Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.

The inability of the human heart to effectively repair itself after acute ischaemic injury has driven the search for efficacious means of promoting cardiac regenerative growth. Central to this has been the emergence of cell-based strategies to stimulate and augment both myocardial regeneration and n...

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Main Authors: Riley, P, Smart, N
Format: Journal article
Language:English
Published: 2009
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author Riley, P
Smart, N
author_facet Riley, P
Smart, N
author_sort Riley, P
collection OXFORD
description The inability of the human heart to effectively repair itself after acute ischaemic injury has driven the search for efficacious means of promoting cardiac regenerative growth. Central to this has been the emergence of cell-based strategies to stimulate and augment both myocardial regeneration and neovascularization. Autologous cell transplantation of a variety of adult progenitor cells has been taken forward in clinical trials and, in parallel, investigators have begun to focus on the activation of resident cardiac cell populations as a means to stimulate endogenous repair. The latter approach depends on characterizing native progenitors with self-renewal, clonality, multipotency and arguably an analogous embryological counterpart. Recently, we have focused on adult EPDCs (epicardium-derived progenitor cells), which, when induced by the actin monomer-binding protein Tbeta4 (thymosin beta4), are able to revert to their embryonic phenotype and give rise to endothelial cells and vascular smooth muscle cells ex vivo. Studies are ongoing to determine whether activated adult EPDCs can contribute to bona fide neovascularization in the injured adult mammalian heart proper, as a therapeutic means to support surviving cardiac muscle cells and sustain regenerating myocardium.
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spelling oxford-uuid:920fcdc1-62da-43d0-8d5b-36c34335e0702022-03-26T23:22:57ZThymosin beta4 induces epicardium-derived neovascularization in the adult heart.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:920fcdc1-62da-43d0-8d5b-36c34335e070EnglishSymplectic Elements at Oxford2009Riley, PSmart, NThe inability of the human heart to effectively repair itself after acute ischaemic injury has driven the search for efficacious means of promoting cardiac regenerative growth. Central to this has been the emergence of cell-based strategies to stimulate and augment both myocardial regeneration and neovascularization. Autologous cell transplantation of a variety of adult progenitor cells has been taken forward in clinical trials and, in parallel, investigators have begun to focus on the activation of resident cardiac cell populations as a means to stimulate endogenous repair. The latter approach depends on characterizing native progenitors with self-renewal, clonality, multipotency and arguably an analogous embryological counterpart. Recently, we have focused on adult EPDCs (epicardium-derived progenitor cells), which, when induced by the actin monomer-binding protein Tbeta4 (thymosin beta4), are able to revert to their embryonic phenotype and give rise to endothelial cells and vascular smooth muscle cells ex vivo. Studies are ongoing to determine whether activated adult EPDCs can contribute to bona fide neovascularization in the injured adult mammalian heart proper, as a therapeutic means to support surviving cardiac muscle cells and sustain regenerating myocardium.
spellingShingle Riley, P
Smart, N
Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title_full Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title_fullStr Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title_full_unstemmed Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title_short Thymosin beta4 induces epicardium-derived neovascularization in the adult heart.
title_sort thymosin beta4 induces epicardium derived neovascularization in the adult heart
work_keys_str_mv AT rileyp thymosinbeta4inducesepicardiumderivedneovascularizationintheadultheart
AT smartn thymosinbeta4inducesepicardiumderivedneovascularizationintheadultheart