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The role of the blood-brain barrier in hypertension
Anthony Setiadi1, Willian S Korim1, Khalid Elsaafien1
1Florey Institute of Neuroscience and Mental Health, University of Melbourne, Victoria, Australia.
Insights
The blood-brain barrier (BBB) is crucial for autonomic function. Its disruption by factors like cytokines and angiotensin II contributes to hypertension and heart failure, offering new therapeutic targets.
Area of Science:
- Neuroscience
- Cardiovascular Science
- Immunology
Background:
- The blood-brain barrier (BBB) protects the central nervous system (CNS) but can be disrupted in diseases.
- Autonomic dysfunction, seen in hypertension and heart failure, is linked to BBB integrity.
- Neurovascular unit cells play a role in BBB maintenance and dysfunction.
Purpose of the Study:
- To review the role of the blood-brain barrier (BBB) in autonomic dysfunction.
- To highlight advances in understanding BBB disruption in cardiovascular diseases.
- To explore the involvement of immune cells and factors in BBB pathogenesis.
Main Methods:
- Literature review focusing on the blood-brain barrier (BBB).
- Analysis of the roles of neurovascular unit cells (astrocytes, microglia).
- Examination of immune system components and molecular mechanisms.
Main Results:
- BBB disruption is implicated in autonomic dysfunction associated with hypertension and heart failure.
- Pro-inflammatory cytokines, leucocytes, and angiotensin II may disrupt the BBB.
- Specific roles of astrocytes and microglia in BBB pathogenesis are increasingly understood.
Conclusions:
- Understanding BBB mechanisms is key to treating autonomic imbalance in cardiovascular diseases.
- Therapeutic strategies targeting BBB integrity could benefit patients with hypertension and heart failure.
- Further research into BBB disruption is needed for effective interventions.
New Findings:
What is the topic of this review? This review highlights the importance of the blood-brain barrier in the context of diseases involving autonomic dysfunction, such as hypertension and heart failure. What advances does it highlight? It highlights the potential role of pro-inflammatory cytokines, leucocytes and angiotensin II in disrupting the blood-brain barrier in cardiovascular diseases. Advances are highlighted in our understanding of neurovascular unit cells, astrocytes and microglia, with a specific emphasis on their pathogenic roles within the brain. The blood-brain barrier (BBB) is a crucial barrier that provides both metabolic and physical protection to an immune-privileged CNS. The BBB has been shown to be disrupted in hypertension. This review addresses the importance of the BBB in maintaining homeostasis in the context of diseases related to autonomic dysfunction, such as hypertension. We highlight the potentially important roles of the immune system and neurovascular unit in the maintenance of the BBB, whereby dysregulation may lead to autonomic dysfunction in diseases such as heart failure and hypertension. Circulating leucocytes and factors such as angiotensin II and pro-inflammatory cytokines are thought ultimately to downregulate endothelial tight junction proteins that are a crucial component of the BBB. The specific mechanisms underlying BBB disruption and their role in contributing to autonomic dysfunction are not yet fully understood but are a growing area of interest. A greater understanding of these systems and advances in our knowledge of the molecular mechanisms causing BBB disruption will allow for the development of future therapeutic interventions in the treatment of autonomic imbalance associated with diseases such as heart failure and hypertension.
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