Composition containing yeast / rice ferment filtrate having oil control, hair quality care efficacy
By combining natural ingredients such as yeast/rice ferment filtrate, this product addresses the shortcomings of traditional shampoo and conditioner in oil control and hair repair, providing a gentle yet highly effective shampoo that balances scalp oil and improves hair quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- YAOPIN HAIR CARE (GUILIN) CULTURE CO LTD
- Filing Date
- 2025-12-15
- Publication Date
- 2026-05-12
AI Technical Summary
Existing hair care products have limited effectiveness in controlling oil and repairing hair quality, and may irritate the scalp and hair. Long-term use may disrupt the microecological balance.
A scientifically formulated blend of yeast/rice fermentation product filtrate, rice husk extract, black truffle extract, and millet seed extract is used to create a composition that controls oil and repairs hair, which is then incorporated into shampoo.
It achieves gentle and effective scalp oil regulation and hair quality improvement, enhancing hair health and providing significant oil control and hair repair effects. The ingredients are naturally sourced, have good biocompatibility, and are suitable for long-term use.
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Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of scalp care and raw material compounding, specifically, it relates to a composition containing yeast / rice fermentation product filtrate with oil control and hair repair effects. Background Technology
[0002] With the fast pace of life and increasing stress, abnormal scalp oil secretion and hair damage have become common hair health problems that plague the public. Excessive scalp oil not only affects personal image but can also lead to problems such as dandruff, itching, and even hair loss. Frequent perming and dyeing, mechanical damage, and environmental factors can easily cause dry, frizzy, dull, and inelastic hair, seriously affecting its appearance and health.
[0003] Traditional shampoos and conditioners are mostly based on surfactants, primarily serving a cleansing function. However, their ability to regulate scalp oil is limited, and some products add excessive amounts of chemicals to achieve short-term results, which can easily irritate the scalp. Long-term use may disrupt the scalp's microecological balance and exacerbate hair problems. Therefore, developing shampoos and conditioners that offer gentle cleansing, effective oil control, and hair repair while also ensuring safety and natural ingredients has become an important research direction in the current personal care field.
[0004] In recent years, naturally derived active ingredients have gradually gained attention in the cosmetics industry due to their excellent biocompatibility and functionality. Some fermentation products and plant extracts, rich in amino acids, polysaccharides, organic acids, polyphenols, and other active substances, have been proven to have potential effects such as regulating sebum secretion, anti-oxidation, anti-inflammation, moisturizing, and repairing damaged hair. By scientifically combining these natural active ingredients, it is hoped that synergistic effects in oil control and repair can be achieved in hair care products, meeting consumers' dual needs for healthy and beautiful hair.
[0005] Against this backdrop, developing a composition with natural fermented ingredients and plant extracts as its core, which has significant oil-control and hair-repairing effects, is of great significance for improving the quality of hair care products and promoting the industry towards a green and healthy direction. Summary of the Invention
[0006] In view of the shortcomings of the existing technology, the purpose of this invention is to provide a composition containing yeast / rice fermentation product filtrate with oil control and hair repair effects through the rational combination of various natural active ingredients.
[0007] To achieve the above objectives, the present invention discloses the following technical solutions:
[0008] In a first aspect, the present invention provides a composition that controls oil and repairs hair quality, the composition comprising yeast / rice fermentation product filtrate, rice husk extract, black truffle extract, and millet seed extract.
[0009] Preferably, the composition comprises the following components in parts by weight:
[0010] 10-20 parts of yeast / rice fermentation product filtrate;
[0011] Rice husk extract 1-5 parts;
[0012] 5-10 parts of *Tuber nigricans* extract;
[0013] 4-7 parts of millet seed extract.
[0014] Secondly, the present invention provides the application of the composition described in the first aspect in the preparation of shampoo and conditioner products with oil-controlling and hair-repairing effects.
[0015] Thirdly, the present invention provides a shampoo with oil control and hair repair effects, wherein the shampoo includes the composition described in the first aspect.
[0016] Preferably, the amount of the composition added to the shampoo is 1-3 wt%.
[0017] More preferably, the shampoo further includes a shampoo base.
[0018] More preferably, the shampoo base includes at least one of surfactants, thickeners, emulsifiers, humectants, stabilizers, antibacterial agents, pearlescent agents, fragrances, chelating agents, anti-dandruff agents, and pH adjusters.
[0019] More preferably, the surfactant is at least one of sodium lauryl ether sulfate, cocamidopropyl betaine, cocamidopropyl betaine, ammonium lauryl sulfate, polyquaternium-10, cocamidopropyl betaine, and polyquaternium-7.
[0020] More preferably, the moisturizer is at least one selected from butylene glycol, glycerin, 1,2-hexanediol, panthenol, allantoin, 1,3-propanediol, and caprylyl glycol;
[0021] More preferably, the antibacterial agent is at least one selected from phenoxyethanol, sodium benzoate, dichlorobenzyl alcohol, p-hydroxyacetophenone, and octanoyl hydroxamic acid;
[0022] More preferably, the thickener is at least one of guar hydroxypropyltrimethylammonium chloride, carbomer, xanthan gum, carrageenan, and gellan gum.
[0023] More preferably, the emulsifier is cetearyl alcohol; the stabilizer is sodium chloride; the pearlescent agent is ethylene glycol distearate; the chelating agent is disodium EDTA; the anti-dandruff agent is piroctone olamine salt; and the pH adjuster is sodium hydroxide.
[0024] More preferably, the shampoo base further includes a solvent, which is an acceptable solvent for shampoo.
[0025] More preferably, the solvent is deionized water.
[0026] The beneficial effects of this invention are:
[0027] This invention provides a composition containing yeast / rice fermentation product filtrate with oil-controlling and hair-repairing effects. This composition achieves a synergistic effect through the scientific compounding of multiple natural active ingredients, which can effectively regulate scalp sebum secretion, help maintain scalp sebum balance, and at the same time help improve hair condition and enhance the overall health of hair.
[0028] In this invention, the yeast / rice fermentation product filtrate is rich in natural prebiotics and metabolites, which can reduce excessive sebum secretion from the source by regulating the balance of the scalp microbiome. The silica component in rice husk extract can slow down the rate of sebum oxidation; the natural antioxidants (such as polysaccharides and polyphenols) in black truffle extract can reduce sebaceous gland overactivity; and the phytosterols in millet seed extract can synergistically enhance the oil-control effect by regulating stratum corneum lipid metabolism. The combined use of the above four can achieve long-lasting oil control from multiple dimensions such as microbial regulation, physical protection, and cell metabolism regulation. Furthermore, the amino acids, B vitamins, and minerals in the yeast / rice fermentation product filtrate can provide nutrition to the hair and repair hair cuticle damage; the polysaccharides in rice husk extract and black truffle extract, together with the plant squalane in millet seed extract, synergistically enhance the strength and shine of the hair.
[0029] Furthermore, the raw materials in the compositions disclosed in this invention are all derived from natural fermentation or plant extracts, and the components exhibit good biocompatibility. The organic acids in the yeast / rice fermentation product filtrate can promote the penetration and absorption of active ingredients in rice husk extract, *Tuber nigricans* extract, and millet seed extract; the antioxidant properties of *Tuber nigricans* extract can prolong the stability of the active ingredients in the yeast / rice fermentation product filtrate, rice husk extract, and millet seed extract. When used together, they form a closed-loop synergistic system of "targeted repair - long-lasting maintenance," achieving a gentle yet highly effective overall efficacy. Finally, the shampoo preparation method provided by this invention is simple to operate, uses readily available raw materials, is suitable for large-scale industrial production, and has good market application prospects. Detailed Implementation
[0030] Those skilled in the art can refer to the content of this document to appropriately improve the process parameters. It should be particularly noted that all similar substitutions and modifications are obvious to those skilled in the art and are considered to be included in this invention.
[0031] The products and methods of the present invention have been described through preferred embodiments. Those skilled in the art will be able to make modifications or appropriate alterations and combinations to the products and methods described herein without departing from the content, spirit and scope of the present invention, so as to realize and apply the technology of the present invention.
[0032] In this invention:
[0033] Yeast / rice fermentation product filtrate: purchased from Guizhou Keyichuang Biotechnology Co., Ltd.;
[0034] Rice husk extract: purchased from Jiangxi Bajiu New Material Technology Co., Ltd.;
[0035] Black truffle extract: purchased from Guangzhou Yaozhi Biotechnology Co., Ltd.;
[0036] Millet seed extract: purchased from Guangzhou Yaozhi Biotechnology Co., Ltd.;
[0037] All other raw materials are commercially available.
[0038] The ingredients and their weight proportions in the composition that has oil-controlling and hair-repairing effects are as follows:
[0039] Composition 1:
[0040] Yeast / rice fermentation product filtrate: 15 parts;
[0041] Rice husk extract: 3 parts;
[0042] Black truffle extract: 8 parts;
[0043] Millet seed extract: 6 parts.
[0044] Composition 2:
[0045] Yeast / rice fermentation product filtrate: 10 parts;
[0046] Rice husk extract: 1 part;
[0047] Black truffle extract: 5 parts;
[0048] Millet seed extract: 4 parts.
[0049] Composition 3:
[0050] Yeast / rice fermentation product filtrate: 20 parts;
[0051] Rice husk extract: 5 parts;
[0052] Black truffle extract: 10 parts;
[0053] Millet seed extract: 7 parts.
[0054] Composition ①: Unlike composition 1, it lacks yeast / rice fermentation product filtrate. The missing mass fraction is made up by rice husk extract, black truffle extract and millet seed extract in a mass ratio of 3:8:6. The remaining raw materials and mass fractions are the same as those in composition 1.
[0055] Composition ②: Unlike composition 1, it lacks rice husk extract. The missing mass fraction is made up by yeast / rice fermentation product filtrate, black truffle extract and millet seed extract in a mass ratio of 15:8:6. The remaining raw materials and mass fractions are the same as those in composition 1.
[0056] Composition ③: Unlike Composition 1, it lacks the extract of *Ichthyophthirius multifiliis*. The missing mass fraction is made up by yeast / rice fermentation product filtrate, rice husk extract, and millet seed extract in a mass ratio of 15:3:6. The remaining raw materials and mass fractions are the same as those in Composition 1.
[0057] Composition ④: Unlike Composition 1, it lacks millet seed extract. The missing mass fraction is made up by yeast / rice fermentation product filtrate, rice husk extract, and black truffle extract in a mass ratio of 15:3:8. The remaining raw materials and mass fractions are the same as those in Composition 1.
[0058] Composition ⑤:
[0059] Yeast / rice fermentation product filtrate: 8 parts;
[0060] Rice husk extract: 6 parts;
[0061] Black truffle extract: 15 parts;
[0062] Millet seed extract: 3 parts.
[0063] The preparation method of composition 1 is as follows: mix all the raw materials in the composition evenly, and store them in a sealed container away from light.
[0064] The preparation methods of compositions 2-3 and ①-⑤ are the same as those of composition 1.
[0065] Preparation of shampoo base:
[0066] Step 1: Add deionized water to the mixing container, turn on the stirrer at 200 rpm, heat to 80°C, and add disodium EDTA, sodium lauryl ether sulfate, cocamidopropyl betaine, butylene glycol, glycerin, 1,2-hexanediol, panthenol, allantoin, and sodium chloride in sequence. Stir until completely dissolved to obtain mixture A. Keep warm for 15 minutes and set aside.
[0067] Step 2: Add cetearyl alcohol and ethylene glycol distearate to another container, heat in an 80°C water bath, stir until the raw materials are completely melted and clear, to obtain mixture B, and keep warm for 15 minutes;
[0068] Step 3: Add mixture B to mixture A, homogenize at 5000 r / min for 5 minutes, then stir and keep warm at 150 r / min for 10 minutes to obtain mixture C;
[0069] Step 4: Cool the mixture C to 50°C, add guar gum hydroxypropyltrimethylammonium chloride and carbomer, stir at 200 rpm for 20 min, then add piroctone ketone ethanolamine salt, p-hydroxyacetophenone, capryloyl hydroxamic acid, polyquaternium salt-10 and fragrance in sequence, stir at 300 rpm for 30 min, finally adjust the pH value to 6.0 with sodium hydroxide, filter through a 100-mesh filter bag and fill into bottles to obtain the shampoo base.
[0070] The dosage of each ingredient in the shampoo base is shown in Table 1.
[0071] Table 1. Percentage of Shampoo Base Raw Materials by Mass (Unit: %)
[0072]
[0073] Preparation of a shampoo with oil-controlling and hair-repairing effects:
[0074] Shampoo 1: Mix 2wt% of composition 1 with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0075] Shampoo 2: Mix 1 wt% of composition 1 with 99 wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0076] Shampoo 3: Mix 3wt% of composition 1 with 97wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0077] Shampoo 4: Mix 2wt% of composition 2 with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0078] Shampoo 5: Mix 2wt% of composition 3 with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0079] Comparison Shampoo 1: Mix 2wt% of composition ① with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0080] Comparison Shampoo 2: Mix 2wt% of composition ② with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0081] Comparison Shampoo 3: Mix 2wt% of composition ③ with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0082] Comparison Shampoo 4: Mix 2wt% of composition ④ with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0083] Comparison Shampoo 5: Mix 2wt% of composition ⑤ with 98wt% of shampoo base evenly to obtain a shampoo with oil control and hair repair effects.
[0084] Blank Shampoo: Contains 100wt% shampoo base.
[0085] Efficacy verification:
[0086] Experiment 1: Effect of the composition on the inhibition rate of lipid content in human sebaceous gland cells
[0087] Test samples: Prepare test samples of compositions 1-3 and compositions ①-⑤ as 1 wt% using cell culture medium, and prepare them as needed.
[0088] Negative sample: cell culture medium.
[0089] Reagents: 0.25% trypsin, DMEM medium, antibiotics, FBS, PBS buffer, 4% paraformaldehyde, Oil Red O staining kit, isopropanol.
[0090] Test method:
[0091] Oil Red O staining: 3 × 10⁻⁶ SZ95 cells cultured in DMEM medium containing 10 v / v% FBS and 1 v / v% penicillin antibiotics to the exponential growth phase were... 4 Seeds were placed in 96-well plates and cultured for 24 h. Test samples or negative samples were then added, and the plates were incubated at 37°C for another 24 h. DMEM medium was discarded, and 200 μL of 4% paraformaldehyde solution was added. Fixation was performed at room temperature for 30 min, then excess solution was discarded. 0.5% Oil Red O solution was then added, and staining was performed at room temperature for 15 min. Intracellular lipid content determination: Excess staining solution was discarded, and the plates were washed twice with PBS. The PBS in the 96-well plates was discarded, and the plates were air-dried at room temperature. 150 μL of 100% isopropanol was added to completely dissolve the Oil Red O. The dissolved Oil Red O was then aspirated into the 96-well plates (50 μL / well), with two replicates per sample. The absorbance (A) at 490 nm was measured using a microplate reader. The inhibition rate of intracellular lipid content after sample intervention was calculated using the following formula:
[0092] Lipid content inhibition rate (%) = (A negative sample - A test sample) / A negative sample × 100%
[0093] The results are shown in Table 2.
[0094] Table 2 Results of the oil-controlling efficacy of the composition
[0095] Test sample Lipid content inhibition rate (%) Composition 1 37.42 Composition 2 37.19 Composition 3 37.26 Composition ① 21.31 Composition ② 27.19 Composition ③ 23.93 Composition ④ 25.04 Composition ⑤ 32.07
[0096] Based on the results in Table 2, it can be seen that the composition has a significant effect in reducing lipid content, indicating that it has a significant oil-controlling effect. Comparing the results of composition 1 with those of compositions ①-⑤, it can be seen that there is a significant synergistic effect among the yeast / rice fermentation product filtrate, rice husk extract, black truffle extract, and millet seed extract in the composition provided by the present invention. When used together, they can significantly inhibit lipid secretion and have a significant oil-controlling effect. Comparing the results of compositions 1-3 with those of composition ⑤, it can be seen that the mass range of each component of yeast / rice fermentation product filtrate, rice husk extract, black truffle extract, and millet seed extract in the present invention has a certain influence on the efficacy of the composition. The composition composed of components within the mass range defined by the present invention has a better oil-controlling effect.
[0097] Human efficacy evaluation
[0098] Experiment 2: Safety Evaluation
[0099] The specific method is as follows: Volunteers aged 25-45 years with no history of allergies were selected and randomly divided into groups of 30. Each group was assigned one test sample. After cleaning the subject's back, the patch applicator containing the test sample was applied to the selected location on the back using non-irritating adhesive tape. After application, the patch was gently pressed with the fingers to ensure even application to the skin, and left on for 48 hours. During these 48 hours, the subject was required to keep the patch area dry and avoid strenuous exercise, scratching, and prolonged sun exposure. After 48 hours, the applicator was removed and marked. After 30 minutes, once the pressure marks disappeared, the results were assessed under sufficient light.
[0100] The grading criteria for adverse skin reactions are shown in Table 3, and the test results are shown in Table 4.
[0101] Table 3. Grading Criteria for Adverse Skin Reactions
[0102] Rating levels Skin reaction 0 negative reaction 1 Suspicious reaction, only slight erythema 2 Weak positive reaction (erythema reaction), erythema, infiltration, edema, and papules may be present. 3 A strong positive reaction (herpes reaction) is observed, including erythema, infiltration, edema, papules, and vesicles; the reaction may extend beyond the test area. 4 Extremely strong positive reaction (confluent herpes simplex reaction), obvious erythema, severe infiltration, edema, confluent herpes, reaction extending beyond the test area.
[0103] Table 4. Safety test results of the shampoo
[0104]
[0105] As shown in Table 4, no adverse skin reactions were observed in any of the volunteers after the spot tester was removed. This indicates that the raw materials used in the shampoo of this invention are safe and non-irritating, have no adverse reactions on the human body, and are highly safe.
[0106] Experiment 3: Evaluation of the oil-controlling effect on the human body
[0107] Experimental objective: To determine whether the test sample can regulate scalp sebum balance and reduce scalp oiliness by measuring the amount of sebum on the scalp surface.
[0108] Test samples: Shampoo 1-5, control shampoo 1-5, blank shampoo.
[0109] Experimental Methods: Male volunteers with fine, limp hair and excessively oily scalps were randomly assigned to groups of 10. Each group received a specific test sample. Each volunteer used an appropriate amount of the test sample to clean their hair and scalp. The test sample was used twice a week for 12 weeks, with the last day of the test requiring the use of the test sample once. Hair bleaching and dyeing were prohibited during the test period, as were the use of other hair care products. Except in special circumstances, participants were not allowed to discontinue product use. The SEBUMETER method was used to collect scalp oil content to evaluate scalp oil secretion. The SEBUMETER method is based on the principle of photometry; when matte adhesive tape absorbs oil from the skin, its light transmittance changes. The more oil absorbed, the greater the light transmittance. The test conditions were strictly maintained at a temperature of 22±1℃. Ten different locations on the scalp were measured using the SEBUMETER method, and the average value was calculated. The reduction rate of scalp oil content after using each test sample was also calculated.
[0110] The reduction rate of scalp oil content = (Scalp oil content before using the sample - Scalp oil content after using the sample) / Scalp oil content before using the sample × 100%
[0111] The test results are shown in Table 5 below.
[0112] Table 5. Shampoo Oil Control Efficacy Test
[0113] Test sample Number of volunteers Scalp oil content reduction rate / % Shampoo 1 10 48.3 Shampoo 2 10 46.2 Shampoo 3 10 49.8 Shampoo 4 10 47.4 Shampoo 5 10 47.2 Comparison Shampoo 1 10 30.4 Comparison Shampoo 2 10 35.7 Comparison of shampoo 3 10 32.6 Comparison of shampoo 4 10 34.1 Comparison of shampoo 5 10 42.5 Blank Shampoo 10 9.1
[0114] According to the results in Table 5, comparing shampoos 1-5 with the blank shampoo, it can be seen that the composition defined in this invention has significant oil-controlling effects. Comparing shampoos 1-3, it can be seen that different contents of the composition have a certain impact on the oil-controlling effects of the shampoo. This invention selects shampoo 1, which has a higher cost-performance ratio, as the best embodiment. Comparing shampoo 1 with shampoo 4, shampoo 5, and comparative shampoo 5, it can be seen that the mass range of each component in this invention—yeast / rice fermentation product filtrate, rice husk extract, black truffle extract, and millet seed extract—has a certain impact on the efficacy of the shampoo. Shampoos containing compositions with components within the mass range defined in this invention have better oil-controlling effects. According to the results of shampoo 1 and comparative shampoos 1-4, there is a significant synergistic effect among the components in the composition; using them together can significantly improve the oil-controlling effects of the shampoo.
[0115] Experiment 4: Hair Repair Efficacy Test
[0116] The product's effectiveness in repairing and nourishing hair is evaluated by testing the combability and shine of mildly damaged hair.
[0117] Test samples: Shampoo 1-5, control shampoo 1-5, blank shampoo.
[0118] Test Method: Female volunteers with damaged hair were randomly assigned to groups of 10, with each group receiving one test sample. Volunteers used an appropriate amount of the test sample to wash their hair, applying it twice a week for 12 weeks, with a final application on the last day of the test. Before and after sample use, the volunteers' hair combability and shine were tested. The values of combability and shine were recorded, and the corresponding rate of change was calculated. The rate of change was used to determine the test sample's ability to repair and nourish the hair.
[0119] Test instruments used: MTT175 multi-functional hair testing system for testing hair combing ability; Glossymeter GL2000 for testing hair shine.
[0120] Hair combing power change rate (%) = (Hair combing power before product use - Hair combing power after product use) / Hair combing power before product use × 100%. Hair combing power refers to the resistance encountered when a comb passes through the hair. The lower the hair combing power, the better the hair's combability; therefore, a positive change rate in hair combing power indicates that the hair's combability has improved after using the product, and the product has a better repairing and nourishing effect on the hair.
[0121] Hair shine change rate (%) = (Hair shine after product use - Hair shine before product use) / Hair shine before product use × 100%. Healthy hair naturally shines. The greater the change rate in hair shine, the better the product's repairing and nourishing effects.
[0122] The results of the hair repair and nourishing efficacy tests are shown in Table 6.
[0123] Table 6 Results of Human Efficacy Tests for Hair Repair
[0124] Test sample Number of volunteers Hair combing performance change rate / % Hair shine change rate / % Shampoo 1 10 29.4 23.7 Shampoo 2 10 24.7 21.6 Shampoo 3 10 30.6 24.9 Shampoo 4 10 27.5 22.3 Shampoo 5 10 28.4 23.4 Comparison Shampoo 1 10 19.3 16.3 Comparison Shampoo 2 10 16.4 14.9 Comparison of shampoo 3 10 17.9 15.7 Comparison of shampoo 4 10 18.1 17.2 Comparison of shampoo 5 10 22.8 19.5 Blank Shampoo 10 4.5 2.2
[0125] As shown in Table 6, comparing the results of the blank shampoo and shampoos 1-5, the composition provided by this invention has certain repairing and nourishing effects, and long-term use can make hair smooth and shiny. According to the results of shampoos 1-3 and the blank shampoo, the repairing effect of the shampoo provided by this invention is related to the amount of the composition added; as the amount of the composition added increases, its repairing effect also significantly improves. According to the results of shampoos 1, 4, 5, and the comparative shampoo 5, the repairing effect of the shampoo is related to the mass fraction range of each ingredient in the composition. The mass fraction range of the ingredients is within the range defined by this invention, and it has a significant repairing effect. According to the results of shampoo 1 and the comparative shampoos 1-4, the repairing effect of the shampoo is related to the ingredients in the composition. The ingredients in the composition defined by this invention have a significant synergistic effect, and their combined use can significantly improve the repairing effect of the shampoo.
[0126] In summary, the composition of this invention, through the synergistic effect of multiple natural active ingredients, can effectively control oil, regulate sebum secretion, and repair hair quality. Moreover, it is gentle and safe, suitable for long-term use, and has broad application value.
[0127] While specific embodiments of the present invention have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of the present invention is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present invention, but all such changes and modifications fall within the scope of protection of the present invention.
Claims
1. A composition having oil-controlling and hair-repairing effects, characterized in that, The composition comprises the following components: 10-20 parts of yeast / rice fermentation product filtrate; Rice husk extract 1-5 parts; 5-10 parts of *Tuber nigricans* extract; 4-7 parts of millet seed extract; Yeast / rice fermentation product filtrate: purchased from Guizhou Keyichuang Biotechnology Co., Ltd.; Rice husk extract: purchased from Jiangxi Bajiu New Material Technology Co., Ltd.; Black truffle extract: purchased from Guangzhou Yaozhi Biotechnology Co., Ltd.; Millet seed extract: purchased from Guangzhou Yaozhi Biotechnology Co., Ltd.
2. The use of the composition according to claim 1 in the preparation of shampoo and conditioner with oil control and hair repair effects.
3. A shampoo with oil-controlling and hair-repairing effects, characterized in that, The shampoo includes the composition of claim 1.
4. The shampoo according to claim 3, characterized in that, The amount of the composition according to claim 1 or 2 added to the shampoo is 1-3 wt%.
5. The shampoo according to claim 4, characterized in that, The shampoo also includes a shampoo base.
6. The shampoo according to claim 5, characterized in that, The shampoo base includes at least one of the following: surfactant, thickener, emulsifier, moisturizer, stabilizer, antibacterial agent, pearlescent agent, fragrance, chelating agent, anti-dandruff agent, and pH adjuster.
7. The shampoo according to claim 6, characterized in that, The surfactant is at least one of sodium lauryl ether sulfate, cocamidopropyl betaine, cocamidopropyl betaine, ammonium lauryl sulfate, polyquaternium salt-10, cocamidopropyl betaine, and polyquaternium salt-7. The moisturizer is at least one selected from butylene glycol, glycerin, 1,2-hexanediol, panthenol, allantoin, 1,3-propanediol, and caprylyl glycol. The antibacterial agent is at least one of phenoxyethanol, sodium benzoate, dichlorobenzyl alcohol, p-hydroxyacetophenone, and octanoyl hydroxamic acid; The thickener is at least one of guar hydroxypropyltrimethylammonium chloride, carbomer, xanthan gum, carrageenan, and gellan gum.
8. The shampoo according to claim 6, characterized in that, The emulsifier is cetearyl alcohol; the stabilizer is sodium chloride; the pearlescent agent is ethylene glycol distearate; the chelating agent is disodium EDTA; the anti-dandruff agent is piroctone olamine salt; and the pH adjuster is sodium hydroxide.
9. The shampoo according to claim 6, characterized in that, The shampoo base also includes a solvent, which is an acceptable solvent for shampoo.