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October 1, 1996Proceedings of the National Academy of Sciences70 citationsOpen Access

Local stress, not systemic factors, regulate gene expression of the cardiac renin-angiotensin system in vivo: a comprehensive study of all its components in the dog.

YLY A LeeCLChang‐seng LiangMLM A Lee

Key Result

In a canine model of right ventricular hypertrophy and failure, right ventricular ACE mRNA expression significantly increased to 0.85 pmol/nmol β-actin compared to 0.47 in sham-operated controls.

Structured PICO

Does local mechanical stress regulate gene expression of the cardiac renin-angiotensin system in vivo independently of systemic factors?

P
Population
Canine model of right ventricular hypertrophy and failure (RVHF)
I
Intervention
Hemodynamic loading of the right ventricle (RV)
C
Comparator
Hemodynamically unloaded left ventricle (LV) in the same model, exposed to the same circulating milieu of soluble factors
O
Outcome
Gene expression (mRNA levels) of components of the cardiac renin-angiotensin system (ACE, AT2 receptor, chymase, AT1 receptor, angiotensinogen, renin)surrogate

Local mechanical stress, rather than systemic soluble factors, independently and differentially regulates the gene expression of cardiac renin-angiotensin system components in vivo.

Main Result

Absolute Event Rate: 0.85% vs 0.47%

p-value: p=<0.03

Limitations

  • Restriction to assessing transcriptional modulation without functional studies of local peptide/protein synthesis
  • No information regarding the specific cardiac cell populations that are the source of individual transcripts
  • Addresses only the state of RVHF, and allows no direct extrapolation regarding less advanced stages of RV overload
  • Not aimed at delineating a proposed causative or contributory role of altered cardiac RAS gene expression to the process of ventricular hypertrophy

Abstract

Cardiac hypertrophy is associated with altered expression of the components of the cardiac renin-angiotensin system (RAS). While in vitro data suggest that local mechanical stimuli serve as important regulatory modulators of cardiac RAS activity, no in vivo studies have so far corroborated these observations. The aims of this study were to (i) examine the respective influence of local, mechanical versus systemic, soluble factors on the modulation of cardiac RAS gene expression in vivo; (ii) measure gene expression of all known components of the RAS simultaneously; and (iii) establish sequence information and an assay system for the RAS of the dog, one of the most important model organisms in cardiovascular research. We therefore examined a canine model of right ventricular hypertrophy and failure (RVHF) in which the right ventricle (RV) is hemodynamically loaded, the left ventricle (LV) is hemodynamically unloaded, while both are exposed to the same circulating milieu of soluble factors. Using specific competitive PCR assays, we found that RVHF was associated with significant increases in RV mRNA levels of angiotensin converting enzyme and angiotensin II type 2 receptor, and with significant decreases of RV expression of chymase and the angiotensin II type 1 receptor, while RV angiotensinogen and renin remained unchanged. All components remained unchanged in the LV. We conclude that (i) dissociated regional regulation of RAS components in RV and LV indicates modulation by local, mechanical, not soluble, systemic stimuli; (ii) components of the cardiac RAS are independently and differentially regulated; and (iii) opposite changes in the expression of angiotensin converting enzyme and chymase, and of angiotensin II type I and angiotensin II type 2 receptors, may indicate different physiological roles of these RAS components in RVHF.

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Cite This Study

Lee et al. (1996) studied Right ventricular hypertrophy and failure (n=20). Right ventricular hypertrophy and failure (RVHF) induction vs. Sham operation was evaluated on Right ventricular ACE mRNA expression (pmol/nmol β-actin) (p=<0.03). In a canine model of right ventricular hypertrophy and failure, right ventricular ACE mRNA expression significantly increased to 0.85 pmol/nmol β-actin compared to 0.47 in sham-operated controls.

synapsesocial.com/papers/6a15984779ff98d0de4edcdehttps://doi.org/10.1073/pnas.93.20.11035
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