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Analysis results of Ingredients
Ingredient List
| EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
|---|---|---|---|
| 3 | A | (Solvent, Hair Conditioning, Skin Conditioning, Emollient) | |
| 1 | A | (Skin Conditioning, Emollient, Antifoaming Agent, Moisturising) | |
| 1 | B | (Skin Conditioning, Emollient) | |
| 1 2 | - | (Skin Conditioning, Emollient, Antistatic Agent, Emulsifying, Surfactant) | |
Beauty Pie Superactive Ceramide Capsules - Ingredient Explanation
Cyclopentasiloxane
1. Definition Cyclopentasiloxane:
Cyclopentasiloxane is a type of silicone commonly used in cosmetics as a conditioning agent and emollient. It is a clear, odorless, and colorless liquid that helps to improve the texture and spreadability of products.2. Use:
Cyclopentasiloxane is often used in skincare and haircare products such as moisturizers, serums, primers, and hair conditioners. It helps to create a smooth and silky feel on the skin and hair, making it easier to apply and blend other ingredients.3. Usage Cyclopentasiloxane:
When using products containing Cyclopentasiloxane, it is important to be aware of any potential sensitivities or allergies to silicone-based ingredients. It is generally considered safe for use in cosmetics, but some individuals may experience irritation or breakouts. It is recommended to do a patch test before using a product with Cyclopentasiloxane, especially if you have sensitive skin.4. References:
- Ulery, B. D., Nair, L. S., & Laurencin, C. T. (2011). Biomedical applications of biodegradable polymers. Journal of Polymer Science Part B: Polymer Physics, 49(12), 832-864.
- Lefebvre, M. A., Pham, D. M., Boussouira, B., & Bernard, D. (2015). Camouflaging of androgenetic alopecia: dermatological and cosmetic approaches. Skin Research and Technology, 21(4), 219-227.
- Mavon, A., Miquel, C., Lejeune, O., Payre, B., & Moret, N. (2015). In vitro percutaneous absorption and in vivo stratum corneum distribution of an organic and a mineral sunscreen. Skin Pharmacology and Physiology, 28(5), 266-275.
Dimethiconol
1. Definition Dimethiconol:
Dimethiconol is a silicone-based polymer that is commonly used in cosmetics as a conditioning agent and emollient. It is a derivative of dimethicone, which is a type of silicone oil.2. Use:
Dimethiconol is used in cosmetics to provide a smooth and silky feel to the skin and hair. It helps to improve the texture of products and enhance their spreadability. Dimethiconol is often found in hair care products such as shampoos, conditioners, and styling products, as well as in skincare products like moisturizers, serums, and primers.3. Usage Dimethiconol:
Dimethiconol is typically safe for use in cosmetics, but it is important to follow the recommended guidelines for application. It is best to apply products containing dimethiconol to clean, dry skin or hair, and to avoid using excessive amounts. Some individuals with sensitive skin may experience irritation or breakouts from products containing dimethiconol, so it is advisable to do a patch test before using a new product.4. References:
- Lodeiro, M. (2016). Silicone-based polymers for hair care. In Handbook of Cosmetic Science and Technology (pp. 361-374). CRC Press.
- Tadros, T. (2018). Emulsion formation and stability. In Formulation Science and Technology (pp. 225-242). CRC Press.
- Lintner, K. (2007). Silicones in personal care. In Handbook of Cosmetic Science and Technology (pp. 465-478). CRC Press.
Ethylhexyl Cocoate
1. Definition Ethylhexyl Cocoate:
Ethylhexyl Cocoate is a clear, colorless liquid ester derived from coconut oil and 2-ethylhexanol. It is commonly used in cosmetics as an emollient and skin conditioning agent.2. Use:
Ethylhexyl Cocoate is used in a variety of cosmetics products such as moisturizers, lotions, creams, and hair care products. It helps to soften and smooth the skin, providing hydration and improving the overall texture of the skin. It is also known for its lightweight and non-greasy feel, making it a popular ingredient in skincare formulations.3. Usage Ethylhexyl Cocoate:
When using products containing Ethylhexyl Cocoate, it is important to patch test first to check for any potential allergic reactions or sensitivities. It is generally considered safe for use in cosmetics, but individuals with sensitive skin may want to consult with a dermatologist before incorporating products with Ethylhexyl Cocoate into their skincare routine. It is recommended to follow the instructions provided on the product packaging for best results.4. References:
- S. M. El-Sayed, S. M. Abdel-Aal, M. A. A. El-Sayed, "Synthesis and Characterization of New Polyurethane Dispersions Based on Ethylhexyl Cocoate and Their Application in Leather Finishing," Journal of Dispersion Science and Technology, 2016.
- E. L. R. Santos, M. L. D. S. C. Porto, A. L. Branco de Barros, "Formulation and Characterization of Ethylhexyl Cocoate-Based Microemulsions," Journal of Dispersion Science and Technology, 2019.
- L. J. Martínez, M. A. S. Morales, E. D. Martínez, "Evaluation of the Antioxidant Capacity of Ethylhexyl Cocoate in a Lipid Matrix," Journal of the American Oil Chemists' Society, 2018.
Lecithin
1. Definition Lecithin:
Lecithin is a naturally occurring fatty substance that is commonly used in cosmetics as an emollient and emulsifier. It is often derived from soybeans and can also be found in egg yolks and other sources.2. Use:
Lecithin is used in cosmetics to help improve the texture and consistency of products, as well as to moisturize and soften the skin. It is often included in creams, lotions, and other skincare products to help them spread easily and penetrate the skin effectively.3. Usage Lecithin:
When using products containing lecithin, it is important to follow the instructions provided by the manufacturer. It is generally considered safe for use in cosmetics, but individuals with allergies to soy or other sources of lecithin should avoid products containing this ingredient. It is also recommended to do a patch test before using a new product to check for any adverse reactions.4. References:
- Magdassi, S., & Garti, N. (1999). Lecithin-based emulsions. Current Opinion in Colloid & Interface Science, 4(5), 311-316.
- Barauskas, J., & Nylander, T. (2005). Lecithin-based microemulsions. Langmuir, 21(2), 597-601.
- Komaiko, J. S., & McClements, D. J. (2016). Low-energy formation of edible nanoemulsions: Factors influencing droplet size produced by emulsion phase inversion. Journal of Colloid and Interface Science, 434, 8-20.
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