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September 1, 1993Circulation Research283 citationsOpen Access

Rat angiotensin II (type 1A) receptor mRNA regulation and subtype expression in myocardial growth and hypertrophy.

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JSJiro SuzukiHMHiroaki MatsubaraMUMasaya Urakami

Key Result

Cardiac hypertrophy in rats resulted in a threefold increase in ventricular AT1A mRNA levels and a twofold increase in Ang II receptor densities compared with control rats.

Key Points

  • This study aims to investigate the regulation of AT1A receptor mRNA and the expression of Ang II receptors during myocardial growth and hypertrophy.
  • Analyzed AT1 and AT2 receptor expression in rat hearts using antagonists.
  • Measured AT1A mRNA levels and receptor density across different developmental stages and hypertrophic conditions.
  • Assessed changes in receptor expression during hypertrophy regression following blood pressure normalization.
  • Ventricular AT1A mRNA levels increased 3.5-fold during the neonatal period and were downregulated with maturation.
  • In spontaneously hypertensive rats, AT1A mRNA levels increased threefold compared to controls, with receptor density rising twofold.
  • Receptor levels returned to control levels following normalization of blood pressure, indicating a reversible process.

Structured PICO

Does the development and regression of cardiac hypertrophy alter AT1A receptor mRNA levels and Ang II receptor density in rat models?

P
Population
Rat models including neonatal rats, spontaneously hypertensive rats, two-kidney one-clip renovascular hypertensive rats, and normal adult rats
E
Exposure
Development of cardiac hypertrophy and its regression via normalization of elevated blood pressure
C
Comparator
Respective control rats
O
Outcome
Ventricular AT1A mRNA levels and Ang II receptor densitiessurrogate

AT1A receptor mRNA and Ang II receptor density are upregulated during cardiac hypertrophy and reversed upon its regression in rat models, suggesting a role in hypertrophy maintenance.

Abstract

Two subtypes of angiotensin II (Ang II) receptors (AT1 and AT2) are distinguished by using the respective specific antagonists. In the present study, we report the regulation of cardiac AT1 type A (AT1A) receptor mRNA levels and the expression pattern of AT1 and AT2 receptors in the growth of the heart and the development and regression of cardiac hypertrophy. The ventricular AT1A mRNA level and the density of Ang II receptors at the neonatal period were significantly increased (3.5-fold and 2.5-fold, respectively) and then downregulated with maturation. The cardiac hypertrophy established in spontaneously hypertensive rats or two-kidney one-clip renovascular hypertensive rats resulted in substantial increases in ventricular AT1A mRNA levels (threefold) and Ang II receptor densities (twofold) as compared with those in respective control rats, whereas the receptor affinity was similar. The proportion of AT1 and AT2 subtypes in the specific Ang II binding in ventricular membranes prepared from normal adult rats was nearly equal. This proportion did not change significantly in the development of myocardial hypertrophy. The regression of cardiac hypertrophy by the normalization of elevated blood pressure completely reversed the increased levels of AT1A mRNA and the receptor density to the control level. Thus, AT1 and AT2 receptors are present in rat ventricular myocardium, and their expression is developmentally regulated and upregulated in response to hypertrophic change. Ang II action exerted through the increased number of Ang II receptors may contribute to the growth of the heart and thus to the maintenance of established hypertrophy as one of the hormones involved in hypertrophy development.

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Cite This Study

Suzuki et al. (1993) studied Cardiac hypertrophy. Cardiac hypertrophy vs. Control rats was evaluated on Ventricular AT1A mRNA levels and Ang II receptor densities. Cardiac hypertrophy in rats resulted in a threefold increase in ventricular AT1A mRNA levels and a twofold increase in Ang II receptor densities compared with control rats.

synapsesocial.com/papers/6a2190c8bd959c3a83abe2a9https://doi.org/10.1161/01.res.73.3.439
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Also Consider

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

  1. 1Changes of atrial natriuretic peptide and its messenger RNA with development and regression of cardiac hypertrophy in renovascular hypertensive rats.1990 · 43 citations
  2. 2Increased transcripts for B-type natriuretic peptide in spontaneously hypertensive rats. Quantitative polymerase chain reaction for atrial and brain natriuretic peptide transcripts.1992 · 53 citations
  3. 3Detection of angiotensin I and II in cultured rat cardiac myocytes and fibroblasts1992 · 175 citations
  4. 4Increased rat cardiac angiotensin converting enzyme activity and mRNA expression in pressure overload left ventricular hypertrophy. Effects on coronary resistance, contractility, and relaxation.1990 · 607 citations
  5. 5Isolation of a cDNA encoding the vascular type-1 angiotensin II receptor1991 · 1,257 citations