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The brain and hypertension: how the brain regulates and suffers from blood pressure
1Department of Cardiovascular Medicine, Faculty of Medical Sciences, Kyushu University, Fukuoka, Japan. shinohara.keisuke.727@m.kyushu-u.ac.jp.
Insights
The brain regulates blood pressure and is a target of hypertension, impacting cognitive function. Understanding brain mechanisms in hypertension is key to developing new treatments and improving brain health.
Area of Science:
- Neuroscience and Cardiovascular Science
- Integrative physiology of blood pressure regulation and brain function
Background:
- The brain is central to blood pressure (BP) regulation, a target organ in hypertension, and critical for cognitive function.
- Hypertension involves complex brain mechanisms, including the angiotensin II type 1 receptor (AT1R) signaling pathway and central sympathetic outflow.
Purpose of the Study:
- To review recent findings on the intricate relationship between the brain and hypertension.
- To highlight the brain's role in BP control, its vulnerability in hypertensive states, and the impact on cognitive function.
Main Methods:
- Review of recent research from Hypertension Research and other journals.
- Focus on molecular signaling pathways (e.g., AT1R), neural reflexes, and central mechanisms of BP regulation.
- Examination of hypertension-related brain pathologies, including cerebral small vessel disease (SVD) and cognitive decline.
Main Results:
- Brain AT1R signaling activation leads to sympathoexcitation and hypertension; AT1R-associated protein and β-arrestin modulate this signaling.
- Central mechanisms underlie enhanced cardiac sympathetic afferent reflexes and the benefits of renal denervation.
- Hypertension is linked to stroke, SVD, cognitive decline, and dementia, with salt intake and sex differences influencing outcomes.
Conclusions:
- The brain is a critical determinant of blood pressure and a key player in hypertension's pathogenesis and consequences.
- Understanding central BP regulation and hypertension's brain effects is crucial for developing novel therapeutic and preventive strategies.
- Improved BP control offers significant benefits for reducing stroke, cognitive decline, and cardiovascular disease, enhancing overall brain health.
Abstract:
The brain plays several roles in the relationship between blood pressure (BP) and the brain: it acts as the control center for BP regulation, a target organ in hypertension, and a crucial component for cognitive function. This mini-review introduces recent findings on "brain and hypertension" from Hypertension Research and other journals. Activation of the angiotensin II type 1 receptor (AT1R) signaling pathway in the brain causes sympathoexcitation and hypertension. AT1R-associated protein and β-arrestin promote AT1R internalization and suppress AT1R signaling, with brain-specific roles in BP regulation. The brain receives various inputs from the peripheral system, including the heart and kidneys, and controls central sympathetic outflow. The brain mechanism involved in the enhanced cardiac sympathetic afferent reflex and the beneficial effects of renal denervation have been demonstrated. The brain's vulnerability in hypertension includes stroke, with cerebral small vessel disease (SVD) contributing to stroke risk and brain changes. Sex differences and the age of hypertension onset influence these outcomes. High salt intake exacerbates hypertension and stroke risk, with central mechanisms like sympathoexcitation implicated. Hypertension significantly impacts cognitive function, linking to cerebral SVD and cognitive decline. Orthostatic BP regulation abnormalities also emerge as early risk markers for dementia. Improved BP control in hypertensive individuals can significantly reduce the risk of stroke and cognitive decline, as well as cardiovascular disease, enhancing overall brain health and quality of life. Further understanding the brain's role in BP regulation and the pathogenesis of hypertension will facilitate the development of novel hypertension treatments and prevention strategies.
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