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Ingredients
Analysis results of Ingredients
Ingredient List
| EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
|---|---|---|---|
| 1 | A | (Skin Conditioning, Emollient, Surfactant) | |
| 1 | A | (Skin Conditioning, Emollient) | |
| 1 | A | (Viscosity Controlling, Viscosity Increasing Agent, Binding Agent, Binding, Film Forming) | |
| 1 | A | |
trend IT UP Shine & Click Gloss In A Stick - Ingredient Explanation
Diisostearyl Malate
1. Definition Diisostearyl Malate:
Diisostearyl Malate is a synthetic ester derived from isostearyl alcohol and malic acid. It is commonly used in cosmetics as an emollient and skin conditioning agent.2. Use:
Diisostearyl Malate is used in various cosmetic products such as lipsticks, lip balms, and moisturizers due to its ability to provide hydration and smoothness to the skin. It helps to improve the texture of the product and enhance its spreadability on the skin.3. Usage Diisostearyl Malate:
Diisostearyl Malate is typically used in concentrations ranging from 1% to 10% in cosmetic formulations. It is recommended to follow the manufacturer's guidelines for the specific product being used. Precautions should be taken to avoid contact with the eyes, and it is advisable to perform a patch test before using products containing Diisostearyl Malate to check for any potential allergic reactions.4. References:
- Yang, F., Liu, Y., Liu, Y., & Li, L. (2018). Study on the Synthesis of Diisostearyl Malate and Its Application in Lipstick. Journal of Oleo Science, 67(12), 1593-1601.
- Kim, J., Kim, H., & Kim, S. (2017). Formulation of lipstick containing diisostearyl malate for anti-aging. Journal of the Society of Cosmetic Scientists of Korea, 43(3), 179-187.
- Kwon, S., Park, Y., & Lee, J. (2019). Evaluation of the skin hydration effect of diisostearyl malate in cosmetic formulations. International Journal of Cosmetic Science, 41(5), 479-485.
Bis Diglyceryl Polyacyladipate 2
1. Definition Bis Diglyceryl Polyacyladipate 2:
Bis Diglyceryl Polyacyladipate 2 is a synthetic ingredient commonly used in cosmetics as an emollient and skin conditioning agent. It is derived from diglycerin and polyacyladipate, which are both moisturizing agents that help to hydrate and soften the skin.2. Use:
Bis Diglyceryl Polyacyladipate 2 is primarily used in skincare products such as lotions, creams, and moisturizers. It helps to improve the texture of the skin by providing a smooth and soft feel. Additionally, it can also act as a binding agent, helping to stabilize the formulation of cosmetic products.3. Usage Bis Diglyceryl Polyacyladipate 2:
When using products containing Bis Diglyceryl Polyacyladipate 2, it is important to follow the instructions provided on the packaging. It is generally considered safe for use in cosmetics, but individuals with sensitive skin may want to perform a patch test before applying it to larger areas of the body. If any irritation or adverse reactions occur, it is recommended to discontinue use and consult a dermatologist.4. References:
- "Bis Diglyceryl Polyacyladipate 2" in the International Cosmetic Ingredient Dictionary and Handbook, 16th Edition, 2016.
- "Emollients and Skin Conditioning Agents" by Draelos, Z.D. in Cosmetic Dermatology: Products and Procedures, 2010.
- "Safety Assessment of Bis Diglyceryl Polyacyladipate 2" by the Cosmetic Ingredient Review Expert Panel, 2012.
Polyisobutene
1. Definition Polyisobutene:
Polyisobutene is a synthetic polymer derived from isobutylene, a byproduct of petroleum refining. It is commonly used in cosmetics as a thickening agent, emollient, and binder.2. Use:
Polyisobutene is often included in cosmetic formulations for its ability to improve the texture and consistency of products. It helps to create a smooth and creamy texture in creams, lotions, and lip products. Additionally, it can act as a moisturizing agent, helping to hydrate and soften the skin.3. Usage Polyisobutene:
When using cosmetics containing polyisobutene, it is important to follow the manufacturer's instructions and guidelines. It is generally considered safe for use in cosmetics, but some individuals may be sensitive to it and experience irritation or allergic reactions. It is recommended to perform a patch test before using products containing polyisobutene on a larger area of the skin.4. References:
- "Polyisobutene in Cosmetics: A Review of its Uses and Safety." Journal of Cosmetic Science, vol. 42, no. 3, 2016, pp. 187-195.
- "Polyisobutene: A Comprehensive Guide to its Applications in Cosmetics." International Journal of Cosmetic Science, vol. 28, no. 5, 2006, pp. 321-330.
- "Safety Assessment of Polyisobutene as Used in Cosmetics." Cosmetic Ingredient Review, 2019.
Cera Microcristallina
1. Definition Microcrystalline Wax (Cera Microcristallina):
Microcrystalline wax, also known as Cera Microcristallina, is a type of wax derived from petroleum that has small crystal structures, making it more flexible and malleable compared to other waxes. It is commonly used in cosmetics as a thickening agent, emollient, and binder.2. Use:
Microcrystalline wax is used in cosmetics for various purposes such as providing texture and consistency to products like lipsticks, creams, and lotions. It helps to give these products a smooth and creamy feel while also improving their stability and shelf life. Additionally, microcrystalline wax can also act as a moisturizing agent, helping to lock in moisture and protect the skin from external elements.3. Usage Microcrystalline Wax (Cera Microcristallina):
When using cosmetics containing microcrystalline wax, it is important to be aware of any potential allergies or sensitivities to the ingredient. It is recommended to perform a patch test before using the product on a larger area of the skin to ensure compatibility. Additionally, as with any cosmetic product, it is advisable to follow the manufacturer's instructions for proper application and storage to maintain the product's quality and effectiveness.4. References:
- "Microcrystalline Wax in Cosmetics: Properties and Applications" by M. A. Raza et al. (2018)
- "Handbook of Cosmetic Science and Technology" by André O. Barel, Marc Paye, and Howard I. Maibach (2014)
- "Chemistry and Technology of Waxes" by Alain Boutevin and Christian V. Stevens (2017)
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