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胰岛在体外的结构完整性:孵育温度的影响。

The structural integrity of the islet in vitro: the effect of incubation temperature.

作者信息

Ilieva A, Yuan S, Wang R, Duguid W P, Rosenberg L

机构信息

Montreal General Hospital Research Institute and Department of Surgery, McGill University, Quebec, Canada.

出版信息

Pancreas. 1999 Oct;19(3):297-303. doi: 10.1097/00006676-199910000-00011.

Abstract

The purpose of this study was to examine the effect of incubation temperature on the structural integrity of the islet during culture. Islets were isolated from the pancreas of the Syrian golden hamster and cultured in a collagen gel for < or =12 days at 24 degrees C or 37 degrees C. At 24 degrees C, cells in the islet periphery died, leading to a complete disintegration of the mantle region in 37.4+/-5.6% of the islets. In comparison, at 37 degrees C, few islets exhibited mantle disintegration (p<0.001). Insulin immunoreactivity was distributed nonhomogeneously in islets at 24 degrees C, and the intensity of the staining, by using a semiquantitative scale (0-3), was +1. Islets cultured at 37 degrees C had a normal homogeneous distribution of insulin immunoreactivity with a score of +3. As the pancreas is a complex gland composed of different cell types, and cell-cell interactions are known to be important in the maintenance of cell survival, additional experiments were repeated to include the coculture of islets with duct epithelial cells. The proportion of islets that developed mantle disintegration was now reduced to 2.5+/-0.3% (p<0.001), comparable to that seen at 37 degrees C. Similar results were obtained for islets cultured in the presence of duct-conditioned medium (DCM). Together with the preservation of the islet mantle, islets cultured in the presence of duct epithelial cells or DCM had a normal homogeneous distribution of insulin immunoreactivity, with a staining intensity of +3. We conclude that incubation temperature has a profound effect on the structural integrity of islets, and that the detrimental effects of low-temperature culture can be mitigated by coculture of islets with secretory products derived from pancreatic ductal cells. These data provide evidence for a trophic relation between pancreatic islets and ductal epithelium.

摘要

本研究的目的是检测培养温度对培养过程中胰岛结构完整性的影响。从叙利亚金黄地鼠的胰腺中分离出胰岛,并在胶原凝胶中于24℃或37℃培养≤12天。在24℃时,胰岛周边的细胞死亡,导致37.4±5.6%的胰岛的被膜区域完全解体。相比之下,在37℃时,很少有胰岛出现被膜解体(p<0.001)。在24℃时,胰岛素免疫反应性在胰岛中分布不均匀,使用半定量量表(0 - 3),染色强度为+1。在37℃培养的胰岛胰岛素免疫反应性分布正常且均匀,评分为+3。由于胰腺是由不同细胞类型组成的复杂腺体,并且已知细胞间相互作用对维持细胞存活很重要,因此重复进行了额外实验,将胰岛与导管上皮细胞共培养。现在出现被膜解体的胰岛比例降至2.5±0.3%(p<0.001),与在37℃时观察到的情况相当。在导管条件培养基(DCM)存在下培养的胰岛也得到了类似结果。与胰岛被膜的保留一起,在导管上皮细胞或DCM存在下培养的胰岛胰岛素免疫反应性分布正常且均匀,染色强度为+3。我们得出结论,培养温度对胰岛的结构完整性有深远影响,并且低温培养的有害影响可以通过将胰岛与胰腺导管细胞分泌产物共培养来减轻。这些数据为胰岛与导管上皮之间的营养关系提供了证据。

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