IGF-1 overexpression inhibits the development of diabetic cardiomyopathy and angiotensin II-mediated oxidative stress

被引:309
作者
Kajstura, J
Fiordaliso, F
Andreoli, AM
Li, BS
Chimenti, S
Medow, MS
Limana, F
Nadal-Ginard, B
Leri, A
Anversa, P
机构
[1] New York Med Coll, Dept Med, Valhalla, NY 10595 USA
[2] New York Med Coll, Dept Pediat, Valhalla, NY 10595 USA
[3] Ist Ric Farmacol Mario Negri, Milan, Italy
关键词
D O I
10.2337/diabetes.50.6.1414
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Stimulation of the local renin-angiotensin system and apoptosis characterize the diabetic heart. Because IGF-1 reduces angiotensin (Ang) II and apoptosis, we tested whether streptozotocin-induced diabetic cardiomyopathy was attenuated in IGF-1 transgenic mice (TGM). Diabetes progressively depressed ventricular performance in wild-type mice (WTM) but had no hemodynamic effect on TGM. Myocyte apoptosis measured at 7 and 30 days after the onset of diabetes was twofold higher in WTM than in TGM. Myocyte necrosis was apparent only at 30 days and was more severe in WTM. Diabetic nontransgenic mice lost 24% of their ventricular myocytes and showed a 28% myocyte hypertrophy; both phenomena were prevented by IGF-1. In diabetic WTM, p53 was increased in myocytes, and this activation of p53 was characterized by upregulation of Bax, angiotensinogen, Ang type 1 (AT(1)) receptors, and Ang II. IGF-1 overexpression decreased these biochemical responses. In vivo accumulation of the reactive O-2 product nitrotyrosine and the in vitro formation of H2O2-(OH)-O-. in myocytes were higher in diabetic WTM than TGM. Apoptosis in vitro mas detected in myocytes exhibiting high H2O2-(OH)-O-. fluorescence, and apoptosis in vivo was Linked to the presence of nitrotyrosine, H2O2-(OH)-O-. generation and myocyte apoptosis in vitro mere inhibited by the AT(1) blocker losartan and the O-2 scavenger Tiron. In conclusion, IGF-1 interferes with the development of diabetic myopathy by attenuating p53 function and Ang II production and thus AT(1) activation, This latter event might be responsible for the decrease in oxidative stress and myocyte death by IGF-1.
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收藏
页码:1414 / 1424
页数:11
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