SUPEROXIDE DISMUTASE
20000u/mg
Reagent
Code: #99091
CAS Number
9054-89-1
blur_circular Chemical Specifications
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Registry Numbers
MDL Number
MFCD00132404
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Storage & Handling
Storage
2~8℃, dry
description Product Description
Superoxide dismutase is widely utilized in the medical and cosmetic industries due to its potent antioxidant properties. In medicine, it is employed to mitigate oxidative stress, which is implicated in various diseases such as arthritis, neurodegenerative disorders, and cardiovascular conditions. The enzyme helps neutralize superoxide radicals, thereby reducing inflammation and preventing cellular damage.
In the cosmetic industry, superoxide dismutase is incorporated into skincare products to protect the skin from oxidative stress caused by environmental factors like UV radiation and pollution. It aids in reducing signs of aging, such as wrinkles and fine lines, by promoting skin repair and enhancing overall skin health.
Additionally, superoxide dismutase is used in research settings to study oxidative stress mechanisms and to develop therapeutic strategies for diseases linked to oxidative damage. Its ability to scavenge free radicals makes it a valuable tool in both clinical and experimental applications.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Enzyme Activity | 20000 U/mg |
As | <=1.0 ug/g |
Heavy Metals (Pb) | <=1.0 ug/g |
Appearance | Pale blue Powder |
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SUPEROXIDE DISMUTASE
Superoxide dismutase is widely utilized in the medical and cosmetic industries due to its potent antioxidant properties. In medicine, it is employed to mitigate oxidative stress, which is implicated in various diseases such as arthritis, neurodegenerative disorders, and cardiovascular conditions. The enzyme helps neutralize superoxide radicals, thereby reducing inflammation and preventing cellular damage.
In the cosmetic industry, superoxide dismutase is incorporated into skincare products to protect the skin from oxidative stress caused by environmental factors like UV radiation and pollution. It aids in reducing signs of aging, such as wrinkles and fine lines, by promoting skin repair and enhancing overall skin health.
Additionally, superoxide dismutase is used in research settings to study oxidative stress mechanisms and to develop therapeutic strategies for diseases linked to oxidative damage. Its ability to scavenge free radicals makes it a valuable tool in both clinical and experimental applications.
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