Tetrahydrocurcumin Powder: Advanced Curcumin Metabolite for Cutting-Edge Biomedical Research
1. Molecular Identity
- Chemical Name: 1,7-Bis(4-hydroxy-3-methoxyphenyl)heptane-3,5-dione
- CAS Number: 36062-04-1
- Source: Metabolite of curcumin, synthetically produced for research purposes
2. Biochemical Significance
Tetrahydrocurcumin is a bioactive metabolite of curcumin with enhanced stability and bioavailability. Its unique molecular structure contributes to potent antioxidant and anti-inflammatory properties, making it a compound of significant interest in various fields of biomedical research and potential therapeutic applications.
3. Key Properties of Tetrahydrocurcumin
- Potent Antioxidant: Exhibits superior free radical scavenging activity compared to curcumin
- Anti-inflammatory: Demonstrates ability to modulate inflammatory pathways
- Enhanced Bioavailability: Shows improved absorption and bioavailability compared to curcumin
- Stability: Offers better stability in physiological conditions
4. Potential Research Applications
- Antioxidant and anti-aging studies
- Inflammatory disorder investigations
- Cardiovascular health research
- Neuroprotective agent development
5. Current Research Focus
Ongoing studies are investigating tetrahydrocurcumin’s effects on:
- Oxidative stress-related disorders
- Chronic inflammatory conditions
- Neurodegenerative diseases
- Metabolic syndrome and diabetes
6. Formulation Challenges and Innovations
Researchers are actively working on:
- Optimizing tetrahydrocurcumin powder formulations for various delivery methods
- Developing nano-formulations to further enhance bioavailability
- Creating synergistic combinations with other bioactive compounds
7. Regulatory Considerations
As a metabolite of curcumin (CAS 36062-04-1), tetrahydrocurcumin’s regulatory status is evolving. Its use in specific therapeutic applications would require comprehensive safety and efficacy evaluations to meet regulatory standards.
8. Future Research Directions
The scientific community anticipates:
- Advanced clinical trials for specific health indications
- Exploration of tetrahydrocurcumin’s potential in personalized medicine
- Investigation of long-term effects and safety profiles of supplementation
9. Collaborative Opportunities
We invite researchers, pharmaceutical companies, and academic institutions to explore the research potential of tetrahydrocurcumin powder. For inquiries, collaborations, or to discuss how this compound can benefit your research projects, please contact us at sales@nstchemicals.com.
Join us in advancing biomedical research with tetrahydrocurcumin – a potent curcumin metabolite at the forefront of antioxidant and anti-inflammatory studies.