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A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research

Suitable and reproducible experimental models of translational research in reconstructive surgery that allow in-vivo investigation of diverse molecular and cellular mechanisms are still limited. To this end we created a novel murine model of acute hindlimb ischemia-reperfusion to mimic a microsurgic...

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Autores principales: Sönmez, Tolga Taha, Al-Sawaf, Othman, Brandacher, Gerald, Kanzler, Isabella, Tuchscheerer, Nancy, Tohidnezhad, Mersedeh, Kanatas, Anastasios, Knobe, Matthias, Fragoulis, Athanassios, Tolba, René, Mitchell, David, Pufe, Thomas, Wruck, Christoph Jan, Hölzle, Frank, Liehn, Elisa Anamaria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688775/
https://www.ncbi.nlm.nih.gov/pubmed/23840492
http://dx.doi.org/10.1371/journal.pone.0066498
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author Sönmez, Tolga Taha
Al-Sawaf, Othman
Brandacher, Gerald
Kanzler, Isabella
Tuchscheerer, Nancy
Tohidnezhad, Mersedeh
Kanatas, Anastasios
Knobe, Matthias
Fragoulis, Athanassios
Tolba, René
Mitchell, David
Pufe, Thomas
Wruck, Christoph Jan
Hölzle, Frank
Liehn, Elisa Anamaria
author_facet Sönmez, Tolga Taha
Al-Sawaf, Othman
Brandacher, Gerald
Kanzler, Isabella
Tuchscheerer, Nancy
Tohidnezhad, Mersedeh
Kanatas, Anastasios
Knobe, Matthias
Fragoulis, Athanassios
Tolba, René
Mitchell, David
Pufe, Thomas
Wruck, Christoph Jan
Hölzle, Frank
Liehn, Elisa Anamaria
author_sort Sönmez, Tolga Taha
collection PubMed
description Suitable and reproducible experimental models of translational research in reconstructive surgery that allow in-vivo investigation of diverse molecular and cellular mechanisms are still limited. To this end we created a novel murine model of acute hindlimb ischemia-reperfusion to mimic a microsurgical free flap procedure. Thirty-six C57BL6 mice (n = 6/group) were assigned to one control and five experimental groups (subject to 6, 12, 96, 120 hours and 14 days of reperfusion, respectively) following 4 hours of complete hindlimb ischemia. Ischemia and reperfusion were monitored using Laser-Doppler Flowmetry. Hindlimb tissue components (skin and muscle) were investigated using histopathology, quantitative immunohistochemistry and immunofluorescence. Despite massive initial tissue damage induced by ischemia-reperfusion injury, the structure of the skin component was restored after 96 hours. During the same time, muscle cells were replaced by young myotubes. In addition, initial neuromuscular dysfunction, edema and swelling resolved by day 4. After two weeks, no functional or neuromuscular deficits were detectable. Furthermore, upregulation of VEGF and tissue infiltration with CD34-positive stem cells led to new capillary formation, which peaked with significantly higher values after two weeks. These data indicate that our model is suitable to investigate cellular and molecular tissue alterations from ischemia-reperfusion such as occur during free flap procedures.
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spelling pubmed-36887752013-07-09 A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research Sönmez, Tolga Taha Al-Sawaf, Othman Brandacher, Gerald Kanzler, Isabella Tuchscheerer, Nancy Tohidnezhad, Mersedeh Kanatas, Anastasios Knobe, Matthias Fragoulis, Athanassios Tolba, René Mitchell, David Pufe, Thomas Wruck, Christoph Jan Hölzle, Frank Liehn, Elisa Anamaria PLoS One Research Article Suitable and reproducible experimental models of translational research in reconstructive surgery that allow in-vivo investigation of diverse molecular and cellular mechanisms are still limited. To this end we created a novel murine model of acute hindlimb ischemia-reperfusion to mimic a microsurgical free flap procedure. Thirty-six C57BL6 mice (n = 6/group) were assigned to one control and five experimental groups (subject to 6, 12, 96, 120 hours and 14 days of reperfusion, respectively) following 4 hours of complete hindlimb ischemia. Ischemia and reperfusion were monitored using Laser-Doppler Flowmetry. Hindlimb tissue components (skin and muscle) were investigated using histopathology, quantitative immunohistochemistry and immunofluorescence. Despite massive initial tissue damage induced by ischemia-reperfusion injury, the structure of the skin component was restored after 96 hours. During the same time, muscle cells were replaced by young myotubes. In addition, initial neuromuscular dysfunction, edema and swelling resolved by day 4. After two weeks, no functional or neuromuscular deficits were detectable. Furthermore, upregulation of VEGF and tissue infiltration with CD34-positive stem cells led to new capillary formation, which peaked with significantly higher values after two weeks. These data indicate that our model is suitable to investigate cellular and molecular tissue alterations from ischemia-reperfusion such as occur during free flap procedures. Public Library of Science 2013-06-20 /pmc/articles/PMC3688775/ /pubmed/23840492 http://dx.doi.org/10.1371/journal.pone.0066498 Text en © 2013 Sönmez et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sönmez, Tolga Taha
Al-Sawaf, Othman
Brandacher, Gerald
Kanzler, Isabella
Tuchscheerer, Nancy
Tohidnezhad, Mersedeh
Kanatas, Anastasios
Knobe, Matthias
Fragoulis, Athanassios
Tolba, René
Mitchell, David
Pufe, Thomas
Wruck, Christoph Jan
Hölzle, Frank
Liehn, Elisa Anamaria
A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title_full A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title_fullStr A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title_full_unstemmed A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title_short A Novel Laser-Doppler Flowmetry Assisted Murine Model of Acute Hindlimb Ischemia-Reperfusion for Free Flap Research
title_sort novel laser-doppler flowmetry assisted murine model of acute hindlimb ischemia-reperfusion for free flap research
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688775/
https://www.ncbi.nlm.nih.gov/pubmed/23840492
http://dx.doi.org/10.1371/journal.pone.0066498
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