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Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue

Osteonecrosis of the femoral head (ONFH) is the result of an interruption of the local circulation and the injury of vascular supply of bone. Multiple factors have been implicated in the development of the disease. However the mechanism of ischemia and necrosis in non-traumatic ONFH is not clear. Th...

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Autores principales: Balla, Bernadett, Pintér, Csaba, Kósa, János P., Podani, János, Takács, István, Nagy, Zsolt, Speer, Gábor, Horváth, Balázs, Korányi, László, Lakatos, Péter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3826809/
https://www.ncbi.nlm.nih.gov/pubmed/21846946
http://dx.doi.org/10.3233/DMA-2011-0797
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author Balla, Bernadett
Pintér, Csaba
Kósa, János P.
Podani, János
Takács, István
Nagy, Zsolt
Speer, Gábor
Horváth, Balázs
Korányi, László
Lakatos, Péter
author_facet Balla, Bernadett
Pintér, Csaba
Kósa, János P.
Podani, János
Takács, István
Nagy, Zsolt
Speer, Gábor
Horváth, Balázs
Korányi, László
Lakatos, Péter
author_sort Balla, Bernadett
collection PubMed
description Osteonecrosis of the femoral head (ONFH) is the result of an interruption of the local circulation and the injury of vascular supply of bone. Multiple factors have been implicated in the development of the disease. However the mechanism of ischemia and necrosis in non-traumatic ONFH is not clear. The aim of our investigation was to identify genes that are differently expressed in ONFH vs. non-ONFH human bone and to describe the relationships between these genes using multivariate data analysis. Six bone tissue samples from ONFH male patients and 8 bone tissue samples from non-ONFH men were examined. The expression differences of selected 117 genes were analyzed by TaqMan probe-based quantitative real-time RT-PCR system. The significance test indicated marked differences in the expression of nine genes between ONFH and non-ONFH individuals. These altered genes code for collagen molecules, an extracellular matrix digesting metalloproteinase, a transcription factor, an adhesion molecule, and a growth factor. Canonical variates analysis demonstrated that ONFH and non-ONFH bone tissues can be distinguished by the multiple expression profile analysis of numerous genes controlled via canonical TGFB pathway as well as genes coding for extracellular matrix composing collagen type molecules. The markedly altered gene expression profile observed in the ONFH of human bone tissue may provide further insight into the pathogenetic process of osteonecrotic degeneration of bone.
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spelling pubmed-38268092013-12-01 Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue Balla, Bernadett Pintér, Csaba Kósa, János P. Podani, János Takács, István Nagy, Zsolt Speer, Gábor Horváth, Balázs Korányi, László Lakatos, Péter Dis Markers Other Osteonecrosis of the femoral head (ONFH) is the result of an interruption of the local circulation and the injury of vascular supply of bone. Multiple factors have been implicated in the development of the disease. However the mechanism of ischemia and necrosis in non-traumatic ONFH is not clear. The aim of our investigation was to identify genes that are differently expressed in ONFH vs. non-ONFH human bone and to describe the relationships between these genes using multivariate data analysis. Six bone tissue samples from ONFH male patients and 8 bone tissue samples from non-ONFH men were examined. The expression differences of selected 117 genes were analyzed by TaqMan probe-based quantitative real-time RT-PCR system. The significance test indicated marked differences in the expression of nine genes between ONFH and non-ONFH individuals. These altered genes code for collagen molecules, an extracellular matrix digesting metalloproteinase, a transcription factor, an adhesion molecule, and a growth factor. Canonical variates analysis demonstrated that ONFH and non-ONFH bone tissues can be distinguished by the multiple expression profile analysis of numerous genes controlled via canonical TGFB pathway as well as genes coding for extracellular matrix composing collagen type molecules. The markedly altered gene expression profile observed in the ONFH of human bone tissue may provide further insight into the pathogenetic process of osteonecrotic degeneration of bone. IOS Press 2011 2011-08-15 /pmc/articles/PMC3826809/ /pubmed/21846946 http://dx.doi.org/10.3233/DMA-2011-0797 Text en Copyright © 2011 Hindawi Publishing Corporation.
spellingShingle Other
Balla, Bernadett
Pintér, Csaba
Kósa, János P.
Podani, János
Takács, István
Nagy, Zsolt
Speer, Gábor
Horváth, Balázs
Korányi, László
Lakatos, Péter
Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title_full Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title_fullStr Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title_full_unstemmed Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title_short Gene Expression Changes in Femoral Head Necrosis of Human Bone Tissue
title_sort gene expression changes in femoral head necrosis of human bone tissue
topic Other
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3826809/
https://www.ncbi.nlm.nih.gov/pubmed/21846946
http://dx.doi.org/10.3233/DMA-2011-0797
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