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胰岛素样生长因子-I在青春期前和青春期后链脲佐菌素诱导的糖尿病大鼠肾脏中的差异积累。

Differential accumulation of insulin-like growth factor-I in kidneys of pre- and postpubertal streptozotocin-diabetic rats.

作者信息

Phillip M, Werner H, Palese T, Kowarski A A, Stannard B, Bach L A, LeRoith D, Roberts C T

机构信息

Department of Pediatrics, Faculty of Health Sciences, Ben Gurion University of the Negev, Beer Sheva, Israel.

出版信息

J Mol Endocrinol. 1994 Apr;12(2):215-24. doi: 10.1677/jme.0.0120215.

Abstract

Nephropathy, one of the major complications of diabetes mellitus, is characterized by an early increase in kidney size. In experimental models of diabetes, this event is preceded by a rapid and transient rise in kidney IGF-I levels, at least in adult animals. Since diabetes-associated renal changes are uncommon in young patients, we investigated the early changes in the components of the IGF system following induction of diabetes in prepubertal and postpubertal rats. The rationale for this study was the evaluation of potential differences which could lead to kidney complications only at adult stages. Unlike the situation in the postpubertal kidney, in which there was a transient accumulation of extractable IGF-I 24-48 h after streptozotocin (STZ) administration, there was a decrease of approximately 12-fold in the level of IGF-I in the prepubertal kidney over the same period of time. Paradoxically, kidney IGF-I mRNA levels were reduced by approximately 50% in the postpubertal rat 24 h after STZ treatment, whereas in the prepubertal kidney IGF-I mRNA levels were unaltered. Furthermore, the levels of IGF-I receptor mRNA and 125I-labelled IGF-I binding to kidney membranes of postpubertal diabetic rats were similar to the levels in control kidneys. On the other hand, both the levels of IGF-I receptor mRNA and 125I-labelled IGF-I binding were increased (approximately 2.5-fold (after 24 h) and approximately 3-fold (after 48 h) respectively) in prepubertal animals. In addition, increased expression of IGF-binding protein (IGFBP)-1 mRNA was seen early in diabetes in both pre- and postpubertal rats. The results of this study suggest that the transient accumulation of IGF-I in the kidney of the postpubertal diabetic rat may not be due to an increase in the local synthesis of IGF-I, but rather to an increase in IGF-I uptake from the circulation due to non-membrane-associated IGFBP-1. The lack of accumulation of IGF-I in the prepubertal kidney probably reflects the approximately 10-fold lower levels of circulating IGF-I in young as compared with adult diabetic rats.

摘要

肾病是糖尿病的主要并发症之一,其特征是早期肾脏体积增大。在糖尿病实验模型中,至少在成年动物中,这一事件之前肾脏IGF-I水平会迅速短暂升高。由于糖尿病相关的肾脏变化在年轻患者中并不常见,我们研究了青春期前和青春期后大鼠诱导糖尿病后IGF系统各成分的早期变化。本研究的基本原理是评估可能仅在成年阶段导致肾脏并发症的潜在差异。与青春期后肾脏的情况不同,青春期后肾脏在链脲佐菌素(STZ)给药后24 - 48小时可提取的IGF-I会短暂积累,而在同一时间段内,青春期前肾脏中IGF-I水平下降了约12倍。矛盾的是,青春期后大鼠在STZ治疗24小时后肾脏IGF-I mRNA水平降低了约50%,而青春期前肾脏中IGF-I mRNA水平未改变。此外,青春期后糖尿病大鼠肾脏膜上IGF-I受体mRNA水平和125I标记的IGF-I结合水平与对照肾脏相似。另一方面,青春期前动物中IGF-I受体mRNA水平和125I标记的IGF-I结合水平均升高(分别在24小时后约升高2.5倍,48小时后约升高3倍)。此外,青春期前和青春期后大鼠在糖尿病早期均可见IGF结合蛋白(IGFBP)-1 mRNA表达增加。本研究结果表明,青春期后糖尿病大鼠肾脏中IGF-I的短暂积累可能不是由于IGF-I局部合成增加,而是由于非膜相关的IGFBP-1导致从循环中摄取IGF-I增加。青春期前肾脏中IGF-I缺乏积累可能反映了与成年糖尿病大鼠相比,幼年大鼠循环中IGF-I水平低约10倍。

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