Key result
Single-cell and spatial genomics reveal post-MI remodeling mechanisms to identify novel HF therapeutic targets.
Why the study?
Targeted therapies for cardiac remodeling and fibrosis after myocardial infarction are lacking, and conventional single-cell and genomic technologies lack critical spatial information.
Spatial genomic technologies address the limitations of traditional single-cell methods by preserving tissue architecture, offering new avenues for personalized heart failure therapies.
Spatial genomics may refine post-MI remodeling targets; leaves open clinical translation to heart failure therapies.
Ischemic heart disease including myocardial infarction is still the leading cause of death worldwide. Although the survival early after myocardial infarction has been significantly improved by the introduction of percutaneous coronary intervention, long-term morbidity and mortality remain high. The elevated long-term mortality is mainly driven by cardiac remodeling processes triggering ischemic heart failure and electric instability. Despite the new developments in pharmaco-therapy of heart failure, we still lack targeted therapies for cardiac remodeling and fibrosis. Single-cell and genomic technologies allow us to map the human heart at unprecedented resolution and allow to gain insights into cellular and molecular heterogeneity. However, these technologies rely on digested tissue and isolated cells or nuclei and thus lack spatial information. Spatial information is critical to understand tissue homeostasis and disease and can be utilized to identify disease-driving cell populations and mechanisms including cellular cross-talk. Here, we discuss recent advances in single-cell and spatial genomic technologies that give insights into cellular and molecular mechanisms of cardiac remodeling after injury and can be utilized to identify novel therapeutic targets and pave the way toward new therapies in heart failure.
No takes yet. Share an insight, caveat, or question.
Schumacher et al. (2022) conducted a review in Myocardial infarction. Single-cell and spatial genomic technologies was evaluated. Single-cell and spatial genomic technologies provide insights into cellular mechanisms of cardiac remodeling after myocardial infarction, helping identify novel therapeutic targets for heart failure.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: