Pursuit of Immortality
  • Home
  • Explore
    • Anti-aging research
    • Anti-aging companies
    • Barriers to longevity
  • About
  • Contact
No Result
View All Result
  • Home
  • Explore
    • Anti-aging research
    • Anti-aging companies
    • Barriers to longevity
  • About
  • Contact
No Result
View All Result
Pursuit of Immortality
No Result
View All Result

Natural Astragalus-Based Supplement Lengthens Telomeres

Lasse Damgaard Harreskov by Lasse Damgaard Harreskov
April 26, 2025
Reading Time: 4 mins read

Study: “A Natural Astragalus-Based Nutritional Supplement Lengthens Telomeres in a Middle-Aged Population: A Randomized, Double-Blind, Placebo-Controlled Study”
Publisher: Nutrients
Published date: September 2024
PubMed link to study: https://pubmed.ncbi.nlm.nih.gov/39275278/

A recent study published by Nutrients suggests that an Astragalus-based supplement may help lengthen telomeres, which are protective structures at the ends of chromosomes that shorten as we age.

This could support healthy aging by reducing cellular age-related decline, and potentially lowering the risk of age-related diseases such as cardiovascular issues, diabetes, and cancer. The study showed significant increases in telomere length in participants who took the supplement over a six-month period, with no reported side effects.

Feel welcome to share your own thoughts on this research in the comment section below as well. I will be happy to discuss and learn more about how you see its potential in this field.

Astragalus: A Natural Supplement

Astragalus is a plant used in traditional Chinese medicine that contains active compounds like astragaloside IV and cycloastragenol, both of which can activate telomerase. This study adds to existing evidence suggesting that natural compounds may offer benefits for cellular health and longevity, and that perhaps the key to reversing age-related decline can be found in nature.

Telomeres and Aging: Why It Matters

Telomeres are located at the ends of chromosomes and function similarly to the plastic tips on shoelaces, preventing chromosomes from becoming damaged. Each time a cell divides, telomeres shorten, eventually reaching a critical length that triggers cellular senescence or death. This process is a key factor in biological aging and contributes to the decline in health associated with aging.

Shorter telomeres are strongly associated with an increased risk of various chronic diseases, including cardiovascular disease, type 2 diabetes, and certain cancers. They are also linked to a decrease in immune function, making individuals more susceptible to infections and other health problems.

Therefore, interventions that can lengthen telomeres or slow their shortening could have a significant impact on reducing the overall burden of age-related diseases and improving quality of life as people age.

Telomerase is an enzyme that can rebuild telomeres, thus maintaining chromosome stability. However, telomerase activity is typically low in most cells, leading to gradual telomere shortening. This study focused on a natural Astragalus-based supplement, chosen for its potential to activate telomerase, to determine whether it could help lengthen telomeres in middle-aged adults.

Study Design and Results

The study was a six-month, randomized, double-blind, placebo-controlled trial involving 40 healthy volunteers with an average age of 56 years. Participants were split into two groups: one received the Astragalus-based supplement, and the other received a placebo. Telomere length was measured using a method called quantitative fluorescence in situ hybridization (Q-FISH).

The results indicated that participants who took the Astragalus-based supplement experienced a significant increase in both median and short telomere lengths over the six-month period. The median telomere length in the supplement group increased by approximately 700 base pairs, while the placebo group showed no significant change.

Additionally, the percentage of short telomeres, which are particularly vulnerable to damage, decreased significantly in the supplement group, suggesting improved genomic stability and a reduction in the risk of cellular dysfunction.

Implications for Healthy Aging

These findings suggest that Astragalus supplementation may help slow down biological aging by lengthening telomeres, which could reduce cellular senescence and improve the resilience of cells.

This could lead to a reduction in the prevalence of age-related diseases and an improvement in overall health. Shorter telomeres have been linked to an increased risk of conditions such as cardiovascular disease, diabetes, and certain cancers, as well as decreased immune function. Therefore, maintaining or lengthening telomeres could be crucial for extending healthspan, which is the period of life spent in good health, and potentially increasing lifespan.

By lengthening telomeres, Astragalus supplementation can potentially enhance the body’s ability to repair tissues, maintain organ function, and resist age-related decline. This suggests that such interventions may not only help individuals live longer but also maintain a higher quality of life throughout their later years.

Future Research Directions

While these initial results are promising, more research is necessary to fully understand the long-term effects of Astragalus supplementation on telomere length and overall health. Larger studies involving more diverse populations would help clarify its effectiveness and safety over the long term.

Additionally, further research could explore the specific mechanisms by which Astragalus compounds activate telomerase and their broader effects on different cell types.

In Summary

The Astragalus-based supplement represents a potential advancement in the pursuit of healthy aging and extended life expectancy. By lengthening telomeres, it may help protect cells from aging-related decline, enhance immune function, and reduce the risk of age-related diseases.

Read about more anti-aging research.

Related Posts

GD3 senescent cells
Anti-aging research

GD3 Enables Senescent Cells to Avoid the Immune System During Aging

May 2, 2025
Longevity Escape Velocity
Anti-aging research

Longevity Escape Velocity Explained

May 1, 2025
XPRIZE Healthspan
Anti-aging research

The $111M XPRIZE Healthspan Competition

May 13, 2025

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Pursuit of Immortality

At Pursuit of Immortality I will keep you updated on the latest scientific research and technological breakthroughs in the field of anti-aging, and explore the question of whether it is possible to live forever.

  • Home
  • Anti-aging research
  • Anti-aging companies
  • Barriers to longevity
  • About
  • Contact

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Home
  • Explore
    • Anti-aging research
    • Anti-aging companies
    • Barriers to longevity
  • About
  • Contact