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Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes

Patients with diabetes suffer from poor fracture healing. Molecular reasons are not fully understood and our previous gene expression microarray analyses of regenerating bones from mice with type 2 diabetes (db(−)/db(−)) revealed accelerated activation of pathways concerning matrix metalloproteases...

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Autores principales: Wagner, Johannes Maximilian, Reinkemeier, Felix, Wallner, Christoph, Dadras, Mehran, Dittfeld, Stephanie, Drysch, Marius, Sogorski, Alexander, von Glinski, Maxi, Lehnhardt, Marcus, Behr, Björn, Becerikli, Mustafa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879894/
https://www.ncbi.nlm.nih.gov/pubmed/35207422
http://dx.doi.org/10.3390/life12020134
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author Wagner, Johannes Maximilian
Reinkemeier, Felix
Wallner, Christoph
Dadras, Mehran
Dittfeld, Stephanie
Drysch, Marius
Sogorski, Alexander
von Glinski, Maxi
Lehnhardt, Marcus
Behr, Björn
Becerikli, Mustafa
author_facet Wagner, Johannes Maximilian
Reinkemeier, Felix
Wallner, Christoph
Dadras, Mehran
Dittfeld, Stephanie
Drysch, Marius
Sogorski, Alexander
von Glinski, Maxi
Lehnhardt, Marcus
Behr, Björn
Becerikli, Mustafa
author_sort Wagner, Johannes Maximilian
collection PubMed
description Patients with diabetes suffer from poor fracture healing. Molecular reasons are not fully understood and our previous gene expression microarray analyses of regenerating bones from mice with type 2 diabetes (db(−)/db(−)) revealed accelerated activation of pathways concerning matrix metalloproteases (MMPs). Thus, we picked out the pathological MMP acceleration as a target for profound gene expression analyses and additional therapeutic intervention in the present study. In the first part, gene expression of ECM degrading proteinases and inhibitors was investigated three and seven days postoperatively. Mmp3, Mmp9, Mmp13 and gene expression of MMP inhibitor Timp2 was significantly higher in regenerating bone fractures of db(−)/db(−) compared to wild type animals. Timp1 and metalloproteinase AdamTS4 showed no differences. In the second part, we locally applied a single dose (1 µL of 5 µM solution) of the broad-spectrum molecular MMP inhibitor Marimastat on tibial defects in db(−)/db(−). We performed immunohistochemical and histological stainings seven days post operation. Impaired bone healing, collagen content, angiogenesis, and osteoclast invasion in db(−)/db(−) were restored significantly by application of Marimastat compared to PBS controls (n = 7/group). Hence, local intervention of bone defects by the molecular MMP inhibitor Marimastat might be an alternative therapeutic intervention for bone healing in diabetes.
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spelling pubmed-88798942022-02-26 Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes Wagner, Johannes Maximilian Reinkemeier, Felix Wallner, Christoph Dadras, Mehran Dittfeld, Stephanie Drysch, Marius Sogorski, Alexander von Glinski, Maxi Lehnhardt, Marcus Behr, Björn Becerikli, Mustafa Life (Basel) Article Patients with diabetes suffer from poor fracture healing. Molecular reasons are not fully understood and our previous gene expression microarray analyses of regenerating bones from mice with type 2 diabetes (db(−)/db(−)) revealed accelerated activation of pathways concerning matrix metalloproteases (MMPs). Thus, we picked out the pathological MMP acceleration as a target for profound gene expression analyses and additional therapeutic intervention in the present study. In the first part, gene expression of ECM degrading proteinases and inhibitors was investigated three and seven days postoperatively. Mmp3, Mmp9, Mmp13 and gene expression of MMP inhibitor Timp2 was significantly higher in regenerating bone fractures of db(−)/db(−) compared to wild type animals. Timp1 and metalloproteinase AdamTS4 showed no differences. In the second part, we locally applied a single dose (1 µL of 5 µM solution) of the broad-spectrum molecular MMP inhibitor Marimastat on tibial defects in db(−)/db(−). We performed immunohistochemical and histological stainings seven days post operation. Impaired bone healing, collagen content, angiogenesis, and osteoclast invasion in db(−)/db(−) were restored significantly by application of Marimastat compared to PBS controls (n = 7/group). Hence, local intervention of bone defects by the molecular MMP inhibitor Marimastat might be an alternative therapeutic intervention for bone healing in diabetes. MDPI 2022-01-18 /pmc/articles/PMC8879894/ /pubmed/35207422 http://dx.doi.org/10.3390/life12020134 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wagner, Johannes Maximilian
Reinkemeier, Felix
Wallner, Christoph
Dadras, Mehran
Dittfeld, Stephanie
Drysch, Marius
Sogorski, Alexander
von Glinski, Maxi
Lehnhardt, Marcus
Behr, Björn
Becerikli, Mustafa
Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title_full Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title_fullStr Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title_full_unstemmed Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title_short Inhibition of Pathological Increased Matrix Metalloproteinase (MMP) Activity for Improvement of Bone Regeneration in Diabetes
title_sort inhibition of pathological increased matrix metalloproteinase (mmp) activity for improvement of bone regeneration in diabetes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879894/
https://www.ncbi.nlm.nih.gov/pubmed/35207422
http://dx.doi.org/10.3390/life12020134
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