Preculturing Islets With Adipose-Derived Mesenchymal Stromal Cells Is an Effective Strategy for Improving Transplantation Efficiency at the Clinically Preferred Intraportal Site.

C. Rackham, P. Dhadda, Aurélie Le Lay, A. King, P. Jones
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引用次数: 37

Abstract

We have recently shown that preculturing islets with kidney-derived mesenchymal stromal cells (MSCs) improves transplantation outcome in streptozotocin-diabetic mice implanted with a minimal mass of islets beneath the kidney capsule. In the present study, we have extended our previous observations to investigate whether preculturing islets with MSCs can also be used to enhance islet function at the clinically used intraportal site. We have used MSCs derived from adipose tissue, which are more readily accessible than alternative sources in human subjects and can be expanded to clinically efficacious numbers, to preculture islets throughout this study. The in vivo efficacy of grafts consisting of islets precultured alone or with MSCs was tested using a syngeneic streptozotocin-diabetic minimal islet mass model at the clinically relevant intraportal site. Blood glucose concentrations were monitored for 1 month. The vascularization of islets precultured alone or with MSCs was investigated both in vitro and in vivo, using immunohistochemistry. Islet insulin content was measured by radioimmunoassay. The effect of preculturing islets with MSCs on islet function in vitro was investigated using static incubation assays. There was no beneficial angiogenic influence of MSC preculture, as demonstrated by the comparable vascularization of islets precultured alone or with MSCs, both in vitro after 3 days and in vivo 1 month after islet transplantation. However, the in vitro insulin secretory capacity of MSC precultured islets was superior to that of islets precultured alone. In vivo, this was associated with improved glycemia at 7, 14, 21, and 28 days posttransplantation, in recipients of MSC precultured islets compared to islets precultured alone. The area of individual islets within the graft-bearing liver was significantly higher in recipients of MSC precultured islets compared to islets precultured alone. Our experimental studies suggest that preculturing islets with MSCs represents a favorable strategy for improving the efficiency of clinical islet transplantation.
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用脂肪来源的间充质间质细胞预培养胰岛是提高临床首选门静脉内移植效率的有效策略。
我们最近的研究表明,用肾源间充质间质细胞(MSCs)预培养胰岛可以改善链脲佐菌素糖尿病小鼠在肾被膜下植入少量胰岛的移植结果。在本研究中,我们扩展了之前的观察结果,以研究用MSCs预培养胰岛是否也可以用于增强临床上使用的门静脉内部位的胰岛功能。在整个研究中,我们使用了来自脂肪组织的间充质干细胞来预培养胰岛,这比人类受试者的其他来源更容易获得,并且可以扩展到临床有效的数量。在临床相关的门静脉内部位,使用同基因链脲佐菌素-糖尿病最小胰岛块模型,测试由单独或与MSCs一起预培养的胰岛组成的移植物的体内疗效。监测血糖浓度1个月。采用免疫组织化学方法,在体外和体内研究了单独培养或与MSCs一起预培养的胰岛血管化情况。用放射免疫法测定胰岛胰岛素含量。采用静态孵育法研究体外培养MSCs对胰岛功能的影响。在体外3天和体内1个月的胰岛移植后,单独或与MSCs一起预培养的胰岛血管形成都证明了MSC预培养没有有益的血管生成影响。然而,MSC预培养的胰岛体外胰岛素分泌能力优于单独预培养的胰岛。在体内,与单独预培养的胰岛相比,MSC预培养的胰岛受体在移植后7、14、21和28天的血糖改善相关。移植肝脏内单个胰岛的面积在MSC预培养的胰岛受体中明显高于单独预培养的胰岛。我们的实验研究表明,用间充质干细胞预培养胰岛是提高临床胰岛移植效率的有利策略。
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Cell medicine
Cell medicine MEDICINE, RESEARCH & EXPERIMENTAL-
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