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Bone marrow-derived cell regulation of skeletal muscle regeneration

Limb regeneration requires the coordination of multiple stem cell populations to recapitulate the process of tissue formation. Therefore, bone marrow (BM) -derived cell regulation of skeletal muscle regeneration was examined in mice lacking the CC chemokine receptor 2 (CCR2). Myofiber size, numbers...

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Autores principales: Sun, Dongxu, Martinez, Carlo O., Ochoa, Oscar, Ruiz-Willhite, Lourdes, Bonilla, Jose R., Centonze, Victoria E., Waite, Lindsay L., Michalek, Joel E., McManus, Linda M., Shireman, Paula K.
Formato: Texto
Lenguaje:English
Publicado: The Federation of American Societies for Experimental Biology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2630778/
https://www.ncbi.nlm.nih.gov/pubmed/18827026
http://dx.doi.org/10.1096/fj.07-095901
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author Sun, Dongxu
Martinez, Carlo O.
Ochoa, Oscar
Ruiz-Willhite, Lourdes
Bonilla, Jose R.
Centonze, Victoria E.
Waite, Lindsay L.
Michalek, Joel E.
McManus, Linda M.
Shireman, Paula K.
author_facet Sun, Dongxu
Martinez, Carlo O.
Ochoa, Oscar
Ruiz-Willhite, Lourdes
Bonilla, Jose R.
Centonze, Victoria E.
Waite, Lindsay L.
Michalek, Joel E.
McManus, Linda M.
Shireman, Paula K.
author_sort Sun, Dongxu
collection PubMed
description Limb regeneration requires the coordination of multiple stem cell populations to recapitulate the process of tissue formation. Therefore, bone marrow (BM) -derived cell regulation of skeletal muscle regeneration was examined in mice lacking the CC chemokine receptor 2 (CCR2). Myofiber size, numbers of myogenic progenitor cells (MPCs), and recruitment of BM-derived cells and macrophages were assessed after cardiotoxin-induced injury of chimeric mice produced by transplanting BM from wild-type (WT) or CCR2(−)(/)(−) mice into irradiated WT or CCR2(−)(/)(−) host mice. Regardless of the host genotype, muscle regeneration and recruitment of BM-derived cells and macrophages were similar in mice replenished with WT BM, whereas BM-derived cells and macrophage accumulation were decreased and muscle regeneration was impaired in all animals receiving CCR2(−)(/)(−) BM. Furthermore, numbers of MPCs (CD34(+)/Sca-1(−)/CD45(−) cells) were significantly increased in mice receiving CCR2(−)(/)(−) BM despite the decreased size of regenerated myofibers. Thus, the expression of CCR2 on BM-derived cells regulated macrophage recruitment into injured muscle, numbers of MPC, and the extent of regenerated myofiber size, all of which were independent of CCR2 expression on host-derived cells. Future studies in regenerative medicine must include consideration of the role of BM-derived cells, possibly macrophages, in CCR2-dependent events that regulate effective skeletal muscle regeneration.—Sun, D., Martinez, C. O., Ochoa, O., Ruiz-Willhite, L., Bonilla, J. R., Centonze, V. E., Waite, L. L., Michalek, J. E., McManus, L. M., Shireman, P. K. Bone marrow-derived cell regulation of skeletal muscle regeneration.
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spelling pubmed-26307782009-02-03 Bone marrow-derived cell regulation of skeletal muscle regeneration Sun, Dongxu Martinez, Carlo O. Ochoa, Oscar Ruiz-Willhite, Lourdes Bonilla, Jose R. Centonze, Victoria E. Waite, Lindsay L. Michalek, Joel E. McManus, Linda M. Shireman, Paula K. FASEB J Research Communications Limb regeneration requires the coordination of multiple stem cell populations to recapitulate the process of tissue formation. Therefore, bone marrow (BM) -derived cell regulation of skeletal muscle regeneration was examined in mice lacking the CC chemokine receptor 2 (CCR2). Myofiber size, numbers of myogenic progenitor cells (MPCs), and recruitment of BM-derived cells and macrophages were assessed after cardiotoxin-induced injury of chimeric mice produced by transplanting BM from wild-type (WT) or CCR2(−)(/)(−) mice into irradiated WT or CCR2(−)(/)(−) host mice. Regardless of the host genotype, muscle regeneration and recruitment of BM-derived cells and macrophages were similar in mice replenished with WT BM, whereas BM-derived cells and macrophage accumulation were decreased and muscle regeneration was impaired in all animals receiving CCR2(−)(/)(−) BM. Furthermore, numbers of MPCs (CD34(+)/Sca-1(−)/CD45(−) cells) were significantly increased in mice receiving CCR2(−)(/)(−) BM despite the decreased size of regenerated myofibers. Thus, the expression of CCR2 on BM-derived cells regulated macrophage recruitment into injured muscle, numbers of MPC, and the extent of regenerated myofiber size, all of which were independent of CCR2 expression on host-derived cells. Future studies in regenerative medicine must include consideration of the role of BM-derived cells, possibly macrophages, in CCR2-dependent events that regulate effective skeletal muscle regeneration.—Sun, D., Martinez, C. O., Ochoa, O., Ruiz-Willhite, L., Bonilla, J. R., Centonze, V. E., Waite, L. L., Michalek, J. E., McManus, L. M., Shireman, P. K. Bone marrow-derived cell regulation of skeletal muscle regeneration. The Federation of American Societies for Experimental Biology 2009-02 /pmc/articles/PMC2630778/ /pubmed/18827026 http://dx.doi.org/10.1096/fj.07-095901 Text en © 2009 The Author(s) This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/us/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Communications
Sun, Dongxu
Martinez, Carlo O.
Ochoa, Oscar
Ruiz-Willhite, Lourdes
Bonilla, Jose R.
Centonze, Victoria E.
Waite, Lindsay L.
Michalek, Joel E.
McManus, Linda M.
Shireman, Paula K.
Bone marrow-derived cell regulation of skeletal muscle regeneration
title Bone marrow-derived cell regulation of skeletal muscle regeneration
title_full Bone marrow-derived cell regulation of skeletal muscle regeneration
title_fullStr Bone marrow-derived cell regulation of skeletal muscle regeneration
title_full_unstemmed Bone marrow-derived cell regulation of skeletal muscle regeneration
title_short Bone marrow-derived cell regulation of skeletal muscle regeneration
title_sort bone marrow-derived cell regulation of skeletal muscle regeneration
topic Research Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2630778/
https://www.ncbi.nlm.nih.gov/pubmed/18827026
http://dx.doi.org/10.1096/fj.07-095901
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