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Ingredients
Analysis results of Ingredients
Ingredient List
| EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
|---|---|---|---|
| 1 | - | | |
| 1 | - | (Solvent to dissolve substances insoluble in water, Antistatic Agent, Hair Conditioning, Sufactant, Foam Boosting) | |
| 1 2 | A | (Solvent, Perfuming, Fragrance, Humectant, Viscosity Decreasing Agent, Hair Conditioning, Skin Protecting, Denaturant ) | |
| 4 | B | (Antimicrobial, Cosmetic Biocide, Preservative) | |
Gynepro Ultra Protection Feminine Wash - Ingredient Explanation
Mineral Water
1. Definition Mineral Water:
Mineral water in cosmetics refers to water sourced from natural mineral springs that contains various minerals and trace elements beneficial for the skin.2. Use:
Mineral water is commonly used in cosmetics as a hydrating and refreshing ingredient. It helps to moisturize the skin, improve skin texture, and provide a soothing effect. Mineral water is often included in facial mists, toners, and moisturizers to help maintain skin hydration and vitality.3. Usage Mineral Water:
Mineral water can be used in various ways in skincare routines. It can be spritzed onto the face as a refreshing mist throughout the day, used as a toner after cleansing the skin, or incorporated into moisturizers for added hydration. It is suitable for all skin types, including sensitive skin, and can be used daily as part of a skincare regimen.4. References:
- Draelos, Z. D. (2010). Cosmetic dermatology: products and procedures. John Wiley & Sons.
- Baumann, L. (2009). Cosmetic dermatology: principles and practice. McGraw-Hill Medical.
- Loden, M., & Maibach, H. I. (2012). Dry skin and moisturizers: chemistry and function. CRC Press.
Cocamine Oxide
1. Definition Cocamine Oxide:
Cocamine Oxide is a surfactant commonly used in cosmetics as an emulsifying agent and foam booster. It is derived from coconut oil and is known for its ability to effectively clean and condition the skin and hair.2. Use:
Cocamine Oxide is primarily used in cosmetics as a surfactant to help blend water and oil-based ingredients together. It is often found in shampoos, conditioners, body washes, and facial cleansers to create a rich lather and improve the overall cleansing experience. Additionally, it can also act as a conditioning agent, leaving the skin and hair feeling soft and smooth.3. Usage Cocamine Oxide:
When using products containing Cocamine Oxide, it is important to follow the instructions provided on the packaging. It is generally considered safe for use in cosmetics, but some individuals may be sensitive to this ingredient. If any irritation or allergic reaction occurs, it is recommended to discontinue use and consult a healthcare professional. As with any cosmetic product, it is also important to avoid contact with the eyes and to keep out of reach of children.4. References:
- "Cocamine Oxide." Cosmetics Info, www.cosmeticsinfo.org/ingredient/cocamine-oxide.
- "Cocamine Oxide." Truth In Aging, www.truthinaging.com/ingredients/cocamine-oxide.
- "Cocamine Oxide." The Derm Review, www.thedermreview.com/cocamine-oxide/.
Glycerin
1. Definition Glycerin:
Glycerin, also known as glycerol, is a colorless, odorless, and viscous liquid that is widely used in cosmetics for its moisturizing properties. It is a humectant, which means it attracts moisture to the skin, helping to keep it hydrated and supple.
2. Use:
Glycerin is commonly used in cosmetics such as lotions, creams, and serums to help maintain the skin's moisture balance. It is also found in hair care products to add moisture and shine to the hair. Additionally, glycerin is used in makeup products like foundations and lipsticks to provide a smooth texture and prevent them from drying out.
3. Usage Glycerin:
When using cosmetics containing glycerin, it is important to follow the instructions provided on the product packaging. Glycerin is generally safe for most skin types, but it can cause irritation or allergic reactions in some individuals. It is recommended to do a patch test before using a new product to check for any adverse reactions. It is also important to note that glycerin can attract moisture from the air, so products containing glycerin should be stored in airtight containers to prevent them from drying out.
4. References:
- Draelos, Z. D. (2010). Cosmetic Formulation of Skin Care Products. John Wiley & Sons.
- Loden, M., & Maibach, H. I. (2006). Dry Skin and Moisturizers: Chemistry and Function. CRC Press.
- Winter, R. (2009). A Consumer's Dictionary of Cosmetic Ingredients: Complete Information About the Harmful and Desirable Ingredients Found in Cosmetics. Harmony.
Chlorhexidine Digluconate
1. Definition Chlorhexidine Digluconate:
Chlorhexidine Digluconate is a chemical compound commonly used as an antiseptic and disinfectant in various skincare and cosmetic products. It is known for its broad-spectrum antimicrobial properties, making it effective against a wide range of bacteria, fungi, and viruses.2. Use:
Chlorhexidine Digluconate is primarily used in cosmetics for its ability to cleanse and sanitize the skin. It is commonly found in products such as facial cleansers, hand sanitizers, mouthwashes, and wound care solutions. Due to its antiseptic properties, it helps to prevent infections and promote healing in skincare products.3. Usage Chlorhexidine Digluconate:
When using products containing Chlorhexidine Digluconate, it is important to follow the instructions provided on the packaging. It is typically applied topically to the skin or mucous membranes, and should not be ingested. It is important to avoid contact with eyes, as it can cause irritation and damage. Additionally, prolonged or frequent use of products containing Chlorhexidine Digluconate may lead to skin sensitivity or allergic reactions in some individuals.4. References:
- Kosek, J., & Mazurek, M. (2010). Chlorhexidine Digluconate: Properties, Applications and Regulatory Issues. Journal of Industrial Microbiology & Biotechnology, 37(12), 1247-1256.
- Gilbert, P., & Moore, L. E. (2005). Cationic Antiseptics: Diversity of Action under a Common Epithet. Journal of Applied Microbiology, 99(4), 703-715.
- Khakimova, M., Ahlgren, H. G., Harrison, J. J., English, A. M., Nguyen, D., & Parsek, M. R. (2013). The Non-identity of a Cationic Antiseptic and the Chlorhexidine Digluconate-Specific Response in Pseudomonas aeruginosa. Microbiology, 159(12), 2484-2497.
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