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Treating hypertension while protecting the vulnerable islet in the cardiometabolic syndrome
Melvin R Hayden1, James R Sowers
1Departments of Internal Medicine, Endocrinology Diabetes and Metabolism, and Diabetes and Cardiovascular Disease Research Center, School of Medicine, University of Missouri-Columbia, Health Sciences Center, Columbia, Missouri, USA.
Insights
Hypertension, a complex disease, damages organs and contributes to cardiometabolic syndrome. Managing blood pressure may prevent pancreatic islet damage and delay type 2 diabetes mellitus.
Area of Science:
- Cardiology
- Endocrinology
- Nephrology
Background:
- Hypertension is a multifactorial disease impacting multiple organs.
- It is increasingly viewed as part of a progressive cardiometabolic syndrome.
- Insulin resistance, oxidative stress, and endothelial dysfunction are key factors.
Purpose of the Study:
- To review the impact of hypertension on end-organ damage, particularly the pancreatic islet.
- To explore the relationship between hypertension, insulin resistance, and type 2 diabetes mellitus.
- To examine antihypertensive drugs' role in protecting the pancreatic islet.
Main Methods:
- Review of existing literature on hypertension and its systemic effects.
- Focus on the pathophysiology linking hypertension to metabolic dysfunction.
- Analysis of drug classes and their effects on pancreatic islet health.
Main Results:
- Hypertension causes structural and functional changes in organs like the cardiovascular system and pancreas.
- Insulin resistance and renin-angiotensin-aldosterone system activity are central to hypertension and type 2 diabetes.
- Certain antihypertensive medications may preserve pancreatic islet function.
Conclusions:
- Hypertension is a critical modifiable risk factor for major health issues.
- Understanding hypertension's role in cardiometabolic syndrome is crucial.
- Targeting hypertension may mitigate pancreatic damage and prevent type 2 diabetes.
Abstract:
Hypertension, a multifactorial-polygenic disease, interacts with multiple environmental stressors and results in functional and structural changes in numerous end organs, including the cardiovascular system. This can result in coronary heart disease, stroke, peripheral vascular disease, congestive heart failure, end-stage renal disease, insulin resistance, and damage to the pancreatic islet. Hypertension is the most important modifiable risk factor for major health problems encountered in clinical practice. Whereas hypertension was once thought to be a medical condition based on discrete blood pressure readings, a new concept has emerged defining hypertension as part of a complex and progressive metabolic and cardiovascular disease, an important part of a cardiometabolic syndrome. The central role of insulin resistance, oxidative stress, endothelial dysfunction, metabolic signaling defects within tissues, and the role of enhanced tissue renin-angiotensin-aldosterone system activity as it relates to hypertension and type 2 diabetes mellitus are emphasized. Additionally, this review focuses on the effect of hypertension on functional and structural changes associated with the vulnerable pancreatic islet. Various classes of antihypertensive drugs are reviewed, especially their roles in delaying or preventing damage to the vulnerable pancreatic islet, and thus delaying the development of type 2 diabetes mellitus.
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