| Literature DB >> 33514846 |
Bas Molenaar1, Louk T Timmer1, Marjolein Droog1, Ilaria Perini1, Danielle Versteeg1,2, Lieneke Kooijman1, Jantine Monshouwer-Kloots1, Hesther de Ruiter1, Monika M Gladka1, Eva van Rooij3,4.
Abstract
The efficiency of the repair process following ischemic cardiac injury is a crucial determinant for the progression into heart failure and is controlled by both intra- and intercellular signaling within the heart. An enhanced understanding of this complex interplay will enable better exploitation of these mechanisms for therapeutic use. We used single-cell transcriptomics to collect gene expression data of all main cardiac cell types at different time-points after ischemic injury. These data unveiled cellular and transcriptional heterogeneity and changes in cellular function during cardiac remodeling. Furthermore, we established potential intercellular communication networks after ischemic injury. Follow up experiments confirmed that cardiomyocytes express and secrete elevated levels of beta-2 microglobulin in response to ischemic damage, which can activate fibroblasts in a paracrine manner. Collectively, our data indicate phase-specific changes in cellular heterogeneity during different stages of cardiac remodeling and allow for the identification of therapeutic targets relevant for cardiac repair.Entities:
Year: 2021 PMID: 33514846 PMCID: PMC7846780 DOI: 10.1038/s42003-020-01636-3
Source DB: PubMed Journal: Commun Biol ISSN: 2399-3642