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首页> 外文期刊>American Journal of Physiology >Glycemia-lowering effect of cobalt chloride in the diabetic rat: role of decreased gluconeogenesis.
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Glycemia-lowering effect of cobalt chloride in the diabetic rat: role of decreased gluconeogenesis.

机译:氯化钴对糖尿病大鼠的降血糖作用:糖异生减少的作用。

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Results of previous studies indicated that treatment of diabetic rats (induced by streptozotocin) with cobalt chloride (CoCl2) resulted in a significant decrement in serum glucose concentration. The present study was designed to determine the potential role of enhanced glucose uptake vs. decreased glucose production in the above response. The rate of systemic appearance of glucose, measured under fasting conditions using [3-3H]glucose tracer, was reduced from 35.5 +/- 2.5 to 17.5 +/- 1.8 micromol . kg-1 . min-1 in diabetic rats treated with 2 mM CoCl2 added to the drinking water for 10-14 days (P < 0.01). Tissue accumulation of intravenously administered 2-deoxy-[14C]glucose was significantly reduced in kidney and eye of diabetic rats treated with CoCl2, whereas the uptake remained unchanged in several other tissues including cerebrum, red and white skeletal muscle, heart, and liver. The relative content of phosphoenolpyruvate carboxykinase (PEPCK) mRNA was increased 3.1-fold in livers of diabetic compared with normal rats (P < 0.001), and treatment of diabetic rats with CoCl2 decreased hepatic PEPCK mRNA levels to normal. The content of PEPCK mRNA in the liver was decreased by 33% in CoCl2-treated normal rats (P < 0.05). Treatment with CoCl2 resulted in no change in cAMP levels in the livers of either diabetic or normal rats. These results suggest that the glycemia-lowering effect of CoCl2 is mediated by reductions in the rate of systemic appearance of glucose and hepatic gluconeogenesis.
机译:先前的研究结果表明,用氯化钴(CoCl2)治疗糖尿病大鼠(由链脲佐菌素诱导)可导致血清葡萄糖浓度显着降低。本研究旨在确定在上述反应中增强的葡萄糖摄取与减少的葡萄糖生成的潜在作用。在禁食条件下使用[3-3H]葡萄糖示踪剂测得的葡萄糖的全身出现率从35.5 +/- 2.5降至17.5 +/- 1.8 micromol。千克-1。在饮用水中添加2 mM CoCl2处理的糖尿病大鼠中的min-1持续10-14天(P <0.01)。在用CoCl2处理的糖尿病大鼠的肾脏和眼睛中,静脉内注射2-deoxy- [14C]葡萄糖的组织蓄积显着减少,而在其他一些组织(包括大脑,红色和白色骨骼肌,心脏和肝脏)中的摄取保持不变。与正常大鼠相比,糖尿病大鼠肝脏中磷酸烯醇丙酮酸羧激酶(PEPCK)mRNA的相对含量增加了3.1倍(P <0.001),并且用CoCl2治疗糖尿病大鼠使肝脏PEPCK mRNA水平降至正常水平。经CoCl2处理的正常大鼠肝脏中PEPCK mRNA的含量降低了33%(P <0.05)。用CoCl2处理不会导致糖尿病或正常大鼠肝脏中cAMP水平的改变。这些结果表明,CoCl 2的降血糖作用是由葡萄糖的全身出现速率降低和肝糖异生而介导的。

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