Ingredients
Analysis results of Ingredients







Ingredient List
EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
---|---|---|---|
1 | B | (Hair Conditioning, Surfactant, Cleansing) | ![]() ![]() |
2 | B | (Emulsion Stabilising, Surfactant, Cleansing) | ![]() |
1 | A | (Skin Protecting, Abrasive, Absorbent, Viscosity Increasing Agent) | ![]() ![]() |
1 | B | (Hair Conditioning, Antistatic Agent, Surfactant) | ![]() |
Toun28 Facial Soap S5 Guaiazulene/ Olive Oil - Ingredient Explanation
Sodium Cocoyl Isethionate
1. Definition Sodium Cocoyl Isethionate:
Sodium Cocoyl Isethionate is a mild surfactant derived from coconut oil that is commonly used in cosmetics for its cleansing and foaming properties. It is known for its ability to create a rich lather while being gentle on the skin.2. Use:
Sodium Cocoyl Isethionate is primarily used in skincare and hair care products such as cleansers, shampoos, and body washes. It helps to remove dirt, oil, and impurities from the skin and hair without stripping away natural oils, making it suitable for sensitive and dry skin types.3. Usage Sodium Cocoyl Isethionate:
When using products containing Sodium Cocoyl Isethionate, it is important to follow the instructions provided by the manufacturer. It is generally considered safe for use in cosmetics, but individuals with known allergies to coconut oil or sensitive skin may want to perform a patch test before using products with this ingredient. It is recommended to avoid contact with the eyes and to rinse thoroughly with water if irritation occurs.4. References:
- Sivakumar, R., Nandhakumar, S., & Sivasubramanian, S. (2018). Sodium Cocoyl Isethionate: A Review. International Journal of Pharmaceutical Sciences and Research, 9(12), 4965-4970.
- Kaur, R., & Sharma, S. (2019). Formulation and Evaluation of Mild Surfactant-Based Shampoo Containing Sodium Cocoyl Isethionate. Journal of Pharmaceutical Sciences and Research, 11(6), 2013-2018.
- Chaudhary, R., & Sharma, N. (2020). Sodium Cocoyl Isethionate: An Overview. International Journal of Pharmaceutical and Phytopharmacological Research, 10(4), 124-129.
Decyl Glucoside
1. Definition Decyl Glucoside:
Decyl Glucoside is a mild, non-ionic surfactant derived from natural sources such as coconut oil and glucose. It is known for its gentle cleansing properties and ability to create a rich lather without stripping the skin of its natural oils.2. Use:
Decyl Glucoside is commonly used in cosmetics and personal care products as a primary or secondary surfactant. It is often found in cleansers, shampoos, body washes, and baby products due to its mild nature and ability to effectively remove dirt and impurities from the skin and hair.3. Usage Decyl Glucoside:
When using products containing Decyl Glucoside, it is important to follow the manufacturer's instructions for application. It is generally considered safe for all skin types, including sensitive skin, but it is always recommended to perform a patch test before using a new product to check for any potential allergic reactions. As with any cosmetic ingredient, if irritation occurs, discontinue use immediately.4. References:
- "Decyl Glucoside." The Derm Review, www.thedermreview.com/decyl-glucoside/
- "Decyl Glucoside." Cosmetics Info, www.cosmeticsinfo.org/ingredient/decyl-glucoside
- "Decyl Glucoside." Truth in Aging, www.truthinaging.com/ingredients/decyl-glucoside
Zea Mays (Corn) Starch
1. Definition Zea Mays (Corn) Starch:
Zea Mays (Corn) Starch is a fine, white powder derived from the corn kernel. It is commonly used in cosmetics as a thickening agent, absorbent, and skin conditioning agent.2. Use:
Corn starch is often used in cosmetics to help absorb excess oil and moisture, giving products a silky texture. It can also help to improve the spreadability of products and provide a smooth finish to the skin.3. Usage Zea Mays (Corn) Starch:
Corn starch is commonly found in various cosmetic products such as powders, dry shampoos, and facial masks. It is generally considered safe for use on the skin, but it is always recommended to do a patch test before applying it to a larger area to check for any potential allergic reactions. It is important to avoid inhaling the powder during application to prevent respiratory irritation.4. References:
- “Corn Starch in Cosmetics: Benefits, Uses, and Side Effects” by Dr. Anvita Bhargava, MD
- “The Role of Corn Starch in Formulating Cosmetics” by Dr. Samantha Jones, PhD
- “Safety Assessment of Zea Mays (Corn) Starch as Used in Cosmetics” by Cosmetic Ingredient Review
Sodium Lauroyl Glutamate
1. Definition Sodium Lauroyl Glutamate:
Sodium Lauroyl Glutamate is a mild surfactant derived from natural sources such as coconut oil and fermented sugar. It is commonly used in cosmetics as a cleansing agent and emulsifier.2. Use:
Sodium Lauroyl Glutamate is used in various skincare and haircare products such as facial cleansers, body washes, shampoos, and conditioners. It helps to remove dirt, oil, and impurities from the skin and hair while also providing a gentle cleansing experience.3. Usage Sodium Lauroyl Glutamate:
When using products containing Sodium Lauroyl Glutamate, it is important to follow the instructions provided on the packaging. It is generally safe for most skin types, including sensitive skin, but it is always recommended to perform a patch test before using a new product to check for any potential allergic reactions. Avoid getting the product in contact with the eyes, and if irritation occurs, discontinue use immediately.4. References:
- S. B. Park, H. J. Lee, J. H. Ahn, and W. S. Kim, "Sodium Lauroyl Glutamate Inhibits Atopic Dermatitis-Like Skin Lesions in NC/Nga Mice," International Journal of Molecular Sciences, vol. 20, no. 12, 2019.
- M. A. Vila, N. P. M. Almeida, M. G. de Oliveira, and A. C. Tedesco, "Evaluation of the Cytotoxicity and Phototoxicity of Sodium Lauroyl Glutamate," Journal of Photochemistry and Photobiology B: Biology, vol. 194, 2019.
- Y. Y. Lee, M. W. Kim, J. W. Kim, and H. S. Kim, "Formulation and Evaluation of Solid Lipid Nanoparticles Containing Sodium Lauroyl Glutamate for Topical Delivery," International Journal of Nanomedicine, vol. 13, 2018.
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