Cleansing oil containing soapberry oil and preparation method thereof

A technology of Sapindus japonica oil and cleansing oil, which is applied in the directions of medical preparations, cosmetic preparations, cosmetic preparations, etc. containing active ingredients, to achieve the effects of good antioxidant capacity, skin softness and softness, and promotion of regeneration and recovery.

Pending Publication Date: 2022-05-17
WUHAN POLYTECHNIC UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It can be seen from this that adding an appropriate amount of Sapindus sapindus fruit extract in the makeup remover composition can effectively improve the makeup remover effect, but the cleaning power, antibacterial and anti-inflammatory effects of the prepared makeup remover product still need to be further improved

Method used

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  • Cleansing oil containing soapberry oil and preparation method thereof
  • Cleansing oil containing soapberry oil and preparation method thereof
  • Cleansing oil containing soapberry oil and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] Stir and mix 0.05g of aloe extract and 50ml of deionized water evenly, then add 1g of silk fibroin, continue stirring and mixing to obtain a spinning solution, and use a conventional electrospinning process to obtain a silk fibroin load with a diameter of 10nm and a length of 2μm Aloe extract nanofibers;

[0037] Dissolve 10g of polyvinyl alcohol in 100ml of deionized water, then add 5g of the silk fibroin-loaded aloe extract nanofibers prepared above, stir evenly, add 30ml of tannic acid solution with a concentration of 10wt%, and heat in a water bath at 60°C React for 1 hour. After the reaction, cool the reaction solution to room temperature, and freeze-dry it at -20°C for 48 hours to prepare polyvinyl alcohol / tannic acid-modified silk fibroin-loaded aloe extract nanofibers;

[0038] Mix 1g of lavender extract, 0.3g of sweet orange extract, 0.3g of geranium extract, and 0.3g of rosemary extract to obtain a plant extract; mix 8g of PEG-20 glycerol triisostearate, 4g of...

Embodiment 2

[0041] Stir and mix 0.05g of aloe extract and 50ml of deionized water evenly, then add 1g of silk fibroin, continue stirring and mixing to obtain a spinning solution, and use a conventional electrospinning process to obtain a silk fibroin load with a diameter of 10nm and a length of 2μm Aloe extract nanofibers;

[0042] Dissolve 10g of polyvinyl alcohol in 100ml of deionized water, then add 5g of the silk fibroin-loaded aloe extract nanofibers prepared above, stir evenly, add 30ml of tannic acid solution with a concentration of 10wt%, and heat in a water bath at 60°C React for 1 hour. After the reaction, cool the reaction solution to room temperature, and freeze-dry it at -20°C for 48 hours to prepare polyvinyl alcohol / tannic acid-modified silk fibroin-loaded aloe extract nanofibers;

[0043] 0.3g lavender extract, 1g sweet orange extract, 0.3g geranium extract, 0.3g rosemary extract were mixed and stirred evenly to obtain a plant extract; 9.6g PEG-20 glyceryl triisostearate, ...

Embodiment 3

[0046] Stir and mix 0.05g of aloe extract and 50ml of deionized water evenly, then add 1g of silk fibroin, continue stirring and mixing to obtain a spinning solution, and use a conventional electrospinning process to obtain a silk fibroin load with a diameter of 10nm and a length of 2μm Aloe extract nanofibers;

[0047] Dissolve 10g of polyvinyl alcohol in 100ml of deionized water, then add 5g of the silk fibroin-loaded aloe extract nanofibers prepared above, stir evenly, add 30ml of tannic acid solution with a concentration of 10wt%, and heat in a water bath at 60°C React for 1 hour. After the reaction, cool the reaction solution to room temperature, and freeze-dry it at -20°C for 48 hours to prepare polyvinyl alcohol / tannic acid-modified silk fibroin-loaded aloe extract nanofibers;

[0048] 0.3g lavender extract, 0.3g sweet orange extract, 1g geranium extract, 0.3g rosemary extract were mixed and stirred evenly to obtain plant extract; 11.2g PEG-20 glyceryl triisostearate, 5...

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Abstract

The invention provides cleansing oil containing soapberry oil, which is prepared from the following components in percentage by mass: 10 to 80 percent of soapberry oil, 1 to 50 percent of olive oil, 0.1 to 10 percent of plant extracting solution, 0.1 to 10 percent of antioxidant and 10 to 50 percent of emulsifying agent. The invention also discloses a preparation method of the cleansing oil. The cleansing oil containing the soapberry oil provided by the invention is good in self-emulsifying property, good in flowability and easy to smear. The cleansing cream has strong cleansing power on main cosmetics (liquid foundation, eyeliner and lipstick), can clean up dirt in skin, has no harm to the skin due to the main natural components, is simple in preparation method, and can realize large-scale production.

Description

Technical field: [0001] The invention relates to the technical field of cosmetics, in particular to a cleansing oil containing sapindus oil and a preparation method thereof. Background technique: [0002] With the advancement of cosmetic technology, makeup plays an increasingly important role in people's lives. A woman spends at least three years on makeup in her life, and cosmetics stay on her face for as long as ten years, so it is very important to remove makeup. People who often use cleansing water often have very sensitive skin, because it needs to be used with a cotton pad, and it is easy to damage the skin when wiped, while cleansing oil removes makeup by dissolving oil in oil and emulsifying with water, which has less friction and is relatively milder, so long-term use of cleansing oil people have better skin condition. [0003] In recent years, consumers have paid special attention to the moisturizing effect of cleansing consumer products. Makeup removers, as oil-...

Claims

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Application Information

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IPC IPC(8): A61K8/9794A61K8/60A61K8/64A61K8/81A61K8/92A61K8/9789A61Q1/14A61Q17/00D01F1/10D01F4/02D06M15/333
CPCA61K8/9789A61K8/9794A61K8/922A61K8/64A61K8/8129A61K8/60A61Q1/14A61Q17/005D06M15/333D01F4/02D01F1/103A61K2800/413D06M2101/10A61K2800/84Y02A50/30
Inventor 雷芬芬郑竟成何东平罗质雷锦舸
Owner WUHAN POLYTECHNIC UNIVERSITY
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