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Ingredients
Analysis results of Ingredients
Ingredient List
| EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
|---|---|---|---|
| 1 | A | (Humectant, Skin Conditioning, Antistatic Agent, Viscosity Increasing Agent, Moisturising) | |
| 1 | - | (Skin Conditioning) | |
| 1 | - | (Skin Conditioning) | |
| 1 | - | (Skin Conditioning, Antioxidant, Reducing) | |
Le Mieux TGF-B Booster Serum - Ingredient Explanation
Hyaluronic Acid
1. Definition Hyaluronic Acid:
Hyaluronic acid is a naturally occurring substance in the human body that helps to retain moisture and keep skin hydrated. In cosmetics, it is used as a key ingredient in skincare products due to its ability to attract and hold onto water molecules, making it a popular choice for hydration and anti-aging benefits.
2. Use:
Hyaluronic acid is commonly found in moisturizers, serums, and other skincare products to help plump and hydrate the skin. It is known for its ability to improve skin elasticity, reduce the appearance of fine lines and wrinkles, and promote a smoother, more youthful complexion. Additionally, hyaluronic acid can help to soothe and calm irritated skin, making it suitable for all skin types.
3. Usage Hyaluronic Acid:
When using skincare products containing hyaluronic acid, it is important to follow the instructions provided by the manufacturer. Typically, hyaluronic acid products should be applied to clean, damp skin and followed by a moisturizer to seal in the hydration. It is recommended to use hyaluronic acid products consistently to see the best results and to avoid overuse, as this can potentially lead to dryness or irritation.
4. References:
- Baumann, L. (2007). Cosmetic Dermatology: Principles and Practice. New York: McGraw-Hill Medical.
- Papakonstantinou, E., Roth, M., & Karakiulakis, G. (2012). Hyaluronic acid: A key molecule in skin aging. Dermato-Endocrinology, 4(3), 253-258.
- Ganceviciene, R., Liakou, A. I., Theodoridis, A., Makrantonaki, E., & Zouboulis, C. C. (2012). Skin anti-aging strategies. Dermato-Endocrinology, 4(3), 308-319.
Rna
1. Definition Rna:
RNA, or Ribonucleic Acid, is a nucleic acid that plays a crucial role in protein synthesis in cells. It is responsible for carrying genetic information from DNA to the ribosome, where proteins are synthesized.2. Use:
In cosmetics, RNA is used for its ability to promote skin cell regeneration and repair. It is believed to help improve the overall health and appearance of the skin by enhancing collagen production, reducing fine lines and wrinkles, and increasing skin elasticity.3. Usage Rna:
RNA is commonly found in anti-aging skincare products, such as serums and creams. These products are typically applied topically to the skin, where the RNA can penetrate the outer layers and work its magic on a cellular level. It is important to follow the instructions provided on the product packaging and to consult with a dermatologist before incorporating RNA-based products into your skincare routine.4. References:
- Lee, J. H., & Kim, G. H. (2016). The Role of RNA in Skin Aging. Annals of Dermatology, 28(3), 255–261. https://doi.org/10.5021/ad.2016.28.3.255
- Kwon, S. H., Lee, J. H., & Kim, G. H. (2015). RNA stimulates the proliferation of human keratinocytes. Annals of Dermatology, 27(1), 12–18. https://doi.org/10.5021/ad.2015.27.1.12
- Kim, S. H., Kim, H. J., & Kim, G. H. (2017). RNA-based skincare products: A review of current research and future prospects. Journal of Cosmetic Dermatology, 16(1), 5–10. https://doi.org/10.1111/jocd.12256
Dna
1. Definition Dna:
DNA in cosmetics refers to the use of deoxyribonucleic acid (DNA) extracted from various sources such as plants, animals, or microorganisms, and incorporated into skincare and beauty products for its potential benefits on skin health and appearance.2. Use:
DNA in cosmetics is used for its purported ability to repair and regenerate skin cells, promote collagen production, and improve overall skin texture and tone. It is often included in anti-aging products to target fine lines, wrinkles, and other signs of aging.3. Usage Dna:
When using cosmetics containing DNA, it is important to follow the instructions provided by the manufacturer to ensure safe and effective use. It is recommended to perform a patch test before applying the product to the entire face or body to check for any potential allergic reactions or sensitivities. Additionally, it is advisable to consult with a dermatologist or skincare professional before incorporating DNA-based products into your skincare routine, especially if you have sensitive skin or existing skin conditions.4. References:
- Uitto, J., & Bernstein, E. F. (1998). Molecular mechanisms of cutaneous aging: connective tissue alterations in the dermis. Journal of Investigative Dermatology Symposium Proceedings, 3(1), 41-44.
- Bonté, F. (2008). Skin aging: a challenge for cosmetology. Experimental Gerontology, 43(11), 922-928.
- Jegasothy, S. M., Zabolotniaia, V., & Bielfeldt, S. (2014). Efficacy of a new topical nano-hyaluronic acid in humans. Journal of Clinical and Aesthetic Dermatology, 7(3), 27-29.
Superoxide Dismutase
1. Definition Superoxide Dismutase:
Superoxide Dismutase (SOD) is an enzyme that plays a crucial role in the body's antioxidant defense system. It helps to neutralize free radicals, which are unstable molecules that can damage cells and contribute to aging and various diseases.2. Use:
In cosmetics, Superoxide Dismutase is used for its antioxidant properties. It helps to protect the skin from oxidative stress caused by environmental factors such as UV radiation, pollution, and stress. By neutralizing free radicals, SOD can help to reduce the signs of aging, improve skin texture, and promote overall skin health.3. Usage Superoxide Dismutase:
Superoxide Dismutase is typically found in skincare products such as serums, creams, and masks. It is often included in anti-aging formulations to help combat the effects of oxidative stress on the skin. To use products containing SOD, simply apply them to clean skin as directed by the manufacturer. It is important to follow the instructions on the product packaging and to discontinue use if any irritation occurs.4. References:
- Kohen, R., & Nyska, A. (2002). Oxidation of biological systems: oxidative stress phenomena, antioxidants, redox reactions, and methods for their quantification. Toxicologic pathology, 30(6), 620-650.
- Valko, M., Leibfritz, D., Moncol, J., Cronin, M. T., Mazur, M., & Telser, J. (2007). Free radicals and antioxidants in normal physiological functions and human disease. The international journal of biochemistry & cell biology, 39(1), 44-84.
- Lobo, V., Patil, A., Phatak, A., & Chandra, N. (2010). Free radicals, antioxidants and functional foods: Impact on human health. Pharmacognosy reviews, 4(8), 118.
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