Unveiling the Anticancer Potential of 4H-1-Benzopyran-4-one, 3-(3,4-dimethoxyphenyl)-7-methoxy
Discover the promising cytotoxic and apoptosis-inducing capabilities of this key isoflavone, a potential breakthrough in natural cancer therapy research.
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4H-1-Benzopyran-4-one,3-(3,4-dimethoxyphenyl)-7-methoxy
This compound, identified by CAS 1621-61-0, represents a significant area of research in natural product-based cancer treatment. As a reliable supplier in China, we offer high-purity material for your scientific explorations. Its potential to induce apoptosis makes it a valuable subject for studying anticancer potential of 4H-1-Benzopyran-4-one.
- Investigating the cytotoxicity of isoflavones reveals profound effects on cancer cell viability.
- Understanding apoptosis induction in Caco-2 cells is crucial for developing effective colon cancer therapies.
- The phytochemical analysis of isoflavones provides insights into their biological activities and therapeutic applications.
- Leveraging molecular docking for anticancer drugs helps predict and validate the efficacy of compounds like this isoflavone.
Advantages Offered
Enhanced Cytotoxicity Research
The precise chemical structure and high purity of our compound support rigorous studies on cytotoxicity of isoflavones against various cancer cell lines.
Apoptosis Mechanism Insights
Our material aids in understanding the fundamental mechanisms of apoptosis induction in Caco-2 cells, a critical step in colon cancer treatment research.
Phytochemical Exploration Tool
Facilitates detailed phytochemical analysis of isoflavones, contributing to the discovery of new therapeutic agents from natural sources.
Key Applications
Pharmaceutical Research
Essential for laboratories investigating new anticancer potential of 4H-1-Benzopyran-4-one, supporting breakthroughs in drug discovery.
Cosmetic Formulations
The compound's properties may offer benefits in advanced cosmetic products, supporting research into the phytochemical analysis of isoflavones for skincare.
Medicinal Chemistry
A key intermediate or subject for synthesis in medicinal chemistry, aiding in the development of novel cancer therapies through molecular docking for anticancer drugs.
Diagnostic Reagent Development
Its role in cellular processes makes it valuable for developing diagnostic reagents and assays focused on cancer cell behavior, particularly regarding apoptosis induction in Caco-2 cells.