Dadahol A

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Reagent Code: #175233
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CAS Number 405281-76-7

science Other reagents with same CAS 405281-76-7

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 699 g/mol
Formula C₃₉H₃₈O₁₂
inventory_2 Storage & Handling
Storage 2-8℃, dry, closed

description Product Description

Dadahol A is primarily used in research settings for its bioactive properties, particularly in studies related to anti-inflammatory and neuroprotective effects. It has shown potential in modulating cellular pathways involved in oxidative stress, making it a compound of interest in the development of therapies for neurodegenerative conditions. Its ability to interact with specific signaling molecules allows researchers to explore its role in apoptosis regulation and cell survival. Due to its natural origin and structural complexity, it also serves as a lead compound in the design of new synthetic analogs with enhanced stability and activity. Currently, applications remain confined to preclinical research and are not yet translated into commercial pharmaceuticals.

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Size Availability Unit Price Quantity
inventory 5mg
10-20 days ฿178,000.00

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Dadahol A
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Dadahol A is primarily used in research settings for its bioactive properties, particularly in studies related to anti-inflammatory and neuroprotective effects. It has shown potential in modulating cellular pathways involved in oxidative stress, making it a compound of interest in the development of therapies for neurodegenerative conditions. Its ability to interact with specific signaling molecules allows researchers to explore its role in apoptosis regulation and cell survival. Due to its natural origi

Dadahol A is primarily used in research settings for its bioactive properties, particularly in studies related to anti-inflammatory and neuroprotective effects. It has shown potential in modulating cellular pathways involved in oxidative stress, making it a compound of interest in the development of therapies for neurodegenerative conditions. Its ability to interact with specific signaling molecules allows researchers to explore its role in apoptosis regulation and cell survival. Due to its natural origin and structural complexity, it also serves as a lead compound in the design of new synthetic analogs with enhanced stability and activity. Currently, applications remain confined to preclinical research and are not yet translated into commercial pharmaceuticals.

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