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Monogenic Hypertension Linked to the Renin-Angiotensin-Aldosterone System
1Division of General Internal Medicine, Department of Internal Medicine, Hacettepe University Faculty of Medicine, Ankara, Türkiye;Hacettepe University, Center for Genomics and Rare Diseases, Ankara, Türkiye.
Insights
Monogenic hypertension, caused by genetic mutations in the renin-angiotensin-aldosterone system (RAAS), requires precise diagnosis and targeted treatments like channel blockers. Understanding these rare genetic disorders is key to managing blood pressure and preventing complications.
Area of Science:
- Endocrinology
- Genetics
- Cardiovascular Medicine
Background:
- Monogenic hypertension involves rare genetic mutations disrupting the renin-angiotensin-aldosterone system (RAAS).
- These disorders, including Gordon's syndrome and Liddle syndrome, cause distinct forms of heritable hypertension.
- Early-onset hypertension, electrolyte imbalances, and pH abnormalities are key indicators.
Purpose of the Study:
- To review germline mutations in RAAS pathways causing monogenic hypertension.
- To highlight clinical features, diagnostic challenges, and therapeutic strategies for these rare conditions.
- To emphasize the importance of genetic sequencing for accurate diagnosis and personalized treatment.
Main Methods:
- Review of literature on Mendelian forms of RAAS-related hypertension.
- Analysis of pathophysiological mechanisms of specific monogenic hypertension syndromes.
- Discussion of diagnostic approaches, including next-generation sequencing.
- Evaluation of therapeutic implications and management strategies.
Main Results:
- Identified specific genetic mutations leading to distinct heritable hypertension types.
- Detailed unique clinical presentations and diagnostic challenges.
- Highlighted the efficacy of specific treatments like thiazides and low-dose corticosteroids.
- Emphasized the role of genetic testing in guiding individualized treatment plans.
Conclusions:
- Accurate diagnosis of monogenic hypertension relies on recognizing specific clinical signs and family history.
- Next-generation sequencing is crucial for identifying causative genetic mutations.
- Targeted therapies, including channel blockers, are vital for managing RAAS-related hypertension and preventing severe outcomes.
- Advancements in genetic understanding promise improved management of these complex disorders.
Abstract:
Mendelian forms of renin-angiotensin-aldosterone system (RAAS)-related hypertension, commonly referred to as monogenic hypertension, represent a rare but significant subset of hypertensive disorders characterized by genetic mutations that disrupt the normal physiological mechanisms of blood pressure regulation. This review focuses on elucidating the germline mutations affecting RAAS pathways that lead to distinct forms of heritable hypertension. By understanding the pathophysiological basis of conditions such as Gordon's syndrome, Liddle syndrome, congenital adrenal hyperplasia, and familial hyperaldosteronism types, this review aims to highlight the unique clinical features, diagnostic challenges, and therapeutic implications associated with these disorders. Recognizing specific clinical presentations and family histories indicative of monogenic hypertension is crucial for diagnosis, particularly as it often manifests as early-onset hypertension, abnormalities in potassium and blood pH, and occasionally, abnormal sexual development or related syndromes. Therefore, employing a targeted diagnostic approach through next-generation sequencing is essential to pinpoint the responsible genetic mutations, enabling accurate and individualized treatment plans. The critical importance of certain readily available specific channel blockers, such as thiazides or low-dose corticosteroids, in managing these disorders must be emphasized, as they play a key role in preventing serious complications, including cerebrovascular events. As advancements in genetic and molecular sciences continue to evolve, a deeper comprehension of the mechanisms underlying RAAS-related monogenic hypertension promises to revolutionize the management of this complex disorder, offering hope for more effective and individualized treatment options.
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