Ostenson C G, Efendić S
Biochim Biophys Acta. 1985 Aug 30;846(2):242-7. doi: 10.1016/0167-4889(85)90071-0.
We have studied the effects by cysteamine in vitro and in vivo on hormone production and islet cell metabolism in isolated pancreatic islets and perfused pancreas of the rat. In isolated islets, cysteamine dose-dependently depleted somatostatin immunoreactivity by 50% after 60 min exposure to 1 mmol/l of the compound. This effect appeared to be independent of interaction of the drug with secretion of somatostatin from the pancreatic D-cells. Cysteamine, however, interacted acutely not only with the D-cells, but also markedly suppressed glucose-induced insulin release. Moreover, cysteamine inhibited islet glucose oxidation, an effect which reflects interference with the metabolism mainly of the B-cells. The effect of cysteamine on glucose-induced insulin release was prolonged, since it was still observed in the isolated rat pancreas perfused 24 h after in vivo treatment with cysteamine. In contrast to the effects on glucose-induced insulin release, the response to glibenclamide remained unaffected by a previous exposure to cysteamine in vivo. However, both glucose- and glibenclamide-induced somatostatin secretion was reduced by 50%, whereas basal glucagon secretion was significantly enhanced in pancreata from cysteamine-treated rats vs. control rats. We conclude that (1) cysteamine does not specifically affect the D-cells of the islets, and (2) the multiple effects by cysteamine on islet cell function, particularly on B-cell metabolism and secretion, renders the compound unsuitable for the study of paracrine interactions in the islets.
我们研究了半胱胺在体外和体内对大鼠分离胰岛及灌注胰腺中激素分泌和胰岛细胞代谢的影响。在分离的胰岛中,暴露于1 mmol/l的该化合物60分钟后,半胱胺剂量依赖性地使生长抑素免疫反应性降低50%。这种作用似乎与药物和胰腺D细胞分泌生长抑素的相互作用无关。然而,半胱胺不仅与D细胞发生急性相互作用,还显著抑制葡萄糖诱导的胰岛素释放。此外,半胱胺抑制胰岛葡萄糖氧化,这一作用反映了其主要对B细胞代谢的干扰。半胱胺对葡萄糖诱导的胰岛素释放的作用具有持续性,因为在用半胱胺进行体内处理24小时后,在灌注的分离大鼠胰腺中仍可观察到该作用。与对葡萄糖诱导的胰岛素释放的作用相反,先前在体内暴露于半胱胺后,对格列本脲的反应未受影响。然而,葡萄糖和格列本脲诱导的生长抑素分泌均减少了50%,而与对照大鼠相比,半胱胺处理的大鼠胰腺中基础胰高血糖素分泌显著增加。我们得出结论:(1)半胱胺不会特异性影响胰岛的D细胞;(2)半胱胺对胰岛细胞功能的多种作用,特别是对B细胞代谢和分泌的作用,使得该化合物不适用于研究胰岛中的旁分泌相互作用。