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介导胰岛向导管上皮样结构转分化的因素。

Factors mediating the transdifferentiation of islets of Langerhans to duct epithelial-like structures.

作者信息

Wang R, Li J, Rosenberg L

机构信息

Department of Surgery, McGill University, Montreal, Quebec, Canada.

出版信息

J Endocrinol. 2001 Nov;171(2):309-18. doi: 10.1677/joe.0.1710309.

Abstract

We have previously shown that isolated islets embedded in type 1 collagen gel in the presence of a defined medium undergo transdifferentiation within 96 h to duct epithelial structures. The aim of this study was to identify the factors implicated in this process. Freshly isolated canine islets were embedded in type 1 collagen gel, Matrigel or agarose for up to 120 h and cultured in (i) Dulbecco's modified Eagle's medium (DMEM)/F12 plus cholera toxin (CT), (ii) medium CMRL1066 plus CT, (iii) CMRL1066 plus forskolin and (iv) CMRL1066 alone. At 16 h, intracellular levels of cAMP (fmol/10(3) islets) were increased in groups i-iii (642+/-17, 338+/-48, 1128+/-221) compared with group iv (106+/-19, P<0.01). Epithelial differentiation correlated with the total amount of intracellular cAMP measured over 120 h. Islet-epithelial transformation during the initial 36 h was associated with a wave of apoptosis which was followed by a wave of cell proliferation. During epithelial differentiation there was a progressive loss of all islet hormones and the concomitant expression of cytoskeletal proteins characteristic of duct epithelial cells. Islets in collagen and Matrigel demonstrated high rates of epithelial differentiation (63+/-2% and 71+/-4% respectively) compared with those in agarose gel (0+/-0%, P<0.001). Islets suspended in DMEM/F12 plus CT supplemented with soluble laminin or fibronectin did not undergo transformation. Prior incubation of freshly isolated islets with an integrin-binding arginine-glycine-aspartate motif-presenting synthetic peptide also reduced islet transformation. These studies confirm the biological potential of islets of Langerhans to differentiate to duct epithelial structures. cAMP-mediated signal transduction and an appropriate integrin-matrix interaction are necessary for this process to proceed.

摘要

我们之前已经表明,在特定培养基存在的情况下,包埋于I型胶原凝胶中的分离胰岛在96小时内会转分化为导管上皮结构。本研究的目的是确定参与这一过程的因素。将新鲜分离的犬胰岛包埋于I型胶原凝胶、基质胶或琼脂糖中长达120小时,并在以下培养基中培养:(i)杜氏改良 Eagle培养基(DMEM)/F12加霍乱毒素(CT);(ii)培养基CMRL1066加CT;(iii)CMRL1066加福斯可林;(iv)单独的CMRL1066。在16小时时,与第iv组(106±19,P<0.01)相比,第i - iii组(642±17、338±48、1128±221)的细胞内cAMP水平(fmol/10³个胰岛)升高。上皮分化与120小时内测得的细胞内cAMP总量相关。最初36小时内胰岛 - 上皮转化与一波凋亡相关,随后是一波细胞增殖。在上皮分化过程中,所有胰岛激素逐渐丧失,同时出现导管上皮细胞特有的细胞骨架蛋白表达。与琼脂糖凝胶中的胰岛(0±0%,P<0.001)相比,胶原和基质胶中的胰岛表现出较高的上皮分化率(分别为63±2%和71±4%)。悬浮于添加了可溶性层粘连蛋白或纤连蛋白的DMEM/F12加CT中的胰岛未发生转化。用呈现整合素结合精氨酸 - 甘氨酸 - 天冬氨酸基序的合成肽预先孵育新鲜分离的胰岛也可减少胰岛转化。这些研究证实了胰岛向导管上皮结构分化的生物学潜能。cAMP介导的信号转导和适当的整合素 - 基质相互作用是这一过程进行所必需的。

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