycol include macrogol 200, macrogol 300, macrogol 400, macrogol 600, macrogol 1500, macrogol 1540, macrogol 4000, macrogol 6000, macrogol 20000, macrogol 35000, and the like. Examples of the hydroxypropylmethylcellulose include Hypromylose (2208), Hypromello (2906), and Hypromello (2910). Examples of the carboxyvinyl polymer include HIVISWAKO 105 manufactured by Wako Pure Chemical, Ltd., and the like. Examples of the hydroxyethyl cellulose include HEC Daicel SP400 manufactured by DAICEL FINECHEM LTD. Examples of the methyl cellulose include METOLOSE SM-15 manufactured by Shin-Etsu Chemical Co., Ltd., and the like. Examples of the phospholipid polymer include a copolymer (q) and the like which will be described later.

共聚物(q)具有10,000~5,000,000的重量平均分子量,具有上述式(1a)表示的PC結構單元和下述式(1d)表示的疏水性結構單元。共聚物(q)可以包含多種PC結構單元,也可以包含多種疏水性結構單元。 [化学式11] The copolymer (q) has a weight average molecular weight of 10,000 to 5,000,000, and has a PC structural unit represented by the above formula (1a) and a hydrophobic structural unit represented by the following formula (1d). The copolymer (q) may comprise a plurality of PC structural units or may comprise a plurality of hydrophobic structural units. [Chemical Formula 11]

式(1d)中,R7 為氫原子或甲基,R8 是碳原子數為1~24的烴基。該烴基可以為直鏈狀烴基、支鏈狀烴基或環式烴基,還可以為飽和烴基、不飽和烴基或芳香族烴基。作為烴基的具體例,可列舉出甲基、乙基、丙基、丁基、十二烷基、十三烷基、十八烷基、乙基己基、環己基、異冰片基、丙烯基、苄基等。In the formula (1d), R 7 is a hydrogen atom or a methyl group, and R 8 is a hydrocarbon group having 1 to 24 carbon atoms. The hydrocarbon group may be a linear hydrocarbon group, a branched hydrocarbon group or a cyclic hydrocarbon group, and may also be a saturated hydrocarbon group, an unsaturated hydrocarbon group or an aromatic hydrocarbon group. Specific examples of the hydrocarbon group include a methyl group, an ethyl group, a propyl group, a butyl group, a dodecyl group, a tridecyl group, an octadecyl group, an ethylhexyl group, a cyclohexyl group, an isobornyl group, and an allyl group. Benzyl and the like.

共聚物(q)中,PC結構單元的個數na 與疏水性結構單元的個數nd 的比na :nd 為10:90~90:10,較佳為50:50~90:10,更佳為70:30~90:10。Copolymer (q), the number n a structural unit PC and the hydrophobic structural unit number of the ratio n a n d: n d is 10: 90 ~ 90: 10, preferably 50: 50 to 90: 10, more preferably 70:30~90:10.

在不損害本發明的效果的範圍內,共聚物(q)可以包含除上述PC結構單元及疏水性結構單元以外的、任意的結構單元。共聚物(q)中的任意的結構單元可以與上述的共聚物(P)中的任意的結構單元相同。共聚物(q)中,將na 換算為100時,PC結構單元的個數na 與任意的結構單元的個數nf 的比na :nf 較佳為100:10以下。The copolymer (q) may contain any structural unit other than the above PC structural unit and hydrophobic structural unit, within a range not impairing the effects of the present invention. Any structural unit in the copolymer (q) may be the same as any of the above structural copolymers (P). Copolymer (q), the terms n a is 100, the number n a structural unit PC with an arbitrary number of structural units of the ratio n a n f: n f is preferably 100: 10 or less.

共聚物(q)可以利用與共聚物(P)相同的方法而製備。The copolymer (q) can be produced by the same method as the copolymer (P).

本發明的溶液含有0.001~10.0w/v%的水溶性高分子(Q)。該水溶性高分子(Q)的濃度較佳為0.002~9.5w/v%,更佳為0.002~9.0w/v%,進一步較佳為0.003~8.0w/v%,特別較佳為0.005~7.0w/v%。The solution of the present invention contains 0.001 to 10.0 w/v% of a water-soluble polymer (Q). The concentration of the water-soluble polymer (Q) is preferably from 0.002 to 9.5 w/v%, more preferably from 0.002 to 9.0 w/v%, still more preferably from 0.003 to 8.0 w/v%, particularly preferably 0.005. 7.0w/v%.

除了共聚物(P)、水溶性高分子(Q)及溶劑以外,本發明的溶液還可以根據需要進一步含有添加劑。添加劑可以為現有的用於隱形眼鏡用溶液等中的添加劑,作為其例子,可列舉出維生素類、氨基酸類、糖類、清涼劑、無機鹽類、有機酸鹽、酸、鹼、抗氧化劑、穩定劑、防腐劑等。In addition to the copolymer (P), the water-soluble polymer (Q), and the solvent, the solution of the present invention may further contain an additive as needed. The additive may be an additive used in a solution for contact lens or the like, and examples thereof include vitamins, amino acids, sugars, cooling agents, inorganic salts, organic acid salts, acids, bases, antioxidants, and stabilizers. Agents, preservatives, etc.

作為維生素類的例子,可列舉出黃素腺嘌呤二核苷酸鈉、氰基鈷胺、維生素A醋酸酯、維生素A棕櫚酸酯、鹽酸吡哆醇、泛醇、泛酸鈉、泛酸鈣等。作為氨基酸類的例子,可列舉出天冬氨酸及其鹽、氨基乙磺酸等。作為糖類的例子,可列舉出葡萄糖、甘露醇、山梨糖醇、木糖醇、海藻糖等。作為清涼劑的例子,可列舉出薄荷醇、樟腦等。作為無機鹽類的例子,可列舉出氯化鈉、氯化鉀、磷酸氫鈉、無水磷酸二氫鈉等。作為有機酸鹽的例子,可列舉出檸檬酸鈉等。作為酸的例子,可列舉出磷酸、檸檬酸、硫酸、醋酸、硼酸等。作為鹼的例子,可列舉出氫氧化鉀、氫氧化鈉、三羥甲基氨基甲烷、單乙醇胺、硼砂等。作為抗氧化劑的例子,可列舉出生育酚醋酸酯、二丁基羥基甲苯等。作為穩定劑的例子,可列舉出依地酸鈉、甘氨酸等。作為防腐劑的例子,可列舉出苯紮氯銨、葡萄糖酸氯己定、山梨酸鉀、聚己縮胍鹽酸鹽等。Examples of the vitamins include flavin adenine dinucleotide sodium, cyanocobalamin, vitamin A acetate, vitamin A palmitate, pyridoxine hydrochloride, panthenol, sodium pantothenate, and calcium pantothenate. Examples of the amino acid include aspartic acid and a salt thereof, aminoethanesulfonic acid, and the like. Examples of the saccharide include glucose, mannitol, sorbitol, xylitol, trehalose, and the like. Examples of the cooling agent include menthol and camphor. Examples of the inorganic salt include sodium chloride, potassium chloride, sodium hydrogen phosphate, anhydrous sodium dihydrogen phosphate, and the like. Examples of the organic acid salt include sodium citrate and the like. Examples of the acid include phosphoric acid, citric acid, sulfuric acid, acetic acid, and boric acid. Examples of the base include potassium hydroxide, sodium hydroxide, trishydroxymethylaminomethane, monoethanolamine, and borax. Examples of the antioxidant include tocopheryl acetate and dibutylhydroxytoluene. Examples of the stabilizer include sodium edetate, glycine, and the like. Examples of the preservative include benzalkonium chloride, chlorhexidine gluconate, potassium sorbate, and polyhexylamine hydrochloride.

這些添加劑中,就提高矽酮水凝膠隱形眼鏡的表面親水性和表面潤滑性這一點而言,較佳氯化鈉及氯化鉀。本發明的溶液中,氯化鈉的濃度沒有特別限定,但較佳為0.01~1.5w/v%,更佳為0.1~1.3w/v%,進一步較佳為0.2~1.0w/v%。氯化鉀的濃度沒有特別限定,但較佳為0.01~1.5w/v%,更佳為0.02~1.3w/v%,進一步較佳為0.05~1.0w/v%。Among these additives, sodium chloride and potassium chloride are preferred in terms of improving the surface hydrophilicity and surface lubricity of the fluorenone hydrogel contact lens. In the solution of the present invention, the concentration of sodium chloride is not particularly limited, but is preferably 0.01 to 1.5 w/v%, more preferably 0.1 to 1.3 w/v%, still more preferably 0.2 to 1.0 w/v%. The concentration of potassium chloride is not particularly limited, but is preferably 0.01 to 1.5 w/v%, more preferably 0.02 to 1.3 w/v%, still more preferably 0.05 to 1.0 w/v%.

為了進一步提高矽酮水凝膠隱形眼鏡的表面親水性和表面潤滑性,較佳同時使用氯化鈉與氯化鉀。同時使用時的氯化鈉:氯化鉀的質量比較佳為1:1~50:1,更佳為2:1~40:1,進一步較佳為3:1~30:1。In order to further improve the surface hydrophilicity and surface lubricity of the fluorenone hydrogel contact lens, it is preferred to use both sodium chloride and potassium chloride. When used at the same time, the quality of sodium chloride: potassium chloride is preferably from 1:1 to 50:1, more preferably from 2:1 to 40:1, further preferably from 3:1 to 30:1.

本發明的溶液可使用於任意種類的矽酮水凝膠隱形眼鏡。尤其是可較佳使用於將三(三甲基甲矽烷氧基)甲矽烷基丙基甲基丙烯酸酯、三(三甲基甲矽烷氧基)甲矽烷基丙基乙烯基氨基甲酸酯或甲基二(三甲基甲矽烷氧基)甲矽烷基丙基丙三醇甲基丙烯酸酯用作矽酮單體而得到的矽酮水凝膠隱形眼鏡。The solution of the invention can be used in any type of fluorenone hydrogel contact lens. In particular, it can be preferably used for tris(trimethylformamoxy)carbamylpropyl methacrylate, tris(trimethylformamoxy)carbamylpropylvinylcarbamate or An fluorenone hydrogel contact lens obtained by using methyl bis(trimethylformamoxy)carbomethoxypropyl glycerol methacrylate as an anthrone monomer.

作為本發明的溶液的具體的產品形態,可列舉出矽酮水凝膠隱形眼鏡用配送液、矽酮水凝膠隱形眼鏡用護理用品、矽酮水凝膠隱形眼鏡用保存液、矽酮水凝膠隱形眼鏡用清洗液、矽酮水凝膠隱形眼鏡用清洗保存液、隱形眼鏡用消毒劑等。其中,較佳用作矽酮水凝膠隱形眼鏡用的配送液、護理用品或保存液,特別較佳用作配送液。本說明書中,矽酮水凝膠隱形眼鏡用配送液是指矽酮水凝膠隱形眼鏡產品出貨時浸漬該產品的溶液。Specific product forms of the solution of the present invention include a distribution liquid for an anthrone ketone hydrogel contact lens, a care product for an anthrone ketone hydrogel contact lens, a preservation solution for an anthrone ketone hydrogel contact lens, and an anthrone water. A cleaning solution for a gel contact lens, a cleaning and preservation solution for an anthrone ketone hydrogel contact lens, a disinfectant for a contact lens, and the like. Among them, it is preferably used as a dispensing liquid, a care product or a preservation solution for an fluorenone hydrogel contact lens, and is particularly preferably used as a dispensing liquid. In the present specification, the distribution liquid for the fluorenone hydrogel contact lens refers to a solution in which the oxime ketone hydrogel contact lens product is immersed at the time of shipment.

實施例Example

以下,利用實施例及比較例對本發明進行更詳細的說明,但本發明並不受其限定。Hereinafter, the present invention will be described in more detail by way of examples and comparative examples, but the invention is not limited thereto.

<共聚物(P)><Copolymer (P)>

實施例及比較例中,作為共聚物(P)使用了以下所示的共聚物(p-1)~(p-4)。另外,利用國際公開第2013/128633號的實施例中記載的方法製備了共聚物(p-1)~(p-4)。In the examples and the comparative examples, the copolymers (p-1) to (p-4) shown below were used as the copolymer (P). Further, the copolymers (p-1) to (p-4) were prepared by the method described in the examples of International Publication No. 2013/128633.

共聚物(p-1):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼、式(1b’)表示的N,N-二甲基丙烯醯胺、及式(1c’)表示的甲基丙烯酸十八酯的共聚物(共聚組成比na :nb :nc =100:90:10,重量平均分子量1,000,000)。Copolymer (p-1): 2-methylpropenyloxyethylphosphocholine represented by formula (1a''), N,N-dimethylpropenylamine represented by formula (1b'), and formula ( A copolymer of octadecyl methacrylate represented by 1c') (copolymerization composition ratio n a :n b :n c =100:90:10, weight average molecular weight 1,000,000).

共聚物(p-2):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼、式(1b’)表示的N,N-二甲基丙烯醯胺、及式(1c’)表示的甲基丙烯酸十八酯的共聚物(共聚組成比na :nb :nc =100/223/10,重量平均分子量1,200,000)。Copolymer (p-2): 2-methylpropenyloxyethylphosphocholine represented by formula (1a''), N,N-dimethylpropenylamine represented by formula (1b'), and formula ( A copolymer of octadecyl methacrylate represented by 1c') (copolymerization composition ratio n a : n b : n c = 100 / 223/10, weight average molecular weight 1,200,000).

共聚物(p-3):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼、式(1b’)表示的N,N-二甲基丙烯醯胺、及式(1c’)表示的甲基丙烯酸十八酯的共聚物(共聚組成比na :nb :nc =100/34/9,重量平均分子量700,000)。Copolymer (p-3): 2-methylpropenyloxyethylphosphocholine represented by formula (1a''), N,N-dimethylpropenylamine represented by formula (1b'), and formula ( A copolymer of octadecyl methacrylate represented by 1c') (copolymerization composition ratio n a :n b :n c =100/34/9, weight average molecular weight 700,000).

共聚物(p-4):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼、式(1b’)表示的N,N-二甲基丙烯醯胺、及式(1c’)表示的甲基丙烯酸月桂酯的共聚物(共聚組成比na :nb :nc =100/80/20,重量平均分子量1,000,000)。Copolymer (p-4): 2-methylpropenyloxyethylphosphocholine represented by formula (1a''), N,N-dimethylpropenylamine represented by formula (1b'), and formula ( A copolymer of lauryl methacrylate represented by 1c') (copolymerization composition ratio n a : n b : n c = 100 / 80 / 20, weight average molecular weight 1,000,000).

<比較用聚合物><Comparative polymer>

比較例中,作為比較用聚合物,使用了以下所示的均聚物(A)~(C)。In the comparative examples, the homopolymers (A) to (C) shown below were used as the comparative polymer.

均聚物(A):利用日本特開平8-333421的實施例中記載的方法而得到的2-甲基丙烯醯氧乙基磷酸膽鹼均聚物(重量平均分子量200,000)。Homopolymer (A): 2-methylpropenyl oxyethylphosphocholine homopolymer (weight average molecular weight: 200,000) obtained by the method described in the examples of JP-A-8-333421.

均聚物(B):市售的N,N-二甲基丙烯醯胺均聚物(Sigma-Aldrich Japan製造的聚(N,N-二甲基丙烯醯胺),DDMAT Terminated(產品名稱),數均分子量10,000)。Homopolymer (B): Commercially available N,N-dimethyl methacrylamide homopolymer (poly(N,N-dimethyl methacrylate) manufactured by Sigma-Aldrich Japan, DDMAT Terminated (product name) , number average molecular weight 10,000).

均聚物(C):市售的甲基丙烯酸月桂酯均聚物(Sigma-Aldrich Japan製造的聚甲基丙烯酸月桂酯(產品名稱),重量平均分子量470,000)。Homopolymer (C): Commercially available lauryl methacrylate homopolymer (polylauryl methacrylate (product name) manufactured by Sigma-Aldrich Japan, weight average molecular weight: 470,000).

<水溶性高分子(Q)><Water-soluble polymer (Q)>

實施例及比較例中,作為水溶性高分子(Q),使用了以下的高分子。In the examples and the comparative examples, the following polymers were used as the water-soluble polymer (Q).

聚乙烯吡咯烷酮:Wako Pure Chemical, Ltd.製造的聚乙烯吡咯烷酮K90。Polyvinylpyrrolidone: polyvinylpyrrolidone K90 manufactured by Wako Pure Chemical, Ltd.

聚乙烯醇:The Nippon Synthetic Chemical Industry Co.,Ltd.製造的GOHSENOL EG-05。Polyvinyl alcohol: GOHSENOL EG-05 manufactured by The Nippon Synthetic Chemical Industry Co., Ltd.

海藻酸鹽:Wako Pure Chemical, Ltd.製造的海藻酸鈉。Alginate: sodium alginate manufactured by Wako Pure Chemical, Ltd.

透明質酸鹽:Sigma-Aldrich Co. LLC製造的透明質酸鈉。Hyaluronate: sodium hyaluronate manufactured by Sigma-Aldrich Co. LLC.

聚乙二醇:NOF CORPORATION製造的macrogol 4000。Polyethylene glycol: Macrogol 4000 manufactured by NOF CORPORATION.

羥丙基甲基纖維素:Shin-Etsu Chemical Co., Ltd.製造的METOLOSE 60SH-50。Hydroxypropyl methylcellulose: METOLOSE 60SH-50 manufactured by Shin-Etsu Chemical Co., Ltd.

羧基乙烯基聚合物:Wako Pure Chemical, Ltd.製造的HIVISWAKO 105。Carboxyvinyl polymer: HIVISWAKO 105 manufactured by Wako Pure Chemical, Ltd.

羥乙基纖維素:DAICEL FINECHEM LTD.製造的HEC Daicel SP400。Hydroxyethyl cellulose: HEC Daicel SP400 manufactured by DAICEL FINECHEM LTD.

甲基纖維素:Shin-Etsu Chemical Co., Ltd.製造的METOLOSE SM-15。Methylcellulose: METOLOSE SM-15 manufactured by Shin-Etsu Chemical Co., Ltd.

共聚物(q-1):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼及甲基丙烯酸丁酯的共聚物(利用日本特開平11-035605的實施例中記載的方法進行聚合,共聚組成比na:nd=80:20,重量平均分子量600,000)。Copolymer (q-1): a copolymer of 2-methylpropenyloxyethylphosphocholine and butyl methacrylate represented by the formula (1a'') (described in the examples of JP-A-11-035605) The method was carried out by polymerization, and the copolymerization composition ratio was na: nd = 80:20, and the weight average molecular weight was 600,000).

共聚物(q-2):式(1a’’)表示的2-甲基丙烯醯氧乙基磷酸膽鹼及甲基丙烯酸丁酯的共聚物(利用日本特開2004-196868的實施例中記載的方法進行聚合,共聚組成比na:nd=30:70,重量平均分子量142,000)。Copolymer (q-2): a copolymer of 2-methylpropenyloxyethylphosphocholine and butyl methacrylate represented by the formula (1a'') (described in the examples of JP-A-2004-196868) The method was carried out by polymerization, and the copolymerization composition ratio was na: nd = 30:70, and the weight average molecular weight was 142,000).

<矽酮水凝膠隱形眼鏡的表面潤滑性評價><Evaluation of Surface Lubricity of Anthrone Hydrogel Contact Lens>

實施例及比較例中,按照以下的步驟進行了矽酮水凝膠隱形眼鏡的表面潤滑性的評價。在評價實施之前進行了ISO生理鹽水的製備及隱形眼鏡的前處理。In the examples and comparative examples, the surface lubricity of the fluorenone hydrogel contact lens was evaluated in accordance with the following procedure. Preparation of ISO saline and pretreatment of contact lenses were performed prior to evaluation.

(ISO生理鹽水的製備)(Preparation of ISO saline)

按照ISO18369-3:2006,Ophthalmic Optics-Contact Lenses Part3:Measurement Methods.製備了ISO生理鹽水。具體而言,將8.3g的氯化鈉、5.993g的磷酸氫鈉十二水合物、0.528g的磷酸二氫鈉二水合物溶于水中並使其總量為1000mL,過濾而得到了ISO生理鹽水。ISO saline was prepared according to ISO 18369-3:2006, Ophthalmic Optics-Contact Lenses Part 3: Measurement Methods. Specifically, 8.3 g of sodium chloride, 5.993 g of sodium hydrogen phosphate dodecahydrate, and 0.528 g of sodium dihydrogen phosphate dihydrate were dissolved in water to make a total amount of 1000 mL, and filtration was carried out to obtain ISO physiology. brine.

(隱形眼鏡的前處理)(pre-treatment of contact lenses)

按照以下的步驟,對隱形眼鏡實施了前處理。Follow the steps below to perform pre-treatment on the contact lenses.

(1)向15mL的離心管中加入10mL以上的ISO生理鹽水,從泡罩包裝中取出1枚矽酮水凝膠隱形眼鏡(USAN:balafilcon A,產品名稱:Medalist Fresh fit comfort moist,FDA分類:III類,構成單體:TrisVC、NVP),加入該離心管中,振動了2小時。(1) Add 10 mL or more of ISO physiological saline to a 15 mL centrifuge tube, and take out one fluorenone hydrogel contact lens from the blister pack (USAN: balafilcon A, product name: Medalist Fresh fit comfort moist, FDA classification: Class III, constituent monomers: TrisVC, NVP), was added to the centrifuge tube and shaken for 2 hours.

(2)去除離心管內的ISO生理鹽水,再次加入10mL以上的ISO生理鹽水,振動一晚。(2) Remove the ISO saline in the centrifuge tube, and add more than 10 mL of ISO saline again, and shake for one night.

(3)將上述隱形眼鏡從離心管中取出,輕輕擦去液體後裝入隱形眼鏡盒中。向其中加入1mL後述的實施例及比較例的各溶液,進行了壓熱處理(121℃、20分鐘)。(3) The above contact lens is taken out from the centrifuge tube, and the liquid is gently wiped off and then loaded into the contact lens case. 1 mL of each of the solutions of the examples and the comparative examples described later was added thereto, and subjected to autoclaving (121 ° C, 20 minutes).

(表面潤滑性評價)(surface lubricity evaluation)

通過感官評價,對如上所述地進行了前處理的隱形眼鏡的表面潤滑性進行了評價。以10個級別評價表面潤滑性,將評價為“潤滑性最優異”的情況的評分記為10,將評價為“完全沒有潤滑性”的情況的評分記為1。將6名各進行了3次感官評價時的評分的平均值作為“表面潤滑性”並顯示於表1~7。將該平均值為7.5以上的情況記為“表面潤滑性優異”,將8.5以上的情況記為“表面潤滑性特別優異”。The surface lubricity of the contact lens pretreated as described above was evaluated by sensory evaluation. The surface lubricity was evaluated in 10 levels, and the score when the evaluation was "the most excellent lubricity" was 10, and the score when the evaluation was "completely lubricious" was 1. The average value of the scores when the six sensory evaluations were performed three times was referred to as "surface lubricity" and is shown in Tables 1 to 7. The case where the average value is 7.5 or more is referred to as "excellent surface lubricity", and the case where 8.5 or more is described is "excellent in surface lubricity".

<矽酮水凝膠隱形眼鏡的表面親水性評價><Evaluation of surface hydrophilicity of anthrone ketone hydrogel contact lenses>

實施例及比較例中,按照以下的步驟進行了矽酮水凝膠隱形眼鏡的表面親水性的評價。另外,以與上述表面潤滑性評價中所使用的ISO生理鹽水相同的方式製備了表面親水性評價中使用的ISO生理鹽水。In the examples and comparative examples, the surface hydrophilicity of the fluorenone hydrogel contact lens was evaluated in accordance with the following procedure. Further, the ISO physiological saline used for the evaluation of the surface hydrophilicity was prepared in the same manner as the above-described ISO physiological saline used for the evaluation of the surface lubricity.

(1)從泡罩包裝中取出1枚矽酮水凝膠隱形眼鏡(USAN:balafilcon A,產品名稱:Medalist Fresh fit comfort moist(B.L.J. Company, Ltd.製造),FDA分類:III類,構成單體:TrisVC、NVP),裝入隱形眼鏡盒中。此時,沒有將泡罩包裝中的配送液加入隱形眼鏡盒中。(1) Take one fluorenone hydrogel contact lens from the blister pack (USAN: balafilcon A, product name: Medalist Fresh fit comfort moist (manufactured by BLJ Company, Ltd.), FDA classification: class III, constituting monomer :TrisVC, NVP), loaded into the contact lens case. At this time, the dispensing liquid in the blister pack was not added to the contact lens case.

(2)向隱形眼鏡盒中加入1mL的ISO生理鹽水,充分浸漬以使上述隱形眼鏡與ISO生理鹽水調和。(2) 1 mL of ISO physiological saline was added to the contact lens case, and fully immersed to reconcile the above contact lenses with ISO physiological saline.

(3)去除ISO生理鹽水,再次加入1mL新的ISO生理鹽水,充分浸漬以使隱形眼鏡與ISO生理鹽水調和。(3) The ISO saline was removed, 1 mL of new ISO saline was again added, and fully immersed to reconcile the contact lenses with ISO saline.

(4)去除ISO生理鹽水,向隱形眼鏡盒中加入1mL後述的實施例及比較例的各溶液,進行了壓熱處理(121℃、20分鐘)。(4) The ISO saline was removed, and 1 mL of each of the solutions of the examples and the comparative examples described later was added to the contact lens case, and subjected to autoclaving (121 ° C, 20 minutes).

(5)取出隱形眼鏡,並用碼錶測量了至鏡片表面的水膜破裂為止的時間(BUT)。將該BUT作為“表面親水性”並顯示於表1~7。將BUT為10秒以上的情況記為“表面親水性優異”,將15秒以上的情況記為“表面親水性特別優異”。(5) The contact lens was taken out, and the time (BUT) until the water film on the surface of the lens was broken was measured with a code table. This BUT was referred to as "surface hydrophilicity" and is shown in Tables 1-7. The case where the BUT was 10 seconds or longer was referred to as "excellent surface hydrophilicity", and the case where the BUT was 15 seconds or more was referred to as "the surface hydrophilicity was particularly excellent".

<矽酮水凝膠隱形眼鏡的變形抑制評價><Deformation inhibition evaluation of anthrone ketone hydrogel contact lens>

實施例及比較例中,按照以下的步驟進行了矽酮水凝膠隱形眼鏡的變形抑制的評價。另外,在評價實施之前,以與上述表面親水性評價的步驟(1)~(4)相同的方式準備了矽酮水凝膠隱形眼鏡。In the examples and comparative examples, the evaluation of the deformation inhibition of the fluorenone hydrogel contact lens was carried out in accordance with the following procedure. Further, an anthrone ketone hydrogel contact lens was prepared in the same manner as the steps (1) to (4) of the surface hydrophilicity evaluation described above before the evaluation was carried out.

(1)取出所準備的矽酮水凝膠隱形眼鏡,在20℃、40%RH的條件下,在Teflon(註冊商標)片上靜置了10分鐘。(1) The prepared fluorenone hydrogel contact lens was taken out and allowed to stand on a Teflon (registered trademark) sheet for 10 minutes at 20 ° C and 40% RH.

(2)目視確認隱形眼鏡的變形,並以A(幾乎沒有觀察到變形)、B(在隱形眼鏡的一部分觀察到變形)或C(在隱形眼鏡中觀察到較大的變形)的基準進行了評價。將評價結果示於表1~7。另外,將變形性評價的B評價的情況記為“能夠抑制變形”,將A評價的情況記為“能夠顯著抑制變形”。(2) Visually confirming the deformation of the contact lens, and benchmarking with A (nearly observed deformation), B (observation of deformation in a part of the contact lens), or C (large deformation observed in the contact lens) Evaluation. The evaluation results are shown in Tables 1 to 7. In addition, the case of the B evaluation of the deformability evaluation is described as "the deformation can be suppressed", and the case of the A evaluation is described as "the deformation can be significantly suppressed".

<矽酮水凝膠隱形眼鏡用溶液的製備><Preparation of solution for ketone ketone hydrogel contact lens>

如下所述,分別製備了實施例1~23及比較例1~15的矽酮水凝膠隱形眼鏡用溶液。The solutions for the anthrone ketone hydrogel contact lenses of Examples 1 to 23 and Comparative Examples 1 to 15 were prepared as follows.

(實施例1)(Example 1)

向約80g的ISO生理鹽水中加入0.1g的共聚物(p-1)及0.1g的聚乙烯吡咯烷酮(Wako Pure Chemical, Ltd.製造的聚乙烯吡咯烷酮K90)並進行攪拌,使其溶解。以使總量成為100mL的方式向其加入ISO生理鹽水,進行過濾滅菌,製備了實施例1的無菌矽酮水凝膠隱形眼鏡用溶液。即,實施例1的溶液由表1所示的成分和ISO生理鹽水組成,並以表1所示的濃度(w/v%)含有這些成分。將該溶液的外觀・性狀及評價結果示於表1。To about 80 g of ISO physiological saline, 0.1 g of a copolymer (p-1) and 0.1 g of polyvinylpyrrolidone (polyvinylpyrrolidone K90 manufactured by Wako Pure Chemical, Ltd.) were added and stirred to dissolve. The ISO physiological saline was added thereto in such a manner that the total amount became 100 mL, and the mixture was filtered and sterilized to prepare a solution for the sterile fluorenone hydrogel contact lens of Example 1. That is, the solution of Example 1 was composed of the components shown in Table 1 and ISO physiological saline, and these components were contained in the concentration (w/v%) shown in Table 1. The appearance, properties and evaluation results of the solution are shown in Table 1.

(實施例2~18及比較例1~15)(Examples 2 to 18 and Comparative Examples 1 to 15)

除了使用了表1~6所示的種類及量的成分以外,以與實施例1相同的方式分別製備了實施例2~18及比較例1~15的無菌矽酮水凝膠隱形眼鏡用溶液。即,實施例2~18及比較例1~15的溶液分別由表1~6所示的成分與ISO生理鹽水組成,並以表1~6所示的濃度(w/v%)含有這些成分。將該溶液的外觀・性狀及評價結果示於表1~6。另外,由於比較例8中成分未溶解,因此未進行表面潤滑性及表面親水性的評價。Prepared solutions of sterile fluorenone hydrogel contact lenses of Examples 2 to 18 and Comparative Examples 1 to 15 were prepared in the same manner as in Example 1 except that the components of the types and amounts shown in Tables 1 to 6 were used. . That is, the solutions of Examples 2 to 18 and Comparative Examples 1 to 15 were composed of the components shown in Tables 1 to 6 and the ISO physiological saline, and these components were contained in the concentrations (w/v%) shown in Tables 1 to 6. . The appearance, properties and evaluation results of the solution are shown in Tables 1 to 6. Further, since the components in Comparative Example 8 were not dissolved, the evaluation of surface lubricity and surface hydrophilicity was not performed.

(參考例1)(Reference example 1)

使用上述實施例1中製備的溶液,對與上述矽酮水凝膠隱形眼鏡不同的軟式隱形眼鏡(USAN:etafilcon A,產品名稱:1day ACUVUE,FDA分類:IV類,構成單體:2-HEMA、MAA)的表面潤滑性、表面親水性及變形抑制實施了評價。作為參考例1將結果顯示於表6。Using the solution prepared in the above Example 1, a soft contact lens different from the above fluorenone hydrogel contact lens (USAN: etafilcon A, product name: 1day ACUVUE, FDA classification: class IV, constituent monomer: 2-HEMA The surface lubricity, surface hydrophilicity, and deformation inhibition of MAA) were evaluated. The results are shown in Table 6 as Reference Example 1.

(實施例19~23)(Examples 19 to 23)

分別製備了由表7所示的成分與水組成的實施例19~23的無菌矽酮水凝膠隱形眼鏡用溶液。即,實施例19~23的溶液係以表7所示的濃度(w/v%)含有各自的成分的水溶液。將該溶液的外觀・性狀及評價結果顯示於表7。 [表1] [表2] [表3] [表4] [表5] [表6] [表7] Separate ketone ketone hydrogel contact lens solutions of Examples 19 to 23 consisting of the components shown in Table 7 and water were separately prepared. That is, the solutions of Examples 19 to 23 contained aqueous solutions of the respective components at the concentrations (w/v%) shown in Table 7. The appearance, properties and evaluation results of the solution are shown in Table 7. [Table 1] [Table 2] [table 3] [Table 4] [table 5] [Table 6] [Table 7]

由表1~7明顯可知,使用了本發明的矽酮水凝膠隱形眼鏡用溶液的實施例中,得到了優異的表面潤滑性和表面親水性。尤其可知共聚物(p-1)與聚乙烯吡咯烷酮或共聚物(q-1)的組合改善矽酮水凝膠隱形眼鏡的表面潤滑性和表面親水性的效果高。實施例的溶液可較佳用作配送液。As is apparent from Tables 1 to 7, in the examples using the solution for the fluorenone hydrogel contact lens of the present invention, excellent surface lubricity and surface hydrophilicity were obtained. In particular, it is understood that the combination of the copolymer (p-1) and the polyvinylpyrrolidone or the copolymer (q-1) has a high effect of improving the surface lubricity and surface hydrophilicity of the fluorenone hydrogel contact lens. The solution of the examples can be preferably used as a dispensing solution.

工業實用性Industrial applicability

由於本發明的矽酮水凝膠隱形眼鏡用溶液可對矽酮水凝膠隱形眼鏡賦予優異的表面親水性和表面潤滑性,因此能夠提供一種佩戴感優異的矽酮水凝膠隱形眼鏡。Since the solution for the fluorenone hydrogel contact lens of the present invention imparts excellent surface hydrophilicity and surface lubricity to the fluorenone hydrogel contact lens, it is possible to provide an fluorenone hydrogel contact lens excellent in wearing feeling.

無。no.

無。no.

Claims (5)

一種矽酮水凝膠隱形眼鏡用溶液,其包含0.001~1.0w/v%的共聚物(P)和0.001~10.0w/v%的水溶性高分子(Q),該共聚物(P)具有5,000~2,000,000的重量平均分子量,具有下述式(1a)~(1c)表示的結構單元,該共聚物(P)中的該些結構單元的個數比na :nb :nc 為100:10~400:2~50, [化學式1][化學式2][化學式3]式(1a)~(1c)中,R1 、R2 及R5 各自獨立地為氫原子或甲基,R3 及R4 各自獨立地為氫原子、甲基或乙基,或者彼此鍵合而形成嗎啉基,R6 是碳原子數為12~24的烴基,該水溶性高分子(Q)為選自由聚乙烯吡咯烷酮、聚乙烯醇、海藻酸及其鹽、透明質酸及其鹽、聚乙二醇、羥丙基甲基纖維素、羧基乙烯基聚合物、羥乙基纖維素、甲基纖維素以及與該共聚物(P)不同的磷脂聚合物組成的群組中的至少一種高分子。A solution for an fluorenone hydrogel contact lens comprising 0.001 to 1.0 w/v% of a copolymer (P) and 0.001 to 10.0 w/v% of a water-soluble polymer (Q), the copolymer (P) having The weight average molecular weight of 5,000 to 2,000,000 has a structural unit represented by the following formulas (1a) to (1c), and the number ratio of the structural units in the copolymer (P) is n a : n b : n c is 100 :10~400:2~50, [Chemical Formula 1] [Chemical Formula 2] [Chemical Formula 3] In the formulae (1a) to (1c), R 1 , R 2 and R 5 are each independently a hydrogen atom or a methyl group, and R 3 and R 4 are each independently a hydrogen atom, a methyl group or an ethyl group, or are bonded to each other. And forming a morpholinyl group, R 6 is a hydrocarbon group having 12 to 24 carbon atoms, and the water-soluble polymer (Q) is selected from the group consisting of polyvinylpyrrolidone, polyvinyl alcohol, alginic acid and salts thereof, hyaluronic acid and salts thereof At least one of a group consisting of polyethylene glycol, hydroxypropyl methylcellulose, carboxyvinyl polymer, hydroxyethyl cellulose, methyl cellulose, and a phospholipid polymer different from the copolymer (P) A polymer. 如申請專利範圍第1項所述的矽酮水凝膠隱形眼鏡用溶液,其中,該水溶性高分子(Q)為該磷脂聚合物,具有10,000~5,000,000的重量平均分子量,並具有式(1a)表示的結構單元與下述式(1d)表示的結構單元,該磷脂聚合物中的該些結構單元的個數比na :nd 為10:90~90:10, [化學式4]式(1d)中,R7 為氫原子或甲基,R8 是碳原子數為1~24的烴基。The solution for an anthrone ketone hydrogel contact lens according to claim 1, wherein the water-soluble polymer (Q) is the phospholipid polymer having a weight average molecular weight of 10,000 to 5,000,000 and having the formula (1a) a structural unit represented by the following formula (1d), wherein the number ratio of the structural units in the phospholipid polymer n a : n d is 10:90 to 90:10, [Chemical Formula 4] In the formula (1d), R 7 is a hydrogen atom or a methyl group, and R 8 is a hydrocarbon group having 1 to 24 carbon atoms. 如申請專利範圍第1項或第2項所述的矽酮水凝膠隱形眼鏡用溶液,其進一步包含0.01~1.5w/v%的氯化鈉和/或0.01~1.5w/v%的氯化鉀。The solution for an anthrone ketone hydrogel contact lens according to claim 1 or 2, further comprising 0.01 to 1.5 w/v% of sodium chloride and/or 0.01 to 1.5 w/v% of chlorine. Potassium. 如申請專利範圍第1項或第2項所述的矽酮水凝膠隱形眼鏡用溶液,其中,該矽酮水凝膠隱形眼鏡具有來自矽酮單體的結構單元,該矽酮單體為選自由三(三甲基甲矽烷氧基)甲矽烷基丙基甲基丙烯酸酯、三(三甲基甲矽烷氧基)甲矽烷基丙基乙烯基氨基甲酸酯、及甲基二(三甲基甲矽烷氧基)甲矽烷基丙基丙三醇甲基丙烯酸酯組成的群組中的至少一種。The solution for an anthrone ketone hydrogel contact lens according to claim 1 or 2, wherein the fluorenone hydrogel contact lens has a structural unit derived from an anthrone monomer, wherein the fluorenone monomer is Freely selected tris(trimethylformamoxy)carbamylpropyl methacrylate, tris(trimethylformamoxy)carbamidopropylvinylcarbamate, and methyldi(3) At least one of the group consisting of methylformyloxy)carbamylpropyl glycerol methacrylate. 一種隱形眼鏡用配送液,其由申請專利範圍第1項至第4項中任一項所述的矽酮水凝膠隱形眼鏡用溶液組成。A dispensing liquid for contact lenses, which is composed of a solution for an anthrone ketone hydrogel contact lens according to any one of claims 1 to 4.
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CN115678193A (en) * 2022-11-11 2023-02-03 中国科学技术大学 Wearable transparent contact lens
TWI821845B (en) * 2021-12-29 2023-11-11 永勝光學股份有限公司 Solutions for ophthalmic lenses

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Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4837910B1 (en) * 1969-10-22 1973-11-14
JP2554483B2 (en) * 1986-12-26 1996-11-13 セイコーエプソン株式会社 contact lens
EP0938903A4 (en) 1996-02-07 2000-11-15 Rohto Pharma Ophthalmic composition with regulated viscosity
JP2870727B2 (en) * 1996-07-04 1999-03-17 科学技術振興事業団 2-methacryloyloxyethyl phosphorylcholine copolymer
JP4162304B2 (en) 1998-09-18 2008-10-08 日油株式会社 Contact lens solution
JP5852659B2 (en) 2010-10-06 2016-02-03 ノバルティス アーゲー Water-treatable silicone-containing prepolymer and use thereof
KR101797275B1 (en) 2012-03-02 2017-11-13 니치유 가부시키가이샤 Contact lens care preparation and packaging solution

Cited By (4)

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Publication number Priority date Publication date Assignee Title
CN115125066A (en) * 2021-03-26 2022-09-30 日油株式会社 Preserving fluid for contact lenses
TWI821845B (en) * 2021-12-29 2023-11-11 永勝光學股份有限公司 Solutions for ophthalmic lenses
CN115678193A (en) * 2022-11-11 2023-02-03 中国科学技术大学 Wearable transparent contact lens
CN115678193B (en) * 2022-11-11 2023-11-28 中国科学技术大学 Wearable transparent contact lens

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