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The mineralized osteocyte

A living fossil

Datos Bibliográficos

ID8318162
AutoresLynne S Bell, Lynne Bell (0000-0003-0677-021X, Simon Fraser University, autor de correspondencia), Mike Kayser, M V Kayser (Royal National Orthopaedic Hospital), Chris Jones (0000-0002-5044-1336), Christopher Jones (0000-0003-0450-1411, Natural History Museum)
Año2008
Volumen137
Número4
Páginas449-456
Fecha de publicación2008-12-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaAmerican Journal of Physical Anthropology (JOURNAL)
Identificadores de la revistaISSN: 0002-9483 • E-ISSN: 1096-8644
EditorialWiley (PUBLISHER • GB)
DOI10.1002/ajpa.20886
PMID18615594
OpenAlexW2168519592
IdiomaEN
Citas recibidas1
Referencias citadas26

We report here on an enigmatic and biologically mysterious event in which a single cell, the osteocyte, mineralizes in vivo and in this process the cell's organelles, cytoskeleton and membrane, are mineralized in a dying state. That the bony lacuna in which the lone osteocyte resides becomes infilled with mineral in vivo is not a new observation and was noted by early microscopists. This study has applied scanning and transmission electron microscopy to modern, archaeological, and fossil bone to investigate the mineral and organic structure and content of this cell. The results from this study revealed that within this mineral lies a visibly identifiable cell, which has an apoptotic‐like morphology. The mechanisms by which this cell mineralizes are so intimate chemically that remnant cell organelles, membranes, cytoskeleton, and potentially nucleic bodies are morphologically identifiable. We have further identified mineralized osteocytes surviving in archaeological and fossil mammal bone up to 5 million years BP. The significance of our findings demonstrates that a single cell may itself mineralize in vivo via an unknown set of biochemical events. Importantly, the location and survival of extra cellular and cellular proteins, including nuclear and mitochondrial DNA in bone after death, has been an area of some speculation, and this unique fossil cell provides a preservation locus within human and mammalian bone, which might be fruitfully targeted in future biomolecular studies. Am J Phys Anthropol, 2008. © 2008 Wiley‐Liss, Inc

Biology · Dentin · Earth science · Mineralized tissues · Osteocyte · Biochemistry · Dentistry · Environmental Science · Forensic and Genetic Research · Forensic Anthropology and Bioarchaeology Studies · Geology · Medicine · Trace Elements in Health

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Obras citantes distintas1
Citas por año0,33
Intervalo de citas2023 - 2023 (1)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 1
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