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Hydrolyzed Apis mellifera Poison
Hydrolyzed Apis mellifera Poison - Ingredient Explanation
Hydrolyzed Apis mellifera Poison
1. Definition Hydrolyzed Apis mellifera Poison:
Hydrolyzed Apis mellifera Poison, also known as bee venom extract, is a potent ingredient derived from the venom of honeybees. It is processed through hydrolysis, which breaks down the venom into smaller components for use in cosmetic products.2. Use:
Bee venom extract is commonly used in skincare products for its anti-inflammatory, anti-aging, and skin-rejuvenating properties. It is believed to stimulate collagen production, improve circulation, and help reduce the appearance of wrinkles and fine lines. Additionally, bee venom extract is known to have antimicrobial properties, making it beneficial for those with acne-prone skin.3. Usage Hydrolyzed Apis mellifera Poison:
When using products containing hydrolyzed Apis mellifera Poison, it is important to perform a patch test before applying it to the entire face or body. This can help determine if you have any allergic reactions to the bee venom extract. It is recommended to start with a small amount of the product and gradually increase the frequency of use to avoid any potential irritation. It is also advisable to consult with a dermatologist before incorporating bee venom extract into your skincare routine, especially if you have sensitive skin or allergies to bee products.4. References:
- Park, J.H., Kim, K.H., Lee, W.R., Han, S.M., Chang, M.S., & Park, S.J. (2011). Effect of bee venom and its fractions on the release of pro-inflammatory mediators in PMA-stimulated human mast cells. Food and Chemical Toxicology, 49(8), 1720-1725.
- Son, D.J., Lee, J.W., Lee, Y.H., Song, H.S., Lee, C.K., Hong, J.T. (2007). Therapeutic application of anti-arthritis, pain-releasing, and anti-cancer effects of bee venom and its constituent compounds. Pharmacology & Therapeutics, 115(2), 246-270.
- Han, S.M., Lee, K.G., Yeo, J.H., Kweon, H.Y., Woo, S.O., & Park, K.K. (2007). Inhibitory effect of bee venom against ultraviolet B induced MMP-1 and MMP-3 in human dermal fibroblasts. Journal of Apicultural Research, 46(2), 94-98.
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