Ingredients
Analysis results of Ingredients





Ingredient List
EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
---|---|---|---|
1 | - | (Solvent) | |
1 | B | (Skin Conditioning, Surfactant, Antistatic Agent, Hair Conditioning, Cleansing, Foaming) | ![]() |
1 5 | B | (Hair Conditioning, Skin Conditioning, Viscosity Controlling, Antistatic Agent, Viscosity Increasing Agent, Foam Boosting, Sufactant) | |
1 | A | (Masking, Fragrance, pH adjusting agent, pH adjusting agent) | |
Zelens Glacier Foam Renewing Cleanser - Ingredient Explanation
Water
1. Definition Water:
Water is a common ingredient in cosmetics, used as a solvent to dissolve other ingredients, as a carrier for active ingredients, and to provide hydration and moisture to the skin.2. Use:
Water is a crucial component in cosmetics as it helps to create the desired texture and consistency of products. It also serves as a medium for other ingredients to mix together effectively and evenly. Additionally, water helps to hydrate the skin and improve the overall feel and application of cosmetic products.3. Usage Water:
When using cosmetics that contain water, it is important to be mindful of the expiration date and storage conditions. Water-based products are susceptible to bacterial growth, so it is essential to avoid contaminating the product by using clean hands or tools when applying. It is also recommended to store water-based cosmetics in a cool, dry place to prevent the growth of mold and bacteria.4. References:
- Draelos, Z. D. (2010). Cosmetic dermatology: products and procedures. John Wiley & Sons.
- Winter, R. (2009). A consumer's dictionary of cosmetic ingredients: complete information about the harmful and desirable ingredients found in cosmetics and cosmeceuticals. Crown.
- Begoun, P. (2003). Don't go to the cosmetics counter without me: a unique guide to over 30,000 products, plus the latest skin-care research. Beginning Press.
Sodium Lauroyl Isethionate
1. Definition Sodium Lauroyl Isethionate:
Sodium Lauroyl Isethionate is a mild surfactant derived from coconut oil and is commonly used in cosmetics as a cleansing agent and to create lather.2. Use:
Sodium Lauroyl Isethionate is primarily used in skincare and haircare products such as cleansers, shampoos, and body washes. It helps to remove dirt, oil, and impurities from the skin and hair while also creating a rich and creamy lather.3. Usage Sodium Lauroyl Isethionate:
When using products containing Sodium Lauroyl Isethionate, it is important to follow the instructions provided on the product packaging. It is generally considered safe for most skin types, including sensitive skin, but it is always recommended to perform a patch test before using a new product to ensure compatibility. Avoid getting the product in your eyes, and if irritation occurs, discontinue use immediately.4. References:
- International Journal of Toxicology. (2003). Final Report on the Safety Assessment of Sodium Lauroyl Isethionate. https://journals.sagepub.com/doi/abs/10.1080/10915810305075
- Personal Care Products Council. (2019). Sodium Lauroyl Isethionate. https://www.personalcarecouncil.org/ingredient-info/sodium-lauroyl-isethionate/
- Cosmetics Info. (n.d.). Sodium Lauroyl Isethionate. https://www.cosmeticsinfo.org/ingredient/sodium-lauroyl-isethionate
Cocamidopropyl Betaine
1. Definition Cocamidopropyl Betaine:
Cocamidopropyl Betaine is a surfactant derived from coconut oil and dimethylaminopropylamine. It is commonly used in cosmetics as a cleansing agent and foam booster.2. Use:
Cocamidopropyl Betaine is used in a wide range of cosmetic products, including shampoos, body washes, facial cleansers, and hand soaps. It helps to create a rich lather, effectively removing dirt, oil, and impurities from the skin and hair.3. Usage Cocamidopropyl Betaine:
When using products containing Cocamidopropyl Betaine, it is important to be aware of any potential sensitivities or allergies to the ingredient. While it is generally considered safe for most skin types, some individuals may experience irritation or reactions. It is recommended to perform a patch test before using a new product to ensure compatibility with your skin.4. References:
- National Center for Biotechnology Information. PubChem Compound Summary for CID 10632, Cocamidopropyl Betaine. https://pubchem.ncbi.nlm.nih.gov/compound/Cocamidopropyl-betaine
- Environmental Working Group. Cocamidopropyl Betaine. https://www.ewg.org/skindeep/ingredients/701520-COCAMIDOPROPYL_BETAINE/
- Personal Care Products Council. Cocamidopropyl Betaine. https://www.personalcarecouncil.org/ingredient-info/cocamidopropyl-betaine/
Succinic Acid
1. Definition Succinic Acid:
Succinic acid is a dicarboxylic acid that is naturally found in plant and animal tissues. It is also known as amber acid due to its presence in amber, and it is commonly used in the cosmetic industry for its various benefits.2. Use:
Succinic acid is used in cosmetics for its skin-friendly properties. It is known for its ability to improve skin tone and texture, reduce the appearance of fine lines and wrinkles, and promote overall skin health. Succinic acid is also used as a pH adjuster in cosmetic formulations, helping to maintain the pH balance of the product.3. Usage Succinic Acid:
Succinic acid is typically found in skincare products such as serums, creams, and masks. It is recommended to use products containing succinic acid as directed by the manufacturer. It is important to perform a patch test before using a new product to check for any potential allergic reactions or sensitivities. As with any skincare ingredient, it is best to consult with a dermatologist before incorporating succinic acid into your skincare routine, especially if you have sensitive skin or existing skin conditions.4. References:
- Park, S. Y., Kim, D. S., Kang, S., & Kim, S. Y. (2018). Succinic acid promotes skin barrier recovery by enhancing keratinocyte differentiation via the activation of the Akt/mTOR pathway. International journal of molecular sciences, 19(11), 3359.
- Lu, Y., & Wang, Y. (2015). Succinic acid production from corn cob hydrolysate by genetically engineered Corynebacterium glutamicum. Microbial cell factories, 14(1), 42.
- Lee, H. J., & Kim, S. H. (2014). Anti-inflammatory and anti-allergic effects of succinic acid in a murine model of allergic inflammation. International immunopharmacology, 20(2), 301-307.
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