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同基因移植后纯化的胰岛样细胞聚集体(假胰岛)的血管化。

Vascularization of purified pancreatic islet-like cell aggregates (pseudoislets) after syngeneic transplantation.

作者信息

Beger C, Cirulli V, Vajkoczy P, Halban P A, Menger M D

机构信息

Institute for Surgical Research, University of Munich, Germany.

出版信息

Diabetes. 1998 Apr;47(4):559-65. doi: 10.2337/diabetes.47.4.559.

Abstract

To clarify whether avascular purified endocrine cell aggregates derived from islets of Langerhans (pseudoislets) revascularize similarly to what is known for intact pancreatic islet grafts, we studied the process of angiogenesis and revascularization of syngeneically transplanted pseudoislets using intravital fluorescence microscopy. Pseudoislets were composed of pure beta-cells (B) or non-beta-cells (NB), as well as of mixed beta- and non-beta-cells (B/NB; 70/30%) or nonsorted-cells (NC), and were transplanted into the dorsal skinfold of Syrian golden hamsters. Intact islet grafts served as controls. At day 6 after transplantation, microvascularization of all types of pseudoislets was found to be less than in controls, as indicated by a reduced number of transplants that contained newly formed microvessels (take-rate: B, 38.8; NB, 38.7; B/NB, 43.8; and NC, 40.3% vs. intact islet grafts, 71.9%; P < 0.01). Moreover, those pseudoislets that had developed a microvascular network revealed a significantly lower functional capillary density (145.8+/-49.5 to 241.0+/-47.5 cm(-1) vs. intact islet grafts: 459.8+/-65.6 cm(-1); P < 0.05). After 20 days, the take-rate of pseudoislets was still lower (B, 67.4; NB, 45.3; B/NB, 48.4; and NC, 64.2%) when compared with intact islet grafts (88%; P < 0.05); however, islet-like aggregates with vascularization now showed an islet-specific glomerulus-like network of capillaries with a functional capillary density (498.5+/-49.1 to 601.4+/-124.0 cm[-1]) similar to that of intact islet grafts (644.3+/-26.8 cm[-1]). We conclude that the dissociation of pancreatic islets, followed by reaggregation of the purified endocrine cells to islet-like clusters (pseudoislets), delays the process of angiogenesis and revascularization after free transplantation; however, this does not influence the capacity to form an intact islet-specific microvasculature (angio-architecture), which appears to be independent from the cellular composition of pseudoislets.

摘要

为了阐明源自朗格汉斯岛的无血管纯化内分泌细胞聚集体(假胰岛)的血管再生是否与完整胰岛移植的情况类似,我们使用活体荧光显微镜研究了同基因移植假胰岛的血管生成和血管再生过程。假胰岛由纯β细胞(B)或非β细胞(NB)组成,也有β细胞和非β细胞混合(B/NB;70/30%)或未分选细胞(NC)组成,并移植到叙利亚金仓鼠的背部皮褶中。完整胰岛移植作为对照。移植后第6天,发现所有类型假胰岛的微血管化程度均低于对照组,这表现为含有新形成微血管的移植体数量减少(成功率:B组为38.8%;NB组为38.7%;B/NB组为43.8%;NC组为40.3%,而完整胰岛移植组为71.9%;P<0.01)。此外,那些已形成微血管网络的假胰岛显示出功能性毛细血管密度显著较低(145.8±49.5至241.0±47.5cm-1,而完整胰岛移植组为459.8±65.6cm-1;P<0.05)。20天后,假胰岛的成功率仍低于完整胰岛移植组(B组为67.4%;NB组为45.3%;B/NB组为48.4%;NC组为64.2%)(88%;P<0.05);然而,具有血管化的胰岛样聚集体现在显示出具有功能性毛细血管密度(498.5±49.1至601.4±124.0cm[-1])的胰岛特异性肾小球样毛细血管网络,与完整胰岛移植组(644.3±26.8cm[-1])相似。我们得出结论,胰岛解离后,纯化的内分泌细胞重新聚集形成胰岛样簇(假胰岛),会延迟自由移植后的血管生成和血管再生过程;然而,这并不影响形成完整的胰岛特异性微血管系统(血管结构)的能力,该能力似乎独立于假胰岛的细胞组成。

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