Leeaoside

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Reagent Code: #202477
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CAS Number 1015063-56-5

science Other reagents with same CAS 1015063-56-5

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scatter_plot Molecular Information
Weight 504.568 g/mol
Formula C₂₄H₄₀O₁₁
inventory_2 Storage & Handling
Storage 2-8℃

description Product Description

Leeaoside is a natural compound derived from plants in the Leea genus, exhibiting potential as an antioxidant due to its molecular structure that helps mitigate oxidative stress and cellular damage from free radicals. Ongoing research explores its applications in health care products and cosmetics, particularly in anti-aging formulations and skin nourishment. It also demonstrates anti-inflammatory properties, which may support development as a therapeutic agent for chronic inflammatory conditions such as arthritis or diabetes. Preliminary studies indicate potential effects on blood glucose regulation, suggesting future roles in managing metabolic disorders.

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Size Availability Unit Price Quantity
inventory 5mg
10-20 days ฿61,130.00

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Leeaoside
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Leeaoside is a natural compound derived from plants in the Leea genus, exhibiting potential as an antioxidant due to its molecular structure that helps mitigate oxidative stress and cellular damage from free radicals. Ongoing research explores its applications in health care products and cosmetics, particularly in anti-aging formulations and skin nourishment. It also demonstrates anti-inflammatory properties, which may support development as a therapeutic agent for chronic inflammatory conditions such as

Leeaoside is a natural compound derived from plants in the Leea genus, exhibiting potential as an antioxidant due to its molecular structure that helps mitigate oxidative stress and cellular damage from free radicals. Ongoing research explores its applications in health care products and cosmetics, particularly in anti-aging formulations and skin nourishment. It also demonstrates anti-inflammatory properties, which may support development as a therapeutic agent for chronic inflammatory conditions such as arthritis or diabetes. Preliminary studies indicate potential effects on blood glucose regulation, suggesting future roles in managing metabolic disorders.

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