This is another mortality risk NMR-based blood test (similar to the MVX test, that you can purchase today) that is being developed by an academic group in the Netherlands. It has not been made commercially available yet. I am posting the research studies that have been done on it in this thread.
14-Biomarker Blood Signature Predicts 10-Year Mortality Risk Better Than Standard Clinical Panels
A large-scale observational study of 44,168 human subjects identified a specific profile of 14 circulating metabolic biomarkers that accurately predicts all-cause mortality over a 5 to 10-year period. By utilizing high-throughput nuclear magnetic resonance metabolomics, researchers demonstrated that this single biomarker score outperforms conventional clinical risk factors like cholesterol and blood pressure across all age groups, offering a superior tool for assessing physiological frailty and longevity.
Traditional predictors of mortality such as systolic blood pressure and total cholesterol lose their predictive power in older populations. In elderly cohorts, these standard markers often show inverted associations with mortality due to a phenomenon known as mortality crossover, where low blood pressure or low cholesterol paradoxically signals failing health and impending death. Clinicians and researchers require better molecular tools that measure systemic physiological decline rather than singular disease states.
To solve this, researchers analyzed blood samples from over 44,000 individuals across 12 distinct cohorts spanning ages 18 to 109. Using a standardized nuclear magnetic resonance platform, the team screened 226 metabolic biomarkers and narrowed them down to 14 independent variables that robustly predict all-cause mortality. This mortality signature captures data across multiple physiological domains including lipoprotein metabolism, fatty acid balance, glycolysis, fluid balance, and systemic inflammation.
The 14 biomarkers include metabolic substrates and lipid particles where higher levels are protective, alongside inflammatory markers and metabolites where higher levels increase mortality risk. Protective markers include the ratio of polyunsaturated fatty acids to total fatty acids, total lipids in specific high-density and very low-density lipoproteins, albumin, and the amino acids histidine, leucine, and valine. Conversely, elevated glucose, lactate, phenylalanine, isoleucine, acetoacetate, and glycoprotein acetyls indicate higher mortality risk.
When combined into a single weighted score, this metabolic profile significantly improved mortality prediction accuracy compared to a standard clinical panel that included body mass index, blood pressure, cholesterol, smoking status, and existing disease. The predictive superiority of the biomarker panel was especially pronounced in individuals over the age of 60. The findings establish that a comprehensive snapshot of circulating metabolites provides a more accurate representation of biological age and survival probability than traditional physician screening panels.
Actionable Insights
For individuals optimizing for healthspan, this paper provides highly specific metabolic targets. The hazard ratios provided in the study allow us to extract the standardized effect size of each biomarker, translating directly to practical risk management.
Increasing the ratio of polyunsaturated fatty acids to total fatty acids yields a massive protective effect. For every standard deviation increase in this ratio, mortality risk drops by 22 percent (Hazard Ratio 0.78). Biohackers can act on this by prioritizing marine omega-3 fatty acids and minimizing saturated and trans fats to optimize cellular membrane composition.
Systemic inflammation is a primary driver of mortality. Glycoprotein acetyls, a marker of chronic inflammation, strongly predict death. A one standard deviation increase in this inflammatory marker increases mortality risk by 32 percent (Hazard Ratio 1.32). Interventions targeting chronic inflammation are non-negotiable for longevity.
Metabolic flexibility and glycemic control remain paramount. Elevated fasting glucose increases mortality risk by 16 percent per standard deviation, while elevated lactate increases risk by 6 percent.
The cumulative effect of these variables is profound. A one-unit increase in the combined 14-biomarker risk score results in a 173 percent increase in all-cause mortality risk (Hazard Ratio 2.73). Optimizing these specific metabolic hubs provides a significant, mathematically verifiable survival advantage.
Context and Source
- Open Access Paper: A metabolic profile of all-cause mortality risk identified in an observational study of 44,168 individuals., Published: 20 August 2019.
- Institution: Max Planck Institute for Biology of Ageing and Leiden University Medical Center.
- Country: Germany and The Netherlands.
- Journal Name: Nature Communications.
- Impact Evaluation: The impact score of this journal is 17.6, evaluated against a typical high-end range of 0–60+ for top general science, therefore this is a High impact journal.