CN110787112A - Anti-dandruff composition - Google Patents
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- CN110787112A CN110787112A CN201911286751.3A CN201911286751A CN110787112A CN 110787112 A CN110787112 A CN 110787112A CN 201911286751 A CN201911286751 A CN 201911286751A CN 110787112 A CN110787112 A CN 110787112A
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- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/96—Cosmetics or similar toiletry preparations characterised by the composition containing materials, or derivatives thereof of undetermined constitution
- A61K8/97—Cosmetics or similar toiletry preparations characterised by the composition containing materials, or derivatives thereof of undetermined constitution from algae, fungi, lichens or plants; from derivatives thereof
- A61K8/9783—Angiosperms [Magnoliophyta]
- A61K8/9789—Magnoliopsida [dicotyledons]
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- A61K36/185—Magnoliopsida (dicotyledons)
- A61K36/48—Fabaceae or Leguminosae (Pea or Legume family); Caesalpiniaceae; Mimosaceae; Papilionaceae
- A61K36/489—Sophora, e.g. necklacepod or mamani
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- A61K36/575—Magnolia
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Abstract
The invention relates to the technical field of hair care products, and provides an anti-dandruff composition aiming at the problems that sebum is continuously generated, so that bacteria are rapidly bred, a large amount of dandruff is generated, and people need to frequently wash hair, wherein the technical scheme is as follows: the paint comprises the following components in parts by mass: 10-18 parts of forsythia fruit extract, 11-19 parts of cacumen biotae extract, 10-18 parts of magnolia bark extract, 7-14 parts of sophora flavescens root extract and 8-14 parts of propylene glycol. The anti-dandruff composition has good oil control and sterilization effects by matching the forsythia suspense fruit extract, the cacumen biotae extract, the magnolia bark extract and the sophora flavescens root extract according to a specific proportion, and after the anti-dandruff composition is added into a shampoo product, the content of scalp sebum and bacteria can be effectively reduced after hair washing, the propagation environment of the bacteria is damaged, the number of the bacteria is reduced, and the generation of dandruff is reduced.
Description
Technical Field
The invention relates to the technical field of hair care products, in particular to an anti-dandruff composition.
Background
Dandruff is a product of metabolism of epidermal cells of human head, the physiological process of the epidermal cells of head is called keratinization process, the epidermal cells form cells from basal layer, proliferate and divide, and gradually move to upper layer, the cells also gradually form keratin to become anucleate and inanimate horny layer, and dry dead cells are in scaly or flaky shape and automatically fall off, which is commonly called dandruff.
Human head produces trace dandruff and belongs to normal phenomenon, and it belongs to normal metabolism, but general people's head can produce a large amount of dandruff, this is mainly because human skin can secrete sebum, when sebum secretion increases, leads to the pore to block up easily, and then breeds the bacterium easily, and the scalp can be amazing to the secretion of bacterium for thereby the scalp drops and produces a large amount of dandruff, seriously puzzles people.
Among the present hair washing articles for use, remove the grease through surfactant usually, through reducing the grease in order to reduce bacterial growing, nevertheless can get rid of sebum when having washed the hair, but sebum can continuously produce, a period of time after, the accumulation of sebum can breed the bacterium fast again to produce a large amount of dandruff, lead to people to need often to wash the hair, and to the longer ms of hair, often wash the hair will be very inconvenient, consequently, improve the space in addition.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide an anti-dandruff composition which has the advantage of lasting anti-dandruff effect.
In order to achieve the purpose, the invention provides the following technical scheme:
an anti-dandruff composition comprises the following components in parts by mass:
10-18 parts of forsythia suspense fruit extract;
11-19 parts of cacumen biotae extract;
10-18 parts of cortex magnoliae officinalis extract;
7-14 parts of sophora flavescens root extract;
8-14 parts of propylene glycol.
The invention is further configured to: the paint comprises the following components in parts by mass:
12-16 parts of forsythia suspense fruit extract;
13-17 parts of cacumen biotae extract;
12-16 parts of cortex magnoliae officinalis extract;
9-11 parts of sophora flavescens root extract;
10-12 parts of propylene glycol.
By adopting the technical scheme, the forsythia suspense fruit extract, the cacumen biotae extract, the magnolia bark extract and the sophora flavescens root extract are matched in a specific ratio, so that the anti-dandruff composition has a good oil control and sterilization effect, and after the anti-dandruff composition is added into a shampoo product, the content of scalp sebum and bacteria can be effectively reduced after shampooing, the propagation environment of the bacteria is damaged, the number of the bacteria is reduced, and the generation of dandruff is reduced;
the anti-dandruff composition adopts the forsythia suspense fruit extract and the biota orientalis extract to generate a strong oil control effect and inhibit the generation of oil, so that the sebum secretion is reduced, and the forsythia suspense fruit extract and the biota orientalis extract are easily absorbed by the skin and durably act on the skin, so that the oil control effect is relatively durable, and the forsythia suspense fruit extract and the biota orientalis extract are natural components and are harmless to a human body;
the cortex magnoliae officinalis bark extract and the sophora flavescens root extract are matched to generate a strong sterilization effect through the anti-dandruff composition, so that the number of bacteria is reduced, the stimulation of the bacteria to scalp is reduced, the dandruff is reduced, the cortex magnoliae officinalis bark extract and the sophora flavescens root extract are easy to absorb by the skin and act on the skin for a long time, the sterilization effect is long, the anti-dandruff effect is long, and the cortex magnoliae officinalis bark extract and the sophora flavescens root extract are natural components and are harmless to a human body;
the forsythia fruit extract and the cacumen biotae extract are matched with each other according to a specific proportion so that the oil control effect is better, and the magnolia bark extract and the sophora flavescens root extract are matched with each other according to a specific proportion so that the sterilization effect is better.
The invention is further configured to: the paint also comprises the following components in parts by mass:
14-18 parts of ginger root extract.
By adopting the technical scheme, the ginger root extract is added into the anti-dandruff composition, so that the anti-dandruff composition also has the effect of promoting hair growth, and meanwhile, the oil control effect is effectively improved after the ginger root extract, the forsythia suspense fruit extract and the cacumen biotae extract are matched according to a specific proportion, so that the oil control time is longer.
The invention is further configured to: the paint also comprises the following components in parts by mass:
8-10 parts of astragalus membranaceus root extract.
By adopting the technical scheme, the astragalus membranaceus root extract is added into the anti-dandruff composition to supplement influences for skin and promote scalp growth and repair, so that a wound caused by influence of a large amount of bacteria on the scalp can be healed more quickly, and meanwhile, the astragalus membranaceus root extract is matched with the cortex magnoliae officinalis bark extract and the sophora flavescens root extract according to a specific proportion, so that the sterilization and bacteriostasis effects are effectively improved, and the bacteriostasis time is longer.
The invention is further configured to: the paint also comprises the following components in parts by mass:
10-12 parts of bis-diethoxydiol cyclohexane 1, 4-dicarboxylic ester.
By adopting the technical scheme, the bis-diethoxydiol cyclohexane 1, 4-dicarboxylate is added into the anti-dandruff composition, so that a good skin moistening effect is achieved, the scalp is moistened, the scalp is not prone to dryness to generate dandruff, the scalp is not prone to drying and itching, and the situation that people scratch the scalp to generate dandruff is reduced.
The invention is further configured to: the paint also comprises the following components in parts by mass:
14-18 parts of ginger root extract;
8-10 parts of an astragalus membranaceus root extract;
10-12 parts of bis-diethoxydiol cyclohexane 1, 4-dicarboxylic ester.
By adopting the technical scheme, the anti-dandruff composition has better oil control effect and sterilization effect, and can promote hair growth, scalp growth, moisten scalp and reduce dryness, so that the scalp and hair care effect is better.
The invention is further configured to: the preparation method of the anti-dandruff composition comprises the following steps:
s1, heating propylene glycol to 110-;
s2, adding the cortex magnoliae officinalis extract, the cacumen biotae extract and the fructus forsythiae extract into the premix, stirring at the rotation speed of 600-.
By adopting the technical scheme, the propylene glycol is heated to 105-110 ℃, the moisture is effectively removed, the purity of the propylene glycol solvent is higher, meanwhile, various components are added into the high-temperature propylene glycol, the high-temperature disinfection is effectively carried out, and the prepared anti-dandruff composition is safer and has better quality.
The invention is further configured to: in the step S1, ginger root extract, astragalus membranaceus root extract, and bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are further added.
By adopting the technical scheme, the prepared anti-dandruff composition has good oil control and sterilization effects, can promote the growth of hair and scalp, can moisten scalp and reduce dryness.
The invention is further configured to: the anti-dandruff composition is applied to shampoo.
By adopting the technical scheme, the anti-dandruff composition is applied to the shampoo, and the foam of the shampoo can be utilized to ensure that the anti-dandruff composition can be uniformly distributed on the scalp to be absorbed by the scalp under the condition of small use, so that the anti-dandruff effect is improved.
In conclusion, the invention has the following beneficial effects:
1. the anti-dandruff composition has good oil control and sterilization effects by matching the forsythia suspense fruit extract, the cacumen biotae extract, the magnolia bark extract and the sophora flavescens root extract according to a specific proportion, and after the anti-dandruff composition is added into a shampoo product, the content of scalp sebum and bacteria can be effectively reduced after hair washing, the propagation environment of the bacteria is damaged, the number of the bacteria is reduced, and the generation of dandruff is reduced;
2. the forsythia suspense fruit extract and the cacumen biotae extract are matched to generate a strong oil control effect, and the forsythia suspense fruit extract and the cacumen biotae extract are easily absorbed by skin and durably act on the skin, so that the oil control effect is relatively durable;
3. the cortex magnoliae officinalis extract and the sophora flavescens root extract are matched to generate a strong sterilization effect, and the cortex magnoliae officinalis extract and the sophora flavescens root extract are easily absorbed by the skin and act on the skin for a long time, so that the sterilization effect is long, and the anti-dandruff effect is relatively long.
Drawings
Fig. 1 is a schematic flow diagram of a method of making an anti-dandruff composition of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
In the following examples, comparative examples and experimental examples:
the fructus forsythiae extract is prepared from fructus forsythiae extract sold by Guangzhou Yuling biotechnology limited;
the folium Platycladi extract is obtained from folium Platycladi extract sold by Guangzhou Yuling biotechnology limited;
the cortex Magnolia officinalis extract is sold by Guangzhou Yuling biotechnology limited;
the radix Sophorae Flavescentis extract is prepared from radix Sophorae Flavescentis extract sold by Guangzhou Yuling biotechnology limited;
the propylene glycol is sold by Sanan chemical industry Co., Ltd in Guangzhou city;
the ginger root extract is a ginger root extract sold by Guangzhou Yuling biotechnology limited;
the radix astragali extract is sold by Guangzhou Yunling Biotechnology limited company;
bis-diethoxydiol cyclohexane 1, 4-dicarboxylate available from Nippon Kogyo Co., Ltd;
the sodium dodecyl sulfate is sodium dodecyl sulfate sold by Henan Huang Qi chemical products Co.
Example 1
An anti-dandruff composition, referring to fig. 1, is prepared by the following steps:
s1, adding 8kg of propylene glycol into a stirring kettle, heating to 105 ℃, then adding 7kg of sophora flavescens ait root extract, keeping the temperature at 105 ℃, rotating at 600r/min, and stirring for 4min to form a premix;
s2, adding 10kg of cortex magnoliae officinalis extract, 11kg of cacumen biotae extract and 11kg of fructus forsythiae extract into the premix, keeping the temperature at 105 ℃ and the rotating speed at 600r/min, and stirring for 10min to form the anti-dandruff composition.
Example 2
An anti-dandruff composition, referring to fig. 1, is prepared by the following steps:
s1, adding 10kg of propylene glycol into a stirring kettle, heating to 107 ℃, then adding 9kg of the sophora flavescens root extract, keeping the temperature at 107 ℃, rotating at 700r/min, and stirring for 3min to form a premix;
s2, adding 12kg of cortex magnoliae officinalis extract, 13kg of cacumen biotae extract and 12kg of fructus forsythiae extract into the premix, keeping the temperature at 107 ℃ and the rotating speed at 700r/min, and stirring for 9min to form the anti-dandruff composition.
Example 3
An anti-dandruff composition, referring to fig. 1, is prepared by the following steps:
s1, adding 12kg of propylene glycol into a stirring kettle, heating to 110 ℃, then adding 11kg of sophora flavescens root extract, keeping the temperature at 110 ℃, rotating at the speed of 800r/min, and stirring for 2min to form a premix;
s2, adding 16kg of cortex magnoliae officinalis extract, 17kg of cacumen biotae extract and 16kg of fructus forsythiae extract into the premix, keeping the temperature at 110 ℃ and the rotating speed at 800r/min, and stirring for 8min to form the anti-dandruff composition.
Example 4
An anti-dandruff composition, referring to fig. 1, is prepared by the following steps:
s1, adding 14kg of propylene glycol into a stirring kettle, heating to 108 ℃, then adding 14kg of the extract of the sophora flavescens roots, keeping the temperature at 108 ℃, rotating at 650r/min, and stirring for 3min to form a premix;
s2, adding 18kg of cortex magnoliae officinalis extract, 19kg of cacumen biotae extract and 18kg of fructus forsythiae extract into the premix, keeping the temperature at 108 ℃ and the rotating speed at 750r/min, and stirring for 9min to form the anti-dandruff composition.
Example 5
An anti-dandruff composition, referring to fig. 1, is prepared by the following steps:
s1, adding 12kg of propylene glycol into a stirring kettle, heating to 108 ℃, then adding 11kg of the extract of the sophora flavescens ait roots, keeping the temperature at 108 ℃, rotating at 650r/min, and stirring for 3min to form a premix;
s2, adding 14kg of magnolia bark extract, 15kg of cacumen biotae extract and 15kg of fructus forsythiae extract into the premix, keeping the temperature at 108 ℃ and the rotating speed at 750r/min, and stirring for 9min to form the anti-dandruff composition.
Example 6
The difference from example 5 is that:
in step S1, 14kg of ginger root extract is also added.
Example 7
The difference from example 5 is that:
in step S1, 16kg of ginger root extract is also added.
Example 8
The difference from example 5 is that:
in step S1, 18kg of ginger root extract is also added.
Example 9
The difference from example 5 is that:
in step S1, 17kg of ginger root extract is also added.
Example 10
The difference from example 5 is that:
8kg of the extract of the root of Astragalus membranaceus is also added in step S1.
Example 11
The difference from example 5 is that:
9kg of the astragalus membranaceus root extract is also added in step S1.
Example 12
The difference from example 5 is that:
in step S1, 10kg of radix astragali extract is also added.
Example 13
The difference from example 5 is that:
8.5kg of the extract of the root of Astragalus membranaceus is also added in step S1.
Example 14
The difference from example 5 is that:
in step S1, 10kg of bis-diethoxydiethylene glycol cyclohexane 1, 4-dicarboxylate was also added.
Example 15
The difference from example 5 is that:
in step S1, 11kg of bis-diethoxydiethylene glycol cyclohexane 1, 4-dicarboxylate was also added.
Example 16
The difference from example 5 is that:
in step S1, 12kg of bis-diethoxydiethylene glycol cyclohexane 1, 4-dicarboxylate was also added.
Example 17
The difference from example 5 is that:
in step S1, 10.5kg of bis-diethoxydiethylene glycol cyclohexane 1, 4-dicarboxylate was also added.
Example 18
The difference from example 5 is that:
in step S1, 14kg of ginger root extract, 8kg of astragalus membranaceus root extract, and 10kg of bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are also added.
Example 19
The difference from example 5 is that:
in step S1, 16kg of ginger root extract, 9kg of astragalus membranaceus root extract, and 11kg of bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are also added.
Example 20
The difference from example 5 is that:
in step S1, 18kg of ginger root extract, 10kg of astragalus membranaceus root extract and 12kg of bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are also added.
Example 21
The difference from example 5 is that:
in step S1, 17kg of ginger root extract, 8.5kg of astragalus membranaceus root extract, and 10.5kg of bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are also added.
Comparative example 1
The difference from example 5 is that:
in step S1, no forsythia fruit extract is added.
Comparative example 2
The difference from example 5 is that:
in step S1, no cacumen Platycladi extract is added.
Comparative example 3
The difference from example 5 is that:
in step S1, cortex Magnolia officinalis extract is not added
Comparative example 4
The difference from example 5 is that:
in step S1, radix Sophorae Flavescentis extract is not added
Comparative example 5
The difference from example 5 is that:
in step S1, fructus forsythiae extract, cacumen Platycladi extract, cortex Magnolia officinalis extract, and radix Sophorae Flavescentis extract are not added.
Experimental example 1
A shampoo product is prepared by the following steps:
s01, adding 25kg of water, 45kg of sodium dodecyl sulfate and 30kg of anti-dandruff composition into a stirring kettle, rotating at the speed of 300r/min, and stirring for 8min to form the shampoo product.
In this experimental example, the anti-dandruff composition of example 1 was used.
Experimental example 2
The difference from experimental example 1 is that:
the anti-dandruff composition of example 2 was used.
Experimental example 3
The difference from experimental example 1 is that:
the anti-dandruff composition of example 3 was used.
Experimental example 4
The difference from experimental example 1 is that:
the anti-dandruff composition of example 4 was used.
Experimental example 5
The difference from experimental example 1 is that:
the anti-dandruff composition of example 5 was used.
Experimental example 6
The difference from experimental example 1 is that:
the anti-dandruff composition of example 6 was used.
Experimental example 7
The difference from experimental example 1 is that:
the anti-dandruff composition of example 7 was used.
Experimental example 8
The difference from experimental example 1 is that:
the anti-dandruff composition of example 8 was used.
Experimental example 9
The difference from experimental example 1 is that:
the anti-dandruff composition of example 9 was used.
Experimental example 10
The difference from experimental example 1 is that:
the anti-dandruff composition of example 10 was used.
Experimental example 11
The difference from experimental example 1 is that:
the anti-dandruff composition of example 11 was used.
Experimental example 12
The difference from experimental example 1 is that:
the anti-dandruff composition of example 12 was used.
Experimental example 13
The difference from experimental example 1 is that:
the anti-dandruff composition of example 13 was used.
Experimental example 14
The difference from experimental example 1 is that:
the anti-dandruff composition of example 14 was used.
Experimental example 15
The difference from experimental example 1 is that:
the anti-dandruff composition of example 15 was used.
Experimental example 16
The difference from experimental example 1 is that:
the anti-dandruff composition of example 16 was used.
Experimental example 17
The difference from experimental example 1 is that:
the anti-dandruff composition of example 17 was used.
Experimental example 18
The difference from experimental example 1 is that:
the anti-dandruff composition of example 18 was used.
Experimental example 19
The difference from experimental example 1 is that:
the anti-dandruff composition of example 19 was used.
Experimental example 20
The difference from experimental example 1 is that:
the anti-dandruff composition of example 20 was used.
Experimental example 21
The difference from experimental example 1 is that:
the anti-dandruff composition of example 21 was used.
Experimental example 22
The difference from experimental example 1 is that:
the anti-dandruff composition of comparative example 1 was used.
Experimental example 23
The difference from experimental example 1 is that:
the anti-dandruff composition of comparative example 2 was used.
Experimental example 24
The difference from experimental example 1 is that:
the anti-dandruff composition of comparative example 3 was used.
Experimental example 25
The difference from experimental example 1 is that:
the anti-dandruff composition used was the anti-dandruff composition of comparative example 4.
Experimental example 26
The difference from experimental example 1 is that:
the anti-dandruff composition used was the anti-dandruff composition of comparative example 5.
Experiment 1
10 volunteers used the shampoo products of experimental examples 1-26 to shampoo, hair was dried and then moved indoors to keep them from sweating, after 120 hours, the oil content of scalp of each volunteer was measured by a Sebumeter SM815, a skin oil tester sold by CK company, Germany, and the amount of dandruff of each volunteer was measured by a dandruff test paper;
the scalp oil content is 1 based on the light transmission data of the experimental example 26, and the light transmission data of the rest experimental examples are converted into multiples of the data of the experimental example 26;
wherein the data of the number of dandruff and the area of the dandruff covered dandruff test paper in experimental example 26 is 1, and the data of the other experimental examples is converted into the multiple of the area covered by dandruff in experimental example 26;
the highest and lowest values were removed from the experimental data and the average was calculated.
Specific detection data are shown in Table 1
TABLE 1
Multiplying power of light transmission | Coverage area ratio of dandruff | |
Experimental example 1 | 0.532 | 0.323 |
Experimental example 2 | 0.535 | 0.324 |
Experimental example 3 | 0.533 | 0.321 |
Experimental example 4 | 0.534 | 0.322 |
Experimental example 5 | 0.532 | 0.321 |
Experimental example 6 | 0.468 | 0.283 |
Experimental example 7 | 0.466 | 0.284 |
Experimental example 8 | 0.469 | 0.283 |
Experimental example 9 | 0.467 | 0.281 |
Experimental example 10 | 0.535 | 0.268 |
Experimental example 11 | 0.533 | 0.264 |
Experimental example 12 | 0.535 | 0.267 |
Experimental example 13 | 0.534 | 0.265 |
Experimental example 14 | 0.534 | 0.326 |
Experimental example 15 | 0.535 | 0.325 |
Experimental example 16 | 0.534 | 0.327 |
Experimental example 17 | 0.536 | 0.323 |
Experimental example 18 | 0.463 | 0.133 |
Experimental example 19 | 0.466 | 0.131 |
Experimental example 20 | 0.465 | 0.128 |
Experimental example 21 | 0.462 | 0.129 |
Experimental example 22 | 0.88 | 0.587 |
Experimental example 23 | 0.87 | 0.585 |
Experimental example 24 | 0.467 | 0.566 |
Experimental example 25 | 0.466 | 0.564 |
Experimental example 26 | 1 | 1 |
According to the comparison of the data of experimental examples 22-26 and experimental example 5 in table 1, the oil control effect can be improved to a certain extent by adding the forsythia suspense fruit extract or the cacumen biotae extract to the anti-dandruff composition alone, and when the forsythia suspense fruit extract and the cacumen biotae extract are used in combination according to a specific ratio, the oil control effect is greatly improved.
The cortex magnoliae officinalis extract or the sophora flavescens root extract is independently added into the anti-dandruff composition, so that the bactericidal effect can be improved to a certain extent, dandruff generation can be inhibited to a certain extent, and the dandruff generation amount is reduced.
According to the comparison of the data of experimental examples 6-9 and 5 in table 1, the anti-dandruff composition has better oil control effect and better dandruff inhibition effect by adding the ginger root extract to the anti-dandruff composition to promote hair growth and simultaneously combining with the forsythia fruit extract and the cacumen biotae extract.
According to the comparison of the data of experimental examples 10-13 and experimental example 5 in table 1, the combination of the astragalus membranaceus root extract in the anti-dandruff composition with the magnolia bark extract and the sophora flavescens root extract can improve the bacteriostatic effect of the anti-dandruff composition while having the effect of nourishing the scalp to promote the growth and healing of the scalp, so as to better inhibit the dandruff formation.
According to the comparison of the data of experimental examples 14-17 and experimental example 5 in table 1, it can be seen that the addition of bis-diethoxydiol cyclohexane 1, 4-dicarboxylate to the anti-dandruff composition effectively moisturizes the scalp and reduces the dryness of the scalp without significantly adversely affecting the oil control effect.
According to the comparison of the data of the experimental examples 18-21 and the experimental example 5 in the table 1, the oil-controlling and bacteriostatic effects of the anti-dandruff composition are all better, so that the generation of dandruff is better inhibited.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.
Claims (9)
1. An anti-dandruff composition characterized by: the paint comprises the following components in parts by mass:
10-18 parts of forsythia suspense fruit extract;
11-19 parts of cacumen biotae extract;
10-18 parts of cortex magnoliae officinalis extract;
7-14 parts of sophora flavescens root extract;
8-14 parts of propylene glycol.
2. The anti-dandruff composition according to claim 1, characterized in that: the paint comprises the following components in parts by mass:
12-16 parts of forsythia suspense fruit extract;
13-17 parts of cacumen biotae extract;
12-16 parts of cortex magnoliae officinalis extract;
9-11 parts of sophora flavescens root extract;
10-12 parts of propylene glycol.
3. An anti-dandruff composition according to claim 2, characterized in that: the paint also comprises the following components in parts by mass:
14-18 parts of ginger root extract.
4. An anti-dandruff composition according to claim 2, characterized in that: the paint also comprises the following components in parts by mass:
8-10 parts of astragalus membranaceus root extract.
5. An anti-dandruff composition according to claim 2, characterized in that: the paint also comprises the following components in parts by mass:
10-12 parts of bis-diethoxydiol cyclohexane 1, 4-dicarboxylic ester.
6. The anti-dandruff composition according to claim 1, characterized in that: the paint also comprises the following components in parts by mass:
14-18 parts of ginger root extract;
8-10 parts of an astragalus membranaceus root extract;
10-12 parts of bis-diethoxydiol cyclohexane 1, 4-dicarboxylic ester.
7. An anti-dandruff composition according to claim 2, characterized in that: the preparation method of the anti-dandruff composition comprises the following steps:
s1, heating propylene glycol to 110-;
s2, adding the cortex magnoliae officinalis extract, the cacumen biotae extract and the fructus forsythiae extract into the premix, stirring at the rotation speed of 600-.
8. The anti-dandruff composition according to claim 7, wherein: in the step S1, ginger root extract, astragalus membranaceus root extract, and bis-diethoxydiol cyclohexane 1, 4-dicarboxylate are further added.
9. An anti-dandruff composition according to any one of claims 1 to 8, characterized in that: the anti-dandruff composition is applied to shampoo.
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