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Published on: May 16, 2020
Dilated cardiomyopathy and chronic cardiac inflammation: Pathogenesis, diagnosis and therapy
Daniel Harding1, Ming H A Chong2, Nishant Lahoti3
1Centre for Biochemical Pharmacology, William Harvey Research Institute, London, UK.
Insights
Dilated cardiomyopathy (DCM) may involve immune system dysfunction. Identifying patients with active inflammation is key for effective immunosuppressive therapy and improved outcomes in DCM.
Area of Science:
- Cardiology
- Immunology
- Pathology
Background:
- Dilated cardiomyopathy (DCM) is characterized by left ventricular dilation and dysfunction without a clear cause in up to 50% of cases.
- Current treatments manage symptoms and complications, but prognosis remains poor with high mortality.
- The potential role of immune-mediated inflammatory injury in DCM has been investigated for over 30 years.
Purpose of the Study:
- To review evidence supporting immune dysfunction in DCM, focusing on cellular immunity.
- To highlight current and experimental treatments for DCM.
- To propose a strategy for improving future immunosuppressive treatment trials.
Main Methods:
- Review of existing literature on immune responses in DCM.
- Analysis of evidence for cellular immunity's role.
- Discussion of clinical and experimental therapeutic approaches.
Main Results:
- Significant evidence suggests an abnormal adaptive immune response in DCM, despite past trial failures.
- Cellular immunity is a key area of focus in understanding DCM pathogenesis.
- Deep immunophenotyping is proposed as crucial for patient stratification.
Conclusions:
- Immune dysfunction, particularly cellular immunity, plays a significant role in DCM.
- Future immunosuppressive therapies require precise patient selection based on immunophenotype.
- Targeted therapy based on individual immune profiles may improve DCM treatment outcomes.
Abstract:
Dilated cardiomyopathy (DCM) is typically defined by left ventricular dilation and systolic dysfunction in the absence of a clear precipitant. Idiopathic disease is common; up to 50% of patients with DCM have no cause found despite imaging, genetic and biopsy assessments. Treatment remains focused on managing symptoms, reducing the risk of sudden cardiac death and ameliorating the structural and electrical complications of disease progression. In the absence of aetiology-specific treatments, the condition remains associated with a poor prognosis; mortality is approximately 40% at 10 years. The role of immune-mediated inflammatory injury in the development and progression of DCM was first proposed over 30 years ago. Despite the subsequent failures of three large clinical trials of immunosuppressive treatment (ATTACH, RENEWAL and the Myocarditis Treatment Trial), evidence for an abnormal adaptive immune response in DCM remains significant. In this review, we summarise and discuss available evidence supporting immune dysfunction in DCM, with a specific focus on cellular immunity. We also highlight current clinical and experimental treatments. We propose that the success of future immunosuppressive treatment trials in DCM will be dependent on the deep immunophenotyping of patients, to identify those with active inflammation and/or an abnormal immune response who are most likely to respond to therapy.
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