Completed Heart, Stroke & Blood Lungs & Breathing

Defining the role of the immune response in hypertrophic cardiomyopathy

In plain English

AI plain-English summary

A faulty immune response drives scarring in the heart muscle of people with hypertrophic cardiomyopathy (HCM), the most common inherited heart condition. Current treatments target the genetic mutations that cause HCM, but they cannot reverse the stiff, scarred heart muscle that develops over time. This fibrosis is the main reason people with HCM develop heart failure, yet its causes remain poorly understood. The researchers have discovered that immune cells accumulate in the hearts of HCM patients, and that removing the adaptive immune system in mice makes scarring worse—suggesting the immune response is protective, not harmful. This project will identify which specific immune components drive or limit fibrosis, using mouse models, human heart tissue, and large-scale genetic analysis. If successful, it could reveal entirely new drug targets for HCM—treatments that modify the immune environment in the heart to prevent or reverse scarring, rather than only addressing the initial genetic defect. This would be a fundamental shift in how established HCM is managed, potentially delaying or preventing heart failure in thousands of patients.

View original technical description
The primary biophysical consequences of the myofilament mutations that cause hypertrophic cardiomyopathy (HCM) are increasingly understood, as are the final common pathways of cardiomyocyte dysfunction. This has led to ongoing trials of novel treatments. However, major secondary changes, most notably fibrosis, occur in the non-myocyte compartment that will limit treatment efficacy in established disease. We have shown that there is metabolic crosstalk between stressed cardiomyocytes and neighbouring cells, and our preliminary data indicate that this, and other aspects of remodelling, are mediated, at least in part, by cells of the immune system that accumulate in HCM myocardium. We have shown that ablation of the adaptive immune system markedly worsens remodelling in a well-validated HCM mouse model. We hypothesise that local cardiac immune activity, both acquired and innate, plays an essential and dynamic role in HCM with, as is typical in immunity, a balance of deleterious and protective effects. We will test this by identifying the role of specific immune components in the progression of HCM using reductionist experiments in HCM mouse models, studies in affected human myocardium and large-scale human genetic interrogation. Identification of the immune activity involved will inform novel disease-modifying therapy for established disease.

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Researchers

Hugh Watkins (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Mechanistic insights into the potential reversal of Hypertrophic Cardiomyopathy
Characterisation of novel cardiac troponin I mutants associated with human hypertrophic cardiomyopathy
Defining therapeutic targets in hypertrophic cardiomyopathy (renewal)
The BHF Jacqueline Murray Coomber Fellowship: Structural basis of hypertrophic cardiomyopathy caused by mutations in cardiac myosin and myosin-binding protein-C
Mechanisms by which missense variants in myosin and myosin binding protein C alter cellular contractility in genetic cardiomyopathies.

Original classification

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