A Raman algorithm to estimate human age from protein structural variations in autopsy skin samples: a protein biological clock

Author:

Miyamori Daisuke,Uemura Takeshi,Zhu Wenliang,Fujikawa Kei,Nakaya Takaaki,Teramukai Satoshi,Pezzotti Giuseppe,Ikegaya Hiroshi

Abstract

AbstractThe recent increase of the number of unidentified cadavers has become a serious problem throughout the world. As a simple and objective method for age estimation, we attempted to utilize Raman spectrometry for forensic identification. Raman spectroscopy is an optical-based vibrational spectroscopic technique that provides detailed information regarding a sample’s molecular composition and structures. Building upon our previous proof-of-concept study, we measured the Raman spectra of abdominal skin samples from 132 autopsy cases and the protein-folding intensity ratio, RPF, defined as the ratio between the Raman signals from a random coil an α-helix. There was a strong negative correlation between age and RPF with a Pearson correlation coefficient of r = 0.878. Four models, based on linear (RPF), squared (RPF2), sex, and RPF by sex interaction terms, were examined. The results of cross validation suggested that the second model including linear and squared terms was the best model with the lowest root mean squared error (11.3 years of age) and the highest coefficient of determination (0.743). Our results indicate that the there was a high correlation between the age and RPF and the Raman biological clock of protein folding can be used as a simple and objective forensic age estimation method for unidentified cadavers.

Funder

Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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1. A miRNA-based epigenetic molecular clock for biological skin-age prediction;Archives of Dermatological Research;2024-06-01

2. Estimation of cadaveric age in crime scenes using Raman spectroscopy;Journal of Forensic and Legal Medicine;2024-02

3. Applications of Raman spectroscopy in the analysis of biological evidence;Forensic Science, Medicine and Pathology;2023-10-25

4. Deep Neural Networks-Based Age Estimation of Cadavers Using CT Imaging of Vertebrae;International Journal of Environmental Research and Public Health;2023-03-09

5. Innovative Vibrational Spectroscopy Research for Forensic Application;Analytical Chemistry;2023-01-10

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