Estimated reading time: 4 min
Author: AETERA Medical Editorial Team
Medical review: Medical Family Office Review
Longevity Medicine
DNA Methylation Testing
DNA methylation testing estimates biological age through epigenetic markers and is common in longevity research. Results should be interpreted with method, sample quality, age, lifestyle, and conventional medical markers.
Longevity Medicine
Why this matters for high-net-worth families
The value of longevity medicine is not creating anxiety. It is organizing age, family history, screening results, life stress, and global medical resources into one long-term decision system.
Longevity Medicine
Key dimensions to understand
Before moving into specific testing, screening, or consultation, these dimensions should be clarified.
Epigenetic age
Method differences
Trend over one result
Not a replacement for diagnosis
Longevity Medicine
AETERA compliance boundary
This article is for medical education, preparation, and risk awareness only. It does not provide diagnosis, treatment advice, or outcome guarantees. Any test, medication, treatment, or regenerative medicine decision must be made by licensed physicians based on individual circumstances.
FAQ
Can it predict lifespan?
It should not be used as a personal lifespan predictor; it is one reference for risk and trend.
Downloadable Resources
Longevity Planning Guide
A planning framework for annual screening, biological age, metabolism, inflammation, sleep, and long-term health goals.
Download GuideRelated Articles
Longevity Medicine
What Is Longevity Medicine?
Longevity medicine focuses on healthspan, aging speed, and future disease risk rather than lifespan alone.
Longevity Medicine
What Is Healthspan?
Healthspan is the period of life spent with preserved function, independence, and quality of life.
Longevity Medicine
Chronological Age vs Biological Age
Chronological age is time since birth; biological age attempts to reflect the aging state of body systems.
Longevity Medicine
Why People Age
Aging involves DNA damage, mitochondrial function, chronic inflammation, cellular senescence, immune changes, and repair capacity.
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