ArticleForensic science international. Genetics2020
Age-Related Changes in Hair Shaft Protein Profiling and Genetically Variant Peptides.
Article in Forensic science international. Genetics, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Hair Aging Revisited: An Expert Delphi Consensus on Pathogenesis, Clinical Features, and Future Therapies.Dermatology and therapy · 2026Article
- Advantages of Incomplete Digestion in Human Hair Shaft Proteomics, a Focus on Cuticular Keratins.Rapid communications in mass spectrometry : RCM · 2025Article
- Advances in the Study of Protein Deamidation: Unveiling Its Influence on Aging, Disease Progression, Forensics and Therapeutic Efficacy.Proteomes · 2025Review
- Human Keratinocyte Responses to Woodsmoke Chemicals.Chemical research in toxicology · 2024Article
- Linear hair growth rates in preschool children.Pediatric research · 2024Article
- DNA and protein analyses of hair in forensic genetics.International journal of legal medicine · 2023Review
- Protein profiling of forehead epidermal corneocytes distinguishes frontal fibrosing from androgenetic alopecia.PloS one · 2023Article
- Love is in the hair: arginine methylation of human hair proteins as novel cardiovascular biomarkers.Amino acids · 2022Article
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11 authors.
Funding
Abstract
Recent reports highlight possible improvements in individual identification using proteomic information from human hair evidence. These reports have stimulated investigation of parameters that affect the utility of proteomic information. In addition to variables already studied relating to processing technique and anatomic origin of hair shafts, an important variable is hair ageing. Present work focuses on the effect of age on protein profiling and analysis of genetically variant peptides (GVPs). Hair protein profiles may be affected by developmental and physiological changes with age of the donor, exposure to different environmental conditions and intrinsic processes, including during storage. First, to explore whether general trends were evident in the population at different ages, hair samples were analyzed from groups of different subjects in their 20's, 40's and 60's. No significant differences were seen as a function of age, but consistent differences were evident between European American and African American hair profiles. Second, samples collected from single individuals at different ages were analyzed. Mostly, these showed few protein expression level differences over periods of 10 years or less, but samples from subjects at 44 and 65 year intervals were distinctly different in profile. The results indicate that use of protein profiling for personal identification, if practical, would be limited to decadal time intervals. Moreover, batch effects were clearly evident in samples processed by different staff. To investigate the contribution of storage (at room temperature) in affecting the outcomes, the same proteomic digests were analyzed for GVPs. In samples stored over 10 years, GVPs were reduced in number in parallel with the yield of identified proteins and unique peptides. However, a very different picture emerged with respect to personal identification. Numbers of GVPs sufficed to distinguish individuals despite the age differences of the samples. As a practical matter, three hair samples per person provided nearly the maximal number obtained from 5 or 6 samples. The random match probability (where the log increased in proportion to the number of GVPs) reached as high as 1 in 10
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