Portha B, Serradas P, Bailbé D, Suzuki K, Goto Y, Giroix M H
Laboratory of Developmental Physiology, National Center for Scientific Research, University of Paris, France.
Diabetes. 1991 Apr;40(4):486-91. doi: 10.2337/diab.40.4.486.
In early 1988, a colony of GK rats was started in Paris with progenitors issued from F35 of the original colony reported by Goto and Kakisaki. When studied longitudinally up to 8 mo, GK rats showed as early as 1 mo (weaning) significantly higher basal plasma glucose (9 mM) and insulin levels (doubled), altered glucose tolerance (intravenous glucose), and a very poor insulin secretory response to glucose in vivo compared with Wistar controls. Males and females were similarly affected. Studies of in vitro pancreatic function were carried out with the isolated perfused pancreas preparation. Compared with nondiabetic Wistar rats, GK rats at 2 mo showed a significantly increased basal insulin release, no insulin response to 16 mM glucose, and hyperresponse to 19 mM arginine. Pancreatic insulin stores were only 50% of that in Wistar rats. Perfusion of GK pancreases for 50 or 90 min with buffer containing no glucose partially improved the insulin response to 16 mM glucose and markedly diminished the response to 19 mM arginine, whereas the responses by Wistar pancreases were unchanged. These findings are similar to those reported in rats with non-insulin-dependent diabetes induced by neonatal streptozocin administration and support the concept that chronic elevation in plasma glucose may be responsible, at least in part, for the beta-cell desensitization to glucose in this model. The GK rat seems to be a valuable model for identifying the etiology of beta-cell desensitization to glucose.
1988年初,在巴黎以Goto和Kakisaki报道的原始鼠群F35代的后代为始祖,开始培育GK大鼠群体。对GK大鼠进行长达8个月的纵向研究时发现,早在1个月龄(断奶时),与Wistar对照大鼠相比,GK大鼠的基础血浆葡萄糖水平(9 mM)和胰岛素水平就显著更高(翻倍),葡萄糖耐量改变(静脉注射葡萄糖),并且在体内对葡萄糖的胰岛素分泌反应非常差。雄性和雌性受到的影响相似。使用离体灌注胰腺制剂对胰腺功能进行了体外研究。与非糖尿病Wistar大鼠相比,2月龄的GK大鼠基础胰岛素释放显著增加,对16 mM葡萄糖无胰岛素反应,对19 mM精氨酸反应过度。胰腺胰岛素储备仅为Wistar大鼠的50%。用不含葡萄糖的缓冲液灌注GK胰腺50或90分钟,部分改善了对16 mM葡萄糖的胰岛素反应,并显著减弱了对19 mM精氨酸的反应,而Wistar胰腺的反应未改变。这些发现与新生期注射链脲佐菌素诱导的非胰岛素依赖型糖尿病大鼠的报道相似,并支持以下观点:在该模型中,血浆葡萄糖的慢性升高可能至少部分导致了β细胞对葡萄糖的脱敏。GK大鼠似乎是确定β细胞对葡萄糖脱敏病因的有价值模型。