Key result
Monocrotaline-induced right ventricular heart failure in rats significantly reduced overall skeletal muscle fiber cross-sectional area (1,843 vs 2,322 μm²) and impaired mitochondrial complex I activity compared to saline controls.
Why the study?
Does monocrotaline-induced right ventricular heart failure cause regional skeletal muscle remodeling and mitochondrial dysfunction in rats?
Does monocrotaline-induced right ventricular heart failure cause regional skeletal muscle remodeling and mitochondrial dysfunction in rats?
Absolute Event Rate: 1843% vs 2322%
p-value: p=0.009
In a rat model of right ventricular heart failure, skeletal muscle exhibits reduced mitochondrial volume density, impaired complex I activity, and decreased capillarity in oxidative regions, which may contribute to exercise intolerance.
Skeletal muscle changes in this rat RV failure model may contribute to exercise intolerance; leaves open translation to human pulmonary hypertension.
Exercise intolerance is a cardinal symptom of right ventricular heart failure (RV HF) and skeletal muscle adaptations play a role in this limitation. We determined regional remodeling of muscle structure and mitochondrial function in a rat model of RV HF induced by monocrotaline injection (MCT; 60 mg·kg(-1); n = 11). Serial sections of the plantaris were stained for fiber type, succinate dehydrogenase (SDH) activity and capillaries. Mitochondrial function was assessed in permeabilized fibers using respirometry, and isolated complex activity by blue native gel electrophoresis (BN PAGE). All measurements were compared with saline-injected control animals (CON; n = 12). Overall fiber cross-sectional area was smaller in MCT than CON: 1,843 ± 114 vs. 2,322 ± 120 μm(2) (P = 0.009). Capillary-to-fiber ratio was lower in MCT in the oxidative plantaris region (1.65 ± 0.09 vs. 1.93 ± 0.07; P = 0.03), but not in the glycolytic region. SDH activity (P = 0.048) and maximal respiratory rate (P = 0.012) were each ∼15% lower in all fibers in MCT. ADP sensitivity was reduced in both skeletal muscle regions in MCT (P = 0.032), but normalized by rotenone. A 20% lower complex I/IV activity in MCT was confirmed by BN PAGE. MCT-treatment was associated with lower mitochondrial volume density (lower SDH activity), quality (lower complex I activity), and fewer capillaries per fiber area in oxidative skeletal muscle. These features are consistent with structural and functional remodeling of the determinants of oxygen supply potential and utilization that may contribute to exercise intolerance and reduced quality of life in patients with RV HF.
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Wüst et al. (2011) studied Right ventricular heart failure (n=23). Monocrotaline (MCT) injection vs. Saline injection was evaluated on Overall fiber cross-sectional area (μm²) (p=0.009). Monocrotaline-induced right ventricular heart failure in rats significantly reduced overall skeletal muscle fiber cross-sectional area (1,843 vs 2,322 μm²) and impaired mitochondrial complex I activity compared to saline controls.
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