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Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics

[Image: see text] Bone proteomic studies using animal proxies and skeletonized human remains have delivered encouraging results in the search for potential biomarkers for precise and accurate post-mortem interval (PMI) and the age-at-death (AAD) estimation in medico-legal investigations. The develop...

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Autores principales: Mickleburgh, Hayley L., Schwalbe, Edward C., Bonicelli, Andrea, Mizukami, Haruka, Sellitto, Federica, Starace, Sefora, Wescott, Daniel J., Carter, David O., Procopio, Noemi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155572/
https://www.ncbi.nlm.nih.gov/pubmed/33683123
http://dx.doi.org/10.1021/acs.jproteome.0c00992
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author Mickleburgh, Hayley L.
Schwalbe, Edward C.
Bonicelli, Andrea
Mizukami, Haruka
Sellitto, Federica
Starace, Sefora
Wescott, Daniel J.
Carter, David O.
Procopio, Noemi
author_facet Mickleburgh, Hayley L.
Schwalbe, Edward C.
Bonicelli, Andrea
Mizukami, Haruka
Sellitto, Federica
Starace, Sefora
Wescott, Daniel J.
Carter, David O.
Procopio, Noemi
author_sort Mickleburgh, Hayley L.
collection PubMed
description [Image: see text] Bone proteomic studies using animal proxies and skeletonized human remains have delivered encouraging results in the search for potential biomarkers for precise and accurate post-mortem interval (PMI) and the age-at-death (AAD) estimation in medico-legal investigations. The development of forensic proteomics for PMI and AAD estimation is in critical need of research on human remains throughout decomposition, as currently the effects of both inter-individual biological differences and taphonomic alteration on the survival of human bone protein profiles are unclear. This study investigated the human bone proteome in four human body donors studied throughout decomposition outdoors. The effects of ageing phenomena (in vivo and post-mortem) and intrinsic and extrinsic variables on the variety and abundancy of the bone proteome were assessed. Results indicate that taphonomic and biological variables play a significant role in the survival of proteins in bone. Our findings suggest that inter-individual and inter-skeletal differences in bone mineral density (BMD) are important variables affecting the survival of proteins. Specific proteins survive better within the mineral matrix due to their mineral-binding properties. The mineral matrix likely also protects these proteins by restricting the movement of decomposer microbes. New potential biomarkers for PMI estimation and AAD estimation were identified. Future development of forensic bone proteomics should include standard measurement of BMD and target a combination of different biomarkers.
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spelling pubmed-81555722021-05-28 Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics Mickleburgh, Hayley L. Schwalbe, Edward C. Bonicelli, Andrea Mizukami, Haruka Sellitto, Federica Starace, Sefora Wescott, Daniel J. Carter, David O. Procopio, Noemi J Proteome Res [Image: see text] Bone proteomic studies using animal proxies and skeletonized human remains have delivered encouraging results in the search for potential biomarkers for precise and accurate post-mortem interval (PMI) and the age-at-death (AAD) estimation in medico-legal investigations. The development of forensic proteomics for PMI and AAD estimation is in critical need of research on human remains throughout decomposition, as currently the effects of both inter-individual biological differences and taphonomic alteration on the survival of human bone protein profiles are unclear. This study investigated the human bone proteome in four human body donors studied throughout decomposition outdoors. The effects of ageing phenomena (in vivo and post-mortem) and intrinsic and extrinsic variables on the variety and abundancy of the bone proteome were assessed. Results indicate that taphonomic and biological variables play a significant role in the survival of proteins in bone. Our findings suggest that inter-individual and inter-skeletal differences in bone mineral density (BMD) are important variables affecting the survival of proteins. Specific proteins survive better within the mineral matrix due to their mineral-binding properties. The mineral matrix likely also protects these proteins by restricting the movement of decomposer microbes. New potential biomarkers for PMI estimation and AAD estimation were identified. Future development of forensic bone proteomics should include standard measurement of BMD and target a combination of different biomarkers. American Chemical Society 2021-03-08 2021-05-07 /pmc/articles/PMC8155572/ /pubmed/33683123 http://dx.doi.org/10.1021/acs.jproteome.0c00992 Text en © 2021 The Authors. Published by American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Mickleburgh, Hayley L.
Schwalbe, Edward C.
Bonicelli, Andrea
Mizukami, Haruka
Sellitto, Federica
Starace, Sefora
Wescott, Daniel J.
Carter, David O.
Procopio, Noemi
Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title_full Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title_fullStr Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title_full_unstemmed Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title_short Human Bone Proteomes before and after Decomposition: Investigating the Effects of Biological Variation and Taphonomic Alteration on Bone Protein Profiles and the Implications for Forensic Proteomics
title_sort human bone proteomes before and after decomposition: investigating the effects of biological variation and taphonomic alteration on bone protein profiles and the implications for forensic proteomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155572/
https://www.ncbi.nlm.nih.gov/pubmed/33683123
http://dx.doi.org/10.1021/acs.jproteome.0c00992
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