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Neuroimmune axis of cardiovascular control: mechanisms and therapeutic implications
1Department of Molecular Medicine, Sapienza University, Rome, Italy. daniela.carnevale@neuromed.it.
Insights
Cardiovascular diseases (CVDs) involve immune and inflammatory processes. Targeting the nervous system
Area of Science:
- Cardiovascular medicine
- Neuroimmunology
- Inflammation research
Background:
- Cardiovascular diseases (CVDs) are a leading cause of disability and death globally.
- While prevention has reduced acute events, chronic consequences of risk factors persist, indicating unmet therapeutic needs.
- Emerging evidence highlights the role of immune dysregulation and inflammation in CVD pathogenesis.
Purpose of the Study:
- To review the role of neural regulation of immunity and inflammation in cardiovascular disease.
- To explore neuroimmune interactions as a basis for novel immunomodulatory therapies for CVD.
Main Methods:
- Literature review of studies on autonomic nervous system, immunity, inflammation, and cardiovascular function.
- Analysis of neuroimmune interactions relevant to CVD onset and progression.
Main Results:
- The nervous system profoundly influences cardiovascular function and immune organs.
- Neuroimmune interactions are increasingly recognized as pathogenic in CVD.
- Neural reflexes offer a potential target for immunomodulatory therapeutic strategies.
Conclusions:
- Understanding the neural regulation of immunity is crucial for CVD.
- Targeting neuroimmune pathways presents promising therapeutic opportunities for cardiovascular diseases.
Abstract:
Cardiovascular diseases (CVDs) make a substantial contribution to the global burden of disease. Prevention strategies have succeeded in reducing the effect of acute CVD events and deaths, but the long-term consequences of cardiovascular risk factors still represent the major cause of disability and chronic illness, suggesting that some pathophysiological mechanisms might not be adequately targeted by current therapies. Many of the underlying causes of CVD have now been recognized to have immune and inflammatory components. However, inflammation and immune activation were mostly regarded as a consequence of target-organ damage. Only more recent findings have indicated that immune dysregulation can be pathogenic for CVD, identifying a need for novel immunomodulatory therapeutic strategies. The nervous system, through an array of afferent and efferent arms of the autonomic nervous system, profoundly affects cardiovascular function. Interestingly, the autonomic nervous system also innervates immune organs, and neuroimmune interactions that are biologically relevant to CVD have been discovered, providing the foundation to target neural reflexes as an immunomodulatory therapeutic strategy. This Review summarizes how the neural regulation of immunity and inflammation participates in the onset and progression of CVD and explores promising opportunities for future therapeutic strategies.
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