Literature DB >> 16046788

A gene-environment interaction model of stress-induced hypertension.

Ikhide G Imumorin1, Yanbin Dong, Haidong Zhu, Joseph C Poole, Gregory A Harshfield, Frank A Treiber, Harold Snieder.   

Abstract

The case for a gene-environment interaction model of stress-induced hypertension is detailed in this paper. We hypothesize that repeated exposure to stress in combination with an environmentally and/or genetically mediated susceptibility may lead to the development of essential hypertension. Previously, we reviewed the evidence for a genetic influence on the two major intermediate phenotypes of our model: cardiovascular reactivity to psychological stress and stress-induced sodium retention, representing the cardiovascular and renal stress response, respectively. Here we first describe how genes underlying the physiological systems mediating the stress response of heart, vasculature, and kidney (i.e., the sympathetic nervous system, renin-angiotensin- aldosterone system and sodium reabsorption, and the endothelial system) may increase vulnerability to stress and confer susceptibility to development of essential hypertension. Next, we extend our model and review genes underlying three additional systems that may mediate the influence of stress on the development of essential hypertension: the parasympathetic nervous system, the serotonergic system, and the hypothamamus-pituitary-adrenal axis. The elucidation of our gene-environment interaction model of stress-induced essential hypertension will improve the understanding of the contribution of stress to the development of essential hypertension. This knowledge may lead to more effective primary and secondary prevention programs involving lifestyle interventions in which the role of stress, both acute and chronic, will be taken into account, particularly for individuals at increased genetic risk of essential hypertension.

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Year:  2005        PMID: 16046788     DOI: 10.1385/ct:5:2:109

Source DB:  PubMed          Journal:  Cardiovasc Toxicol        ISSN: 1530-7905            Impact factor:   3.231


  16 in total

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2.  The Association of Neighborhood Gene-Environment Susceptibility with Cortisol and Blood Pressure in African-American Adults.

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Review 5.  Update on G-protein polymorphisms in hypertension.

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7.  Stress-induced sodium excretion: a new intermediate phenotype to study the early genetic etiology of hypertension?

Authors:  Dongliang Ge; Shaoyong Su; Haidong Zhu; Yanbin Dong; Xiaoling Wang; Gregory A Harshfield; Frank A Treiber; Harold Snieder
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8.  Afferent renal denervation impairs baroreflex control of efferent renal sympathetic nerve activity.

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9.  Meditation smartphone application effects on prehypertensive adults' blood pressure: Dose-response feasibility trial.

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10.  Genetic influence on blood pressure and underlying hemodynamics measured at rest and during stress.

Authors:  Ting Wu; Frank A Treiber; Harold Snieder
Journal:  Psychosom Med       Date:  2013-04-10       Impact factor: 4.312

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