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Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()

Trace elements are chemical elements in minute quantities, which are known to accumulate in the bone. Cortical and trabecular bones consist of bone structural units (BSUs) such as osteons and bone packets of different mineral content and are separated by cement lines. Previous studies investigating...

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Autores principales: Pemmer, B., Roschger, A., Wastl, A., Hofstaetter, J.G., Wobrauschek, P., Simon, R., Thaler, H.W., Roschger, P., Klaushofer, K., Streli, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3807669/
https://www.ncbi.nlm.nih.gov/pubmed/23932972
http://dx.doi.org/10.1016/j.bone.2013.07.038
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author Pemmer, B.
Roschger, A.
Wastl, A.
Hofstaetter, J.G.
Wobrauschek, P.
Simon, R.
Thaler, H.W.
Roschger, P.
Klaushofer, K.
Streli, C.
author_facet Pemmer, B.
Roschger, A.
Wastl, A.
Hofstaetter, J.G.
Wobrauschek, P.
Simon, R.
Thaler, H.W.
Roschger, P.
Klaushofer, K.
Streli, C.
author_sort Pemmer, B.
collection PubMed
description Trace elements are chemical elements in minute quantities, which are known to accumulate in the bone. Cortical and trabecular bones consist of bone structural units (BSUs) such as osteons and bone packets of different mineral content and are separated by cement lines. Previous studies investigating trace elements in bone lacked resolution and therefore very little is known about the local concentration of zinc (Zn), strontium (Sr) and lead (Pb) in BSUs of human bone. We used synchrotron radiation induced micro X-ray fluorescence analysis (SR μ-XRF) in combination with quantitative backscattered electron imaging (qBEI) to determine the distribution and accumulation of Zn, Sr, and Pb in human bone tissue. Fourteen human bone samples (10 femoral necks and 4 femoral heads) from individuals with osteoporotic femoral neck fractures as well as from healthy individuals were analyzed. Fluorescence intensity maps were matched with BE images and correlated with calcium (Ca) content. We found that Zn and Pb had significantly increased levels in the cement lines of all samples compared to the surrounding mineralized bone matrix. Pb and Sr levels were found to be correlated with the degree of mineralization. Interestingly, Zn intensities had no correlation with Ca levels. We have shown for the first time that there is a differential accumulation of the trace elements Zn, Pb and Sr in BSUs of human bone indicating different mechanisms of accumulation.
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spelling pubmed-38076692013-11-01 Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue() Pemmer, B. Roschger, A. Wastl, A. Hofstaetter, J.G. Wobrauschek, P. Simon, R. Thaler, H.W. Roschger, P. Klaushofer, K. Streli, C. Bone Original Full Length Article Trace elements are chemical elements in minute quantities, which are known to accumulate in the bone. Cortical and trabecular bones consist of bone structural units (BSUs) such as osteons and bone packets of different mineral content and are separated by cement lines. Previous studies investigating trace elements in bone lacked resolution and therefore very little is known about the local concentration of zinc (Zn), strontium (Sr) and lead (Pb) in BSUs of human bone. We used synchrotron radiation induced micro X-ray fluorescence analysis (SR μ-XRF) in combination with quantitative backscattered electron imaging (qBEI) to determine the distribution and accumulation of Zn, Sr, and Pb in human bone tissue. Fourteen human bone samples (10 femoral necks and 4 femoral heads) from individuals with osteoporotic femoral neck fractures as well as from healthy individuals were analyzed. Fluorescence intensity maps were matched with BE images and correlated with calcium (Ca) content. We found that Zn and Pb had significantly increased levels in the cement lines of all samples compared to the surrounding mineralized bone matrix. Pb and Sr levels were found to be correlated with the degree of mineralization. Interestingly, Zn intensities had no correlation with Ca levels. We have shown for the first time that there is a differential accumulation of the trace elements Zn, Pb and Sr in BSUs of human bone indicating different mechanisms of accumulation. Elsevier Science 2013-11 /pmc/articles/PMC3807669/ /pubmed/23932972 http://dx.doi.org/10.1016/j.bone.2013.07.038 Text en © 2013 The Authors https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Original Full Length Article
Pemmer, B.
Roschger, A.
Wastl, A.
Hofstaetter, J.G.
Wobrauschek, P.
Simon, R.
Thaler, H.W.
Roschger, P.
Klaushofer, K.
Streli, C.
Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title_full Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title_fullStr Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title_full_unstemmed Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title_short Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
title_sort spatial distribution of the trace elements zinc, strontium and lead in human bone tissue()
topic Original Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3807669/
https://www.ncbi.nlm.nih.gov/pubmed/23932972
http://dx.doi.org/10.1016/j.bone.2013.07.038
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