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Hypertension and Intracranial Hypertension Association: A Narrative Review
Mikaelle Costa Correia1, Sayuri Inuzuka1, Matheus Martins da Costa1
1Hypertension Unit, Cardiovascular Section and Health Sciences Post Graduation Program. Federal University of Goias, Goiania, Brazil.
Insights
Hypertension can alter brain blood vessels, potentially increasing intracranial pressure. Further research is needed to understand this link and improve cerebrovascular risk assessment.
Area of Science:
- Neurology
- Cardiovascular Science
- Cerebrovascular Research
Background:
- Hypertension causes structural and functional changes in cerebral arteries.
- These changes can lead to elevated intracranial pressure and disrupt cerebral autoregulation.
- Chronic hypertension may mask intracranial hypertension due to reduced intracranial compliance.
Purpose of the Study:
- To review the potential association between hypertension and intracranial hypertension.
- To emphasize their pathophysiological connections, risk factors, and consequences.
- To highlight the need for further research and potential clinical applications.
Main Methods:
- Narrative review of existing literature.
- Discussion of pathophysiological mechanisms.
- Exploration of overlapping factors and clinical relevance.
Main Results:
- Hypertension-induced vascular changes may impair blood-brain barrier integrity and cerebral blood flow regulation.
- Intracranial hypertension can be subclinical in hypertensive patients.
- Overlapping mechanisms suggest a clinically relevant association.
Conclusions:
- The association between hypertension and intracranial hypertension requires further elucidation.
- Combined assessment of blood pressure and intracranial parameters may improve cerebrovascular risk evaluation.
- Advances in noninvasive intracranial pressure assessment show promise for early detection.
Abstract:
Hypertension and intracranial hypertension are associated with distinct clinical contexts, encompassing both neurological and cardiovascular implications. Hypertension induces significant structural and functional alterations in cerebral arteries, such as vascular wall thickening, increased arterial stiffness, reduced vascular compliance, and endothelial dysfunction, all of which can contribute to elevated intracranial pressure. These vascular changes may impair the integrity of the blood-brain barrier and disrupt cerebral autoregulation, thereby diminishing the brain's ability to effectively regulate cerebral blood flow in response to physiological demands. The persistence of these dysfunctions over time may increase the risk of neurological outcomes, including stroke, cerebral edema, and cognitive impairment. Intracranial hypertension in turn may remain subclinical in patients with chronic hypertension, particularly when there is a gradual loss of intracranial compliance. This potential link highlights the need for further studies on the topic. Emerging evidence points to advances in noninvasive techniques for intracranial hypertension assessment, which may enable the early identification of altered intracranial dynamics and promote broader clinical application. Although the association between hypertension and intracranial hypertension has not yet been fully elucidated, the literature suggests overlapping mechanisms that may be clinically relevant. Combined assessment of blood pressure and intracranial parameters could represent a complementary strategy for better understanding cerebrovascular risk in selected populations. In this narrative review, we discuss the potential association between hypertension and intracranial hypertension, emphasizing their pathophysiological connections, contributing risk factors, and potential consequences for brain structure and function. Further research is needed to clarify these associations and their implications in clinical practice.
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