Chronic effects of streptozotocin-induced diabetes on the ultrastructure of rat ventricular and papillary muscle

被引:0
|
作者
F.C. Howarth
M.A. Qureshi
P. Lawrence
E. Adeghate
机构
[1] Department of Physiology,
[2] Faculty of Medicine and Health Sciences,undefined
[3] United Arab Emirates University,undefined
[4] Al Ain,undefined
[5] P.O. Box 17666,undefined
[6] United Arab Emirates,undefined
[7] Department of Anatomy,undefined
[8] Faculty of Medicine and Health Sciences,undefined
[9] United Arab Emirates University,undefined
[10] Al Ain,undefined
[11] United Arab Emirates,undefined
来源
Acta Diabetologica | 2000年 / 37卷
关键词
Key words Streptozotocin; Diabetes; Ventricular myocyte; Cardiac muscle; Ultrastructure;
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学科分类号
摘要
Contractile dysfunctions have been demonstrated in different experimental models of diabetes which have similar characteristics to many of the abnormalities found in the clinical setting. Administration of streptozotocin (STZ) to young adult rats induces β-cell necrosis of the pancreas which gives rise to hypoinsulinaemia and hyperglycaemia, features which are also seen in untreated type 1 clinical diabetes. We have investigated the chronic effects of STZ-induced diabetes on contraction in rat ventricular myocytes and ultrastructure of cardiac muscle. Diabetes was induced in male Wistar rats (230–270 g) with a single injection of STZ (60 mg kg−1). At 2 and 10 months after STZ treatment, the amplitude of contraction was larger in diabetic compared to control myocytes. Time to peak contraction was significantly longer at 2 months but appeared to normalise at 10 months after STZ treatment. In contrast, time to half relaxation of contraction was not significantly different after 2 months but was significantly reduced at 10 months after STZ treatment compared to control. Transmission electron microscope examination of cardiac muscle showed that the ultrastructure of cardiac muscle, especially structures associated with contraction, were not greatly altered after STZ treatment. Sarcomere lengths were not significantly different in papillary or ventricular muscle at 4 or 8 months after STZ treatment compared to control. Our data provide evidence that morphological defects in contractile myofilaments and associated structures cannot explain contractile dysfunctions seen in ventricular myocytes from STZ-treated animals.
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页码:119 / 124
页数:5
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