์ฝ˜ํ…์ธ ๋กœ ๊ฑด๋„ˆ๋›ฐ๊ธฐ
Merck

Angiotensin II can directly induce mitochondrial dysfunction, decrease oxidative fibre number and induce atrophy in mouse hindlimb skeletal muscle.

Experimental physiology (2015-01-13)
Tomoyasu Kadoguchi, Shintaro Kinugawa, Shingo Takada, Arata Fukushima, Takaaki Furihata, Tsuneaki Homma, Yoshihiro Masaki, Wataru Mizushima, Mikito Nishikawa, Masashige Takahashi, Takashi Yokota, Shouji Matsushima, Koichi Okita, Hiroyuki Tsutsui
์ดˆ๋ก

What is the central question of this study? Does angiotensinย II directly induce skeletal muscle abnormalities? What is the main finding and its importance? Angiotensinย II induces skeletal muscle abnormalities and reduced exercise capacity. Mitochondrial dysfunction and a decreased number of oxidative fibres are manifest early, while muscle atrophy is seen later. Thus, angiotensinย II may play an important role in the skeletal muscle abnormalities observed in a wide variety of diseases. Skeletal muscle abnormalities, such as mitochondrial dysfunction, a decreased percentage of oxidative fibres and atrophy, are the main cause of reduced exercise capacity observed in ageing and various diseases, including heart failure. The renin-angiotensin system, particularly angiotensinย II (Angย II), is activated in the skeletal muscle in these conditions. Here, we examined whether Angย II could directly induce these skeletal muscle abnormalities and investigated their time course. Angiotensinย II (1000ย ngย kg(-1) ย min(-1) ) or vehicle was administered to male C57BL/6J mice (10-12ย weeks of age) via subcutaneously implanted osmotic minipumps for 1 or 4ย weeks. Angiotensinย II significantly decreased body and hindlimb skeletal muscle weights compared with vehicle at 4ย weeks. In parallel, muscle cross-sectional area was also decreased in the skeletal muscle at 4ย weeks. Muscle RING finger-1 and atrogin-1 were significantly increased in the skeletal muscle from mice treated with Angย II. In addition, cleaved caspase-3 and terminal deoxynucleotidyl trasferase-mediated dUTP nick-positive nuclei were significantly increased in mice treated with Angย II at 1 and 4ย weeks, respectively. Mitochondrial oxidative enzymes, such as citrate synthase, complexย I and complexย III activities were significantly decreased in the skeletal muscle from mice treated Angย II at 1 and 4ย weeks. NAD(P)H oxidase-derived superoxide production was increased. NADH staining revealed that typeย I fibres were decreased and typeย IIb fibres increased in mice treated with Angย II at 1ย week. The work and running distance evaluated by a treadmill test were significantly decreased in mice treated with Angย II at 4ย weeks. Thus, Angย II could directly induce the abnormalities in skeletal muscle function and structure.

MATERIALS
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Sigma-Aldrich
2-Methyl-2-butene, ≥99%, purified by redistillation
Sigma-Aldrich
2-Methyl-2-butene, ≥95.0% (GC)
Supelco
2-Methyl-2-butene, analytical standard
Sigma-Aldrich
2-Methyl-2-butene, technical grade, 90%
Sigma-Aldrich
Bicinchoninic acid disodium salt hydrate, ≥98% (HPLC)
Sigma-Aldrich
DL-Glyceraldehyde 3-phosphate solution, 45-55 mg/mL in H2O