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November 1, 1995Circulation193 citations

Pressure- and Volume-Induced Left Ventricular Hypertrophies Are Associated With Distinct Myocyte Phenotypes and Differential Induction of Peptide Growth Factor mRNAs

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ACAngelino CalderoneNTNobuyuki TakahashiNINicholas J. Izzo

Structured PICO

P
Population
Rats with left ventricular hypertrophy induced by pressure overload (suprarenal aortic constriction) or volume overload (abdominal aortocaval fistula)
I
Intervention
Pressure overload (PO) via suprarenal aortic constriction for 1 week
C
Comparator
Volume overload (VO) via abdominal aortocaval fistula for 1 week
O
Outcome
mRNA levels of fetal genes, sarcoplasmic reticulum Ca2+ATPase, and peptide growth factors in LV myocardiumsurrogate

Pressure and volume overload induce distinct molecular phenotypes and growth factor expression patterns in left ventricular hypertrophy, suggesting stimulus-specific signaling pathways.

Abstract

BACKGROUND: Chronic pressure and volume overload (PO and VO) result in morphologically and functionally distinct forms of myocardial hypertrophy. We tested the hypothesis that PO- and VO-induced left ventricular (LV) hypertrophies are associated with distinct molecular phenotypes and patterns of peptide growth factor induction. METHODS AND RESULTS: mRNA levels were quantified in LV myocardium from rats with LV hypertrophy due to PO or VO caused by suprarenal aortic constriction or an abdominal aortocaval fistula, respectively, for 1 week. Although PO and VO caused comparable increases in LV weight and preproatrial natriuretic factor mRNA, PO but not VO increased mRNA levels for the fetal genes beta-myosin heavy chain and skeletal alpha-actin and reduced the mRNA level of sarcoplasmic reticulum Ca2+ATPase. In a myocyte-enriched myocardial fraction, transforming growth factor-beta 3 and insulin-like growth factor-1 mRNA levels were increased with PO but not VO; acidic fibroblast growth factor mRNA was unchanged with PO but decreased with VO. In a nonmyocyte-enriched myocardial fraction, transforming growth factor-beta 3 and insulin-like growth factor-1 mRNA levels were decreased with VO but unchanged with PO. CONCLUSIONS: PO- and VO-induced LV hypertrophies are associated with distinct molecular phenotypes and patterns of peptide growth factor induction. Stimulus-specific heterogeneity in the signaling events and peptide growth factors coupled to gene expression could play a role in determining the type of hypertrophy that is caused by various forms of hemodynamic overload.

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Cite This Study

Calderone et al. (1995) studied this question.

synapsesocial.com/papers/6a03c087e8da575b5d193aeahttps://doi.org/10.1161/01.cir.92.9.2385
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