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Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review

Mitochondria play a crucial role in cell physiology and pathophysiology. In this context, mitochondrial dynamics and, subsequently, mitochondrial ultrastructure have increasingly become hot topics in modern research, with a focus on mitochondrial fission and fusion. Thus, the dynamics of mitochondri...

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Autores principales: Mendelsohn, Daniel H., Schnabel, Katja, Mamilos, Andreas, Sossalla, Samuel, Pabel, Steffen, Duerr, Georg Daniel, Keller, Karsten, Schmitt, Volker H., Barsch, Friedrich, Walter, Nike, Wong, Ronald Man Yeung, El Khassawna, Thaqif, Niedermair, Tanja, Alt, Volker, Rupp, Markus, Brochhausen, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101187/
https://www.ncbi.nlm.nih.gov/pubmed/35562962
http://dx.doi.org/10.3390/ijms23094571
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author Mendelsohn, Daniel H.
Schnabel, Katja
Mamilos, Andreas
Sossalla, Samuel
Pabel, Steffen
Duerr, Georg Daniel
Keller, Karsten
Schmitt, Volker H.
Barsch, Friedrich
Walter, Nike
Wong, Ronald Man Yeung
El Khassawna, Thaqif
Niedermair, Tanja
Alt, Volker
Rupp, Markus
Brochhausen, Christoph
author_facet Mendelsohn, Daniel H.
Schnabel, Katja
Mamilos, Andreas
Sossalla, Samuel
Pabel, Steffen
Duerr, Georg Daniel
Keller, Karsten
Schmitt, Volker H.
Barsch, Friedrich
Walter, Nike
Wong, Ronald Man Yeung
El Khassawna, Thaqif
Niedermair, Tanja
Alt, Volker
Rupp, Markus
Brochhausen, Christoph
author_sort Mendelsohn, Daniel H.
collection PubMed
description Mitochondria play a crucial role in cell physiology and pathophysiology. In this context, mitochondrial dynamics and, subsequently, mitochondrial ultrastructure have increasingly become hot topics in modern research, with a focus on mitochondrial fission and fusion. Thus, the dynamics of mitochondria in several diseases have been intensively investigated, especially with a view to developing new promising treatment options. However, the majority of recent studies are performed in highly energy-dependent tissues, such as cardiac, hepatic, and neuronal tissues. In contrast, publications on mitochondrial dynamics from the orthopedic or trauma fields are quite rare, even if there are common cellular mechanisms in cardiovascular and bone tissue, especially regarding bone infection. The present report summarizes the spectrum of mitochondrial alterations in the cardiovascular system and compares it to the state of knowledge in the musculoskeletal system. The present paper summarizes recent knowledge regarding mitochondrial dynamics and gives a short, but not exhaustive, overview of its regulation via fission and fusion. Furthermore, the article highlights hypoxia and its accompanying increased mitochondrial fission as a possible link between cardiac ischemia and inflammatory diseases of the bone, such as osteomyelitis. This opens new innovative perspectives not only for the understanding of cellular pathomechanisms in osteomyelitis but also for potential new treatment options.
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spelling pubmed-91011872022-05-14 Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review Mendelsohn, Daniel H. Schnabel, Katja Mamilos, Andreas Sossalla, Samuel Pabel, Steffen Duerr, Georg Daniel Keller, Karsten Schmitt, Volker H. Barsch, Friedrich Walter, Nike Wong, Ronald Man Yeung El Khassawna, Thaqif Niedermair, Tanja Alt, Volker Rupp, Markus Brochhausen, Christoph Int J Mol Sci Review Mitochondria play a crucial role in cell physiology and pathophysiology. In this context, mitochondrial dynamics and, subsequently, mitochondrial ultrastructure have increasingly become hot topics in modern research, with a focus on mitochondrial fission and fusion. Thus, the dynamics of mitochondria in several diseases have been intensively investigated, especially with a view to developing new promising treatment options. However, the majority of recent studies are performed in highly energy-dependent tissues, such as cardiac, hepatic, and neuronal tissues. In contrast, publications on mitochondrial dynamics from the orthopedic or trauma fields are quite rare, even if there are common cellular mechanisms in cardiovascular and bone tissue, especially regarding bone infection. The present report summarizes the spectrum of mitochondrial alterations in the cardiovascular system and compares it to the state of knowledge in the musculoskeletal system. The present paper summarizes recent knowledge regarding mitochondrial dynamics and gives a short, but not exhaustive, overview of its regulation via fission and fusion. Furthermore, the article highlights hypoxia and its accompanying increased mitochondrial fission as a possible link between cardiac ischemia and inflammatory diseases of the bone, such as osteomyelitis. This opens new innovative perspectives not only for the understanding of cellular pathomechanisms in osteomyelitis but also for potential new treatment options. MDPI 2022-04-20 /pmc/articles/PMC9101187/ /pubmed/35562962 http://dx.doi.org/10.3390/ijms23094571 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 Review
Mendelsohn, Daniel H.
Schnabel, Katja
Mamilos, Andreas
Sossalla, Samuel
Pabel, Steffen
Duerr, Georg Daniel
Keller, Karsten
Schmitt, Volker H.
Barsch, Friedrich
Walter, Nike
Wong, Ronald Man Yeung
El Khassawna, Thaqif
Niedermair, Tanja
Alt, Volker
Rupp, Markus
Brochhausen, Christoph
Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title_full Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title_fullStr Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title_full_unstemmed Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title_short Structural Analysis of Mitochondrial Dynamics—From Cardiomyocytes to Osteoblasts: A Critical Review
title_sort structural analysis of mitochondrial dynamics—from cardiomyocytes to osteoblasts: a critical review
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101187/
https://www.ncbi.nlm.nih.gov/pubmed/35562962
http://dx.doi.org/10.3390/ijms23094571
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