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糖尿病大鼠肝脏、肾上腺和脊髓中胰岛素样生长因子-I mRNA含量降低。

Reduced insulin-like growth factor-I mRNA content in liver, adrenal glands and spinal cord of diabetic rats.

作者信息

Ishii D N, Guertin D M, Whalen L R

机构信息

Department of Physiology, Colorado State University, Fort Collins 80523.

出版信息

Diabetologia. 1994 Nov;37(11):1073-81. doi: 10.1007/BF00418370.

Abstract

Circulating insulin-like growth factor I (IGF-I) concentrations are known to be reduced in experimental and clinical diabetes mellitus. The IGF-I mRNA content was measured in several tissues of rats treated with streptozotocin to determine whether a correlation with neuropathy could be found. IGF-I mRNA content was sharply reduced relative to total and poly(A)+ RNA in diabetic liver and adrenal glands. In contrast, histone 3.3 mRNA content was not significantly reduced relative to poly(A)+ RNA in liver, and alpha-tubulin mRNA content instead was increased in adrenal glands, showing that the decline in IGF-I mRNAs in these tissues was selective. In addition, spinal cord IGF-I mRNA content was significantly reduced per tissue, total RNA, and poly(A)+ RNA after 1 and 2 weeks of diabetes. This was correlated with a concurrent and significant decrease in conduction velocity in both spinal cord and peripheral nerves in a separate study. The decline in liver and spinal cord IGF-I mRNA was not due to streptozotocin toxicity, because it was significantly opposed by insulin which was continuously infused beginning the day after diabetes induction. These results, when taken together with those of others, indicate that the reduction in IGF-I mRNA content may be widespread among diabetic tissues, and might contribute in part to certain syndromes of diabetes, such as neuropathy.

摘要

已知在实验性和临床糖尿病中,循环胰岛素样生长因子I(IGF-I)浓度会降低。测量了用链脲佐菌素处理的大鼠多个组织中的IGF-I mRNA含量,以确定是否能发现其与神经病变的相关性。相对于糖尿病大鼠肝脏和肾上腺中的总RNA和聚腺苷酸加尾(poly(A)+)RNA,IGF-I mRNA含量急剧降低。相比之下,相对于肝脏中的poly(A)+ RNA,组蛋白3.3 mRNA含量没有显著降低,而肾上腺中的α-微管蛋白mRNA含量反而增加,表明这些组织中IGF-I mRNA的下降是选择性的。此外,糖尿病1周和2周后,脊髓中每个组织、总RNA和poly(A)+ RNA中的IGF-I mRNA含量均显著降低。在另一项研究中,这与脊髓和周围神经传导速度同时且显著降低相关。肝脏和脊髓中IGF-I mRNA的下降并非由于链脲佐菌素毒性,因为从糖尿病诱导后第二天开始持续输注胰岛素可显著对抗这种下降。这些结果与其他研究结果综合起来表明,IGF-I mRNA含量的降低可能在糖尿病组织中普遍存在,并且可能部分导致糖尿病的某些综合征,如神经病变。

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