Xanthohumol Derivatives for Metabolic and Cognitive Health
Discover the power of non-estrogenic xanthohumol derivatives to improve glucose metabolism and cognitive function.
Get a Quote & SampleProduct Core Value

Xanthohumol Derivatives
Xanthohumol derivatives, such as DXN and TXN, offer significant health benefits without the estrogenic concerns associated with their parent compound, Xanthohumol. These compounds are key to developing advanced nutraceuticals and health products. Their ability to improve glucose metabolism and mitigate cognitive decline makes them highly valuable.
- Experience improved glucose metabolism and insulin sensitivity with these innovative xanthohumol derivatives, addressing key aspects of metabolic syndrome.
- Unlock enhanced cognitive function and memory retention, a critical benefit for overall brain health and well-being.
- Benefit from compounds with negligible affinity for estrogen receptors, offering a safer profile for long-term use.
- Leverage the potential of these derivatives in combating obesity through mechanisms like mitochondrial uncoupling and improved energy expenditure.
Key Advantages of Xanthohumol Derivatives
Metabolic Health Improvement
These Xanthohumol derivatives are instrumental in addressing issues related to metabolic syndrome, helping to regulate glucose levels and improve insulin sensitivity.
Cognitive Support
Research highlights their effectiveness in mitigating cognitive impairments, making them valuable for individuals seeking to maintain optimal brain health and combat age-related decline.
Safety Profile
A significant advantage is their lack of estrogenic activity, providing a distinct safety benefit for consumers concerned about hormonal balance.
Key Applications
Nutraceutical Development
Ideal for formulation into dietary supplements aimed at improving overall metabolic health and cognitive function.
Health and Wellness Products
Can be incorporated into a range of health products targeting age-related decline and metabolic disorders.
Pharmaceutical Research
Serve as promising compounds for further pharmaceutical research into the treatment of obesity and neurodegenerative diseases.
Dietary Interventions
Support the development of targeted dietary interventions for individuals managing high-fat diet-induced health issues.