Kolehmainen E, Sormunen R
Department of Physiology, University of Oulu, Finland.
Pancreas. 1998 Mar;16(2):176-88. doi: 10.1097/00006676-199803000-00012.
To evaluate effects of circulating myelin basic protein (MBP) on the endocrine pancreas, we injected bovine MBP to Djungarian hamsters and studied the morphological changes induced by MBP and its immunocytochemical distribution by electron microscopy. After a treatment time of 5-40 min, some islets appeared severely damaged, especially at their peripheries and near the intraislet capillaries, while others showed minor or no changes. MBP-induced extracellular changes included partial disintegration of the collagen filament network surrounding the islet and the blood vessels. These changes correlated with the association of MBP with the collagen filament bundles and related structures. Intracellularly, the effect of MBP included formation of vacuoles, dilatation of rough ER and Golgi membranes, swelling and aggregation of mitochondria, and disruption of the membranes of part of the insulin and glucagon granules, as well as damage to some plasma membranes. In the damaged B cells, 16-62% of the insulin granules exhibited an enlarged pale core, compared to 1-2% in the control B cells. MBP was shown to associate with mitochondria and with various intracellular membranes in all islet cells. In the B cells, MBP was localized to the membranes of insulin granules, and it also associated with the cores of the granules. In the A cells, the association of MBP to the glucagon granules was mainly with the outsides of the membranes. Interaction of MBP with the secretion granules is suggested to play a role in MBP-induced insulin and glucagon release, and some hormone might be released by leakage. Association of MBP with mitochondria, Golgi structures, and ER may lead to changes in various cellular functions.
为了评估循环髓鞘碱性蛋白(MBP)对内分泌胰腺的影响,我们将牛MBP注射到西伯利亚仓鼠体内,并通过电子显微镜研究了MBP诱导的形态学变化及其免疫细胞化学分布。在5 - 40分钟的处理时间后,一些胰岛出现严重损伤,尤其是在其周边和胰岛内毛细血管附近,而其他胰岛则显示轻微变化或无变化。MBP诱导的细胞外变化包括围绕胰岛和血管的胶原纤维网络部分解体。这些变化与MBP与胶原纤维束及相关结构的结合有关。在细胞内,MBP的作用包括液泡形成、粗面内质网和高尔基体膜扩张、线粒体肿胀和聚集、部分胰岛素和胰高血糖素颗粒膜破裂以及一些质膜损伤。在受损的B细胞中,16 - 62%的胰岛素颗粒呈现扩大的淡色核心,而对照B细胞中这一比例为1 - 2%。MBP显示与所有胰岛细胞中的线粒体和各种细胞内膜相关。在B细胞中,MBP定位于胰岛素颗粒膜,并且也与颗粒核心相关。在A细胞中,MBP与胰高血糖素颗粒的结合主要在膜的外侧。MBP与分泌颗粒的相互作用被认为在MBP诱导的胰岛素和胰高血糖素释放中起作用,并且一些激素可能通过渗漏释放。MBP与线粒体、高尔基体结构和内质网的结合可能导致各种细胞功能的变化。