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Age estimation based on different molecular clocks in several tissues and a multivariate approach: an explorative
Julia Becker1, Nina Sophia Mahlke2, A Reckert1
1Institute of Legal Medicine, University Hospital Düsseldorf, 40225, Dusseldorf, Germany.
Forensic age estimation can be improved by combining molecular clocks in different tissues. Analyzing multiple aging markers, like D-aspartic acid and pentosidine, in tissues such as spinal discs and cartilage significantly enhances age prediction accuracy.
Area of Science:
- Forensic Science
- Biogerontology
- Molecular Biology
Background:
- Aging is characterized by molecular changes, including DNA and protein modifications, serving as potential "molecular clocks" for age estimation.
- Current forensic age estimation methods using molecular clocks face limitations due to individual aging variations influenced by intrinsic and extrinsic factors.
- A comprehensive approach combining multiple molecular clocks across different tissues may overcome these limitations for more precise age determination.
Purpose of the Study:
- To test the hypothesis that combining different molecular clocks in various tissues improves the accuracy of forensic age estimation.
- To evaluate the efficacy of analyzing D-aspartic acid (D-Asp) and pentosidine (PEN) accumulation in intervertebral disc and epiglottis tissues for age prediction.
Main Methods:
- Analysis of two protein-based molecular clocks: D-aspartic acid accumulation and pentosidine accumulation.
- Examination of tissues: annulus fibrosus of intervertebral discs and elastic cartilage of the epiglottis.
- Development and comparison of univariate and multivariate models for age estimation using data from 95 cases.
Main Results:
- The inclusion of more parameters in age estimation models progressively reduced mean absolute errors (MAE).
- Univariate models yielded MAEs ranging from 7.5 to 11.0 years.
- A multivariate model integrating both protein clocks across the two tissues achieved a significantly lower MAE of 4.0 years.
Conclusions:
- Combining different molecular clocks (D-Asp, PEN) in distinct tissues (intervertebral disc, epiglottis) enhances postmortem age estimation accuracy.
- This multi-marker, multi-tissue approach offers a more comprehensive analysis of individual aging processes.
- Future research will incorporate epigenetic clocks (DNA methylation) and expand the range of tissues analyzed.
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