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Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart

Pericytes (PCs) are abundant yet remain the most enigmatic and ill-defined cell population in the heart. Here, we investigated whether PCs can be reprogrammed to aid neovascularization. Primary PCs from human and mouse hearts acquired cytoskeletal proteins typical of vascular smooth muscle cells (VS...

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Autores principales: Avolio, Elisa, Katare, Rajesh, Thomas, Anita C., Caporali, Andrea, Schwenke, Daryl, Carrabba, Michele, Meloni, Marco, Caputo, Massimo, Madeddu, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9106362/
https://www.ncbi.nlm.nih.gov/pubmed/35349488
http://dx.doi.org/10.1172/JCI152308
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author Avolio, Elisa
Katare, Rajesh
Thomas, Anita C.
Caporali, Andrea
Schwenke, Daryl
Carrabba, Michele
Meloni, Marco
Caputo, Massimo
Madeddu, Paolo
author_facet Avolio, Elisa
Katare, Rajesh
Thomas, Anita C.
Caporali, Andrea
Schwenke, Daryl
Carrabba, Michele
Meloni, Marco
Caputo, Massimo
Madeddu, Paolo
author_sort Avolio, Elisa
collection PubMed
description Pericytes (PCs) are abundant yet remain the most enigmatic and ill-defined cell population in the heart. Here, we investigated whether PCs can be reprogrammed to aid neovascularization. Primary PCs from human and mouse hearts acquired cytoskeletal proteins typical of vascular smooth muscle cells (VSMCs) upon exclusion of EGF/bFGF, which signal through ERK1/2, or upon exposure to the MEK inhibitor PD0325901. Differentiated PCs became more proangiogenic, more responsive to vasoactive agents, and insensitive to chemoattractants. RNA sequencing revealed transcripts marking the PD0325901-induced transition into proangiogenic, stationary VSMC-like cells, including the unique expression of 2 angiogenesis-related markers, aquaporin 1 (AQP1) and cellular retinoic acid–binding protein 2 (CRABP2), which were further verified at the protein level. This enabled us to trace PCs during in vivo studies. In mice, implantation of Matrigel plugs containing human PCs plus PD0325901 promoted the formation of αSMA(+) neovessels compared with PC only. Two-week oral administration of PD0325901 to mice increased the heart arteriolar density, total vascular area, arteriole coverage by PDGFRβ(+)AQP1(+)CRABP2(+) PCs, and myocardial perfusion. Short-duration PD0325901 treatment of mice after myocardial infarction enhanced the peri-infarct vascularization, reduced the scar, and improved systolic function. In conclusion, myocardial PCs have intrinsic plasticity that can be pharmacologically modulated to promote reparative vascularization of the ischemic heart.
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spelling pubmed-91063622022-05-18 Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart Avolio, Elisa Katare, Rajesh Thomas, Anita C. Caporali, Andrea Schwenke, Daryl Carrabba, Michele Meloni, Marco Caputo, Massimo Madeddu, Paolo J Clin Invest Research Article Pericytes (PCs) are abundant yet remain the most enigmatic and ill-defined cell population in the heart. Here, we investigated whether PCs can be reprogrammed to aid neovascularization. Primary PCs from human and mouse hearts acquired cytoskeletal proteins typical of vascular smooth muscle cells (VSMCs) upon exclusion of EGF/bFGF, which signal through ERK1/2, or upon exposure to the MEK inhibitor PD0325901. Differentiated PCs became more proangiogenic, more responsive to vasoactive agents, and insensitive to chemoattractants. RNA sequencing revealed transcripts marking the PD0325901-induced transition into proangiogenic, stationary VSMC-like cells, including the unique expression of 2 angiogenesis-related markers, aquaporin 1 (AQP1) and cellular retinoic acid–binding protein 2 (CRABP2), which were further verified at the protein level. This enabled us to trace PCs during in vivo studies. In mice, implantation of Matrigel plugs containing human PCs plus PD0325901 promoted the formation of αSMA(+) neovessels compared with PC only. Two-week oral administration of PD0325901 to mice increased the heart arteriolar density, total vascular area, arteriole coverage by PDGFRβ(+)AQP1(+)CRABP2(+) PCs, and myocardial perfusion. Short-duration PD0325901 treatment of mice after myocardial infarction enhanced the peri-infarct vascularization, reduced the scar, and improved systolic function. In conclusion, myocardial PCs have intrinsic plasticity that can be pharmacologically modulated to promote reparative vascularization of the ischemic heart. American Society for Clinical Investigation 2022-05-16 2022-05-16 /pmc/articles/PMC9106362/ /pubmed/35349488 http://dx.doi.org/10.1172/JCI152308 Text en © 2022 Avolio et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Avolio, Elisa
Katare, Rajesh
Thomas, Anita C.
Caporali, Andrea
Schwenke, Daryl
Carrabba, Michele
Meloni, Marco
Caputo, Massimo
Madeddu, Paolo
Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title_full Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title_fullStr Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title_full_unstemmed Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title_short Cardiac pericyte reprogramming by MEK inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
title_sort cardiac pericyte reprogramming by mek inhibition promotes arteriologenesis and angiogenesis of the ischemic heart
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9106362/
https://www.ncbi.nlm.nih.gov/pubmed/35349488
http://dx.doi.org/10.1172/JCI152308
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