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February 1, 2000AJP Heart and Circulatory Physiology41 citations

Reduced NO-dependent arteriolar dilation during the development of cardiomyopathy

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DSDong SunAHAn HuangGZGong Zhao

Structured PICO

P
Population
Subepicardial coronary arterioles (basal diameter 80 microm) isolated from normal canine hearts, hearts with dysfunction but no heart failure, and hearts with severe cardiac decompensation (pacing-induced heart failure)
I
Intervention
In vitro perfusion at increasing flow (shear stress) or administration of agonists with no flow
C
Comparator
Arterioles from normal canine hearts and hearts with dysfunction but no failure
O
Outcome
Flow-induced NO-mediated arteriolar dilationsurrogate

The development of severe dilated cardiomyopathy and heart failure is associated with a reduction or complete loss of NO-dependent coronary arteriolar dilation.

Abstract

Our previous studies have suggested that there is reduced nitric oxide (NO) production in canine coronary blood vessels after the development of pacing-induced heart failure. The goal of these studies was to determine whether flow-induced NO-mediated dilation is altered in coronary arterioles during the development of heart failure. Subepicardial coronary arterioles (basal diameter 80 microm) were isolated from normal canine hearts, from hearts with dysfunction but no heart failure, and from hearts with severe cardiac decompensation. Arterioles were perfused at increasing flow or administered agonists with no flow in vitro. In arterioles from normal hearts, flow increased arteriolar diameter, with one-half of the response being NO dependent and one-half prostaglandin dependent. Shear stress-induced dilation was eliminated by removing the endothelium. Arterioles from normal hearts and hearts with dysfunction but no failure responded to increasing shear stress with dilation that reached a maximum at a shear stress of 20 dyn/cm(2). In contrast, arterioles from failing hearts showed a reduced dilation, reaching only 55% of the dilation seen in vessels of normal hearts at a shear stress of 100 dyn/cm(2). This remaining dilation was eliminated by indomethacin, suggesting that the NO-dependent component was absent in coronary microvessels after the development of heart failure. Similarly, agonist-induced NO-dependent coronary arteriolar dilation was markedly attenuated after the development of heart failure. After the development of severe dilated cardiomyopathy and heart failure, the NO-dependent component of both shear stress- and agonist-induced arteriolar dilation is reduced or entirely absent.

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Cite This Study

Sun et al. (2000) studied this question.

synapsesocial.com/papers/6a895d93e0083a7c2c432822https://doi.org/10.1152/ajpheart.2000.278.2.h461
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Defective endothelium-mediated control of coronary circulation in conscious dogs after heart failure1994 · 143 citations
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  5. 5ENHANCED RELEASE OF ENDOTHELIUM‐DERIVED HYPERPOLARIZING FACTOR IN SMALL CORONARY ARTERIES FROM RATS WITH CONGESTIVE HEART FAILURE2005 · 27 citations