Heart regeneration: beyond new muscle and vessels

Author:

Sayers Judy R1ORCID,Riley Paul R1ORCID

Affiliation:

1. Department of Physiology, Anatomy and Genetics, British Heart Foundation Oxbridge Centre of Regenerative Medicine, University of Oxford, Sherrington Building, South Parks Road, Oxford OX1 3PT, UK

Abstract

Abstract The most striking consequence of a heart attack is the loss of billions of heart muscle cells, alongside damage to the associated vasculature. The lost cardiovascular tissue is replaced by scar formation, which is non-functional and results in pathological remodelling of the heart and ultimately heart failure. It is, therefore, unsurprising that the heart regeneration field has centred efforts to generate new muscle and blood vessels through targeting cardiomyocyte proliferation and angiogenesis following injury. However, combined insights from embryological studies and regenerative models, alongside the adoption of -omics technology, highlight the extensive heterogeneity of cell types within the forming or re-forming heart and the significant crosstalk arising from non-muscle and non-vessel cells. In this review, we focus on the roles of fibroblasts, immune, conduction system, and nervous system cell populations during heart development and we consider the latest evidence supporting a function for these diverse lineages in contributing to regeneration following heart injury. We suggest that the emerging picture of neurologically, immunologically, and electrically coupled cell function calls for a wider-ranging combinatorial approach to heart regeneration.

Funder

Medical Research Council 4-year PhD Studentship

British Heart Foundation Personal Chair Award

BioRender.com

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Reference155 articles.

1. Development of the cardiac conduction system;Bhattacharyya;Cold Spring Harb Perspect Biol,2020

2. Autonomic innervation of the developing heart: origins and function;Hildreth;Clin Anat,2009

3. Recent advancements in understanding endogenous heart regeneration—insights from adult zebrafish and neonatal mice;Rubin;Semin Cell Dev Biol,2016

4. Polyploidy in cardiomyocytes: roadblock to heart regeneration?;Derks;Circ Res,2020

5. Coronary artery development: progenitor cells and differentiation pathways;Sharma;Annu Rev Physiol,2017

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