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Published on: August 17, 2022
The Molecular Role of Immune Cells in Dilated Cardiomyopathy
Enping Wang1,2, Ruofan Zhou1,2, Tiange Li1,2
1Department of Cardiovascular Surgery, West China Hospital, Sichuan University, Chengdu 610041, China.
Insights
Dilated cardiomyopathy (DCM) involves immune cells in heart failure progression. Understanding immune cell roles and immunotherapy offers new treatment avenues for this severe heart condition.
Area of Science:
- Cardiology
- Immunology
- Pathophysiology
Background:
- Dilated cardiomyopathy (DCM) is a severe heart condition causing chamber dilation and impaired left ventricular contraction.
- DCM is a leading cause of heart failure and sudden cardiac death, necessitating heart transplantation.
- Etiologies of DCM are diverse, including genetic, epigenetic, infectious, autoimmune factors, and conduction abnormalities.
Purpose of the Study:
- To review recent advancements in understanding the molecular mechanisms of immune cells in DCM.
- To evaluate the effectiveness and limitations of current immunotherapy approaches for DCM.
- To identify potential optimizations for future immunotherapeutic strategies in DCM management.
Main Methods:
- Literature review focusing on molecular mechanisms of immune cells in DCM.
- Analysis of existing data on immunotherapy efficacy and challenges in DCM.
- Synthesis of current knowledge to propose future research directions.
Main Results:
- Immune cells, both resident and recruited, play critical roles in DCM pathogenesis, particularly in myocardial fibrosis and inflammation.
- Inflammatory processes orchestrated by immune cells are closely linked to DCM prognosis.
- Current immunotherapy approaches show promise but have limitations that need addressing.
Conclusions:
- Immune cell involvement is central to DCM development and progression.
- Targeting immune cell functions and regulation presents a promising therapeutic strategy for DCM.
- Further research into optimizing immunotherapies is crucial for improving DCM patient outcomes.
Abstract:
Dilated cardiomyopathy (DCM) is a rare and severe condition characterized by chamber dilation and impaired contraction of the left ventricle. It constitutes a fundamental etiology for profound heart failure and abrupt cardiac demise, rendering it a prominent clinical indication for heart transplantation (HTx) among both adult and pediatric populations. DCM arises from various etiologies, including genetic variants, epigenetic disorders, infectious insults, autoimmune diseases, and cardiac conduction abnormalities. The maintenance of cardiac function involves two distinct types of immune cells: resident immune cells and recruited immune cells. Resident immune cells play a crucial role in establishing a harmonious microenvironment within the cardiac tissue. Nevertheless, in response to injury, cardiomyocytes initiate a cytokine cascade that attracts peripheral immune cells, thus perturbing this intricate equilibrium and actively participating in the initiation and pathological remodeling of dilated cardiomyopathy (DCM), particularly during the progression of myocardial fibrosis. Additionally, immune cells assume a pivotal role in orchestrating the inflammatory processes, which are intimately linked to the prognosis of DCM. Consequently, understanding the molecular role of various immune cells and their regulation mechanisms would provide an emerging era for managing DCM. In this review, we provide a summary of the most recent advancements in our understanding of the molecular mechanisms of immune cells in DCM. Additionally, we evaluate the effectiveness and limitations of immunotherapy approaches for the treatment of DCM, with the aim of optimizing future immunotherapeutic strategies for this condition.
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