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Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction

AIMS: Bone marrow (BM)-derived endothelial progenitor cells (EPCs) in the circulation replace damaged vascular endothelium. We assessed the hypothesis that a BM transplant from healthy animals would restore normal arterial endothelium and prevent hypertension in young endothelial nitric oxide syntha...

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Autores principales: Perry, Tashera E., Song, Minjung, Despres, Daryl J., Kim, Soo Mi, San, Hong, Yu, Zu-Xi, Raghavachari, Nalini, Schnermann, Jurgen, Cannon, Richard O., Orlic, Donald
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2761200/
https://www.ncbi.nlm.nih.gov/pubmed/19578071
http://dx.doi.org/10.1093/cvr/cvp215
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author Perry, Tashera E.
Song, Minjung
Despres, Daryl J.
Kim, Soo Mi
San, Hong
Yu, Zu-Xi
Raghavachari, Nalini
Schnermann, Jurgen
Cannon, Richard O.
Orlic, Donald
author_facet Perry, Tashera E.
Song, Minjung
Despres, Daryl J.
Kim, Soo Mi
San, Hong
Yu, Zu-Xi
Raghavachari, Nalini
Schnermann, Jurgen
Cannon, Richard O.
Orlic, Donald
author_sort Perry, Tashera E.
collection PubMed
description AIMS: Bone marrow (BM)-derived endothelial progenitor cells (EPCs) in the circulation replace damaged vascular endothelium. We assessed the hypothesis that a BM transplant from healthy animals would restore normal arterial endothelium and prevent hypertension in young endothelial nitric oxide synthase-deficient (eNOS(−/−)) mice. METHODS AND RESULTS: Radiation or busulfan-induced BM ablation in eNOS(−/−) mice on day 6, day 14, or day 28 was followed by a BM transplant consisting of enhanced green fluorescent protein positive (EGFP(+)) cells from C57BL/6J mice. Peripheral blood cell chimerism was always greater than 85% at 4 months after BM transplant. Molecular assays of heart, kidney, and liver revealed low-level chimerism in all treatment groups, consistent with residual circulating EGFP(+) blood cells. When aorta, coronary, renal, hepatic, and splenic arteries in BM-transplanted eNOS(−/−) mice were examined by confocal microscopy, there were no EGFP- or eNOS-positive endothelial cells detected in these vessels in any of the treatment groups. Likewise, telemetry did not detect any reduction in blood pressure. Thus, no differences were observed in our measurements using several different treatment protocols. CONCLUSION: We found no evidence for BM-derived EPC renewal of endothelium in this eNOS-deficient mouse model of a chronic vascular disease or in wild-type mice during postnatal growth. Hence, renewal of chronic dysfunctional endothelium and endothelial homeostasis may be dependent on resident vascular progenitor cells.
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spelling pubmed-27612002009-10-15 Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction Perry, Tashera E. Song, Minjung Despres, Daryl J. Kim, Soo Mi San, Hong Yu, Zu-Xi Raghavachari, Nalini Schnermann, Jurgen Cannon, Richard O. Orlic, Donald Cardiovasc Res Original Articles AIMS: Bone marrow (BM)-derived endothelial progenitor cells (EPCs) in the circulation replace damaged vascular endothelium. We assessed the hypothesis that a BM transplant from healthy animals would restore normal arterial endothelium and prevent hypertension in young endothelial nitric oxide synthase-deficient (eNOS(−/−)) mice. METHODS AND RESULTS: Radiation or busulfan-induced BM ablation in eNOS(−/−) mice on day 6, day 14, or day 28 was followed by a BM transplant consisting of enhanced green fluorescent protein positive (EGFP(+)) cells from C57BL/6J mice. Peripheral blood cell chimerism was always greater than 85% at 4 months after BM transplant. Molecular assays of heart, kidney, and liver revealed low-level chimerism in all treatment groups, consistent with residual circulating EGFP(+) blood cells. When aorta, coronary, renal, hepatic, and splenic arteries in BM-transplanted eNOS(−/−) mice were examined by confocal microscopy, there were no EGFP- or eNOS-positive endothelial cells detected in these vessels in any of the treatment groups. Likewise, telemetry did not detect any reduction in blood pressure. Thus, no differences were observed in our measurements using several different treatment protocols. CONCLUSION: We found no evidence for BM-derived EPC renewal of endothelium in this eNOS-deficient mouse model of a chronic vascular disease or in wild-type mice during postnatal growth. Hence, renewal of chronic dysfunctional endothelium and endothelial homeostasis may be dependent on resident vascular progenitor cells. Oxford University Press 2009-11-01 2009-07-03 /pmc/articles/PMC2761200/ /pubmed/19578071 http://dx.doi.org/10.1093/cvr/cvp215 Text en Published on behalf of the European Society of Cardiology. All rights reserved. © The Author 2009. For permissions please email: journals.permissions@oxfordjournals.org. http://creativecommons.org/licenses/by-nc/2.0/uk/ The online version of this article has been published under an open access model. Users are entitled to use, reproduce, disseminate, or display the open access version of this article for non-commercial purposes provided that the original authorship is properly and fully attributed; the Journal, Learned Society and Oxford University Press are attributed as the original place of publication with correct citation details given; if an article is subsequently reproduced or disseminated not in its entirety but only in part or as a derivative work this must be clearly indicated. For commercial re-use, please contact journals.permissions@oxfordjournals.org.
spellingShingle Original Articles
Perry, Tashera E.
Song, Minjung
Despres, Daryl J.
Kim, Soo Mi
San, Hong
Yu, Zu-Xi
Raghavachari, Nalini
Schnermann, Jurgen
Cannon, Richard O.
Orlic, Donald
Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title_full Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title_fullStr Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title_full_unstemmed Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title_short Bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
title_sort bone marrow-derived cells do not repair endothelium in a mouse model of chronic endothelial cell dysfunction
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2761200/
https://www.ncbi.nlm.nih.gov/pubmed/19578071
http://dx.doi.org/10.1093/cvr/cvp215
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