Xenogenic Engraftment of Human-Induced Pluripotent Stem Cell-Derived Pancreatic Islet Cells in an Immunosuppressive Diabetic Göttingen Mini-Pig Model.

IF 3.2 4区 医学 Q3 CELL & TISSUE ENGINEERING
Midori Yamasaki, Toshiyuki Maki, Taisuke Mochida, Teruki Hamada, Saori Watanabe-Matsumoto, Shuhei Konagaya, Manami Kaneko, Ryo Ito, Hikaru Ueno, Taro Toyoda
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Abstract

In the development of cell therapy products, immunocompromised animal models closer in size to humans are valuable for enhancing the translatability of in vivo findings to clinical trials. In the present study, we generated immunocompromised type 1 diabetic Göttingen mini-pig models and demonstrated the engraftment of human-induced pluripotent stem cell-derived pancreatic islet cells (iPICs). We induced hyperglycemia with a concomitant reduction in endogenous C-peptide levels in pigs that underwent thymectomy and splenectomy. After estimating the effective in vivo dose of immunosuppressants (ISs) via in vitro testing, we conducted exploratory implantation of iPICs using various implantation methods under IS treatments in one pig. Five weeks after implantation, histological analysis of the implanted iPICs embedded in fibrin gel revealed numerous islet-like structures with insulin-positive cells. Moreover, the area of the insulin-positive cells in the pre-peritoneally implanted grafts was greater than in the subcutaneously implanted grafts. Immunohistochemical analyses further revealed that these iPIC grafts contained cells positive for glucagon, somatostatin, and pancreatic polypeptides, similar to naturally occurring islets. The engraftment of iPICs was successfully reproduced. These data support the observation that the iPICs engrafted well, particularly in the pre-peritoneal space of the newly generated immunocompromised diabetic mini-pigs, forming islet-like endocrine clusters. Future evaluation of human cells in this immunocompromised pig model could accelerate and development of cell therapy products.

人诱导多能干细胞衍生的胰岛细胞在免疫抑制性糖尿病哥廷根小型猪模型中的异种移植。
在细胞治疗产品的开发过程中,免疫受损动物模型的大小更接近于人类,这对于提高体内研究结果向临床试验的转化能力非常有价值。在本研究中,我们制作了免疫受损的1型糖尿病哥廷根迷你猪模型,并证明了人类诱导多能干细胞衍生的胰岛细胞(iPICs)的移植。我们在诱导高血糖的同时,降低了接受胸腺切除术和脾切除术的猪的内源性C肽水平。在通过体外测试估算出免疫抑制剂(ISs)的有效体内剂量后,我们采用不同的植入方法在一头猪体内探索性地植入了 iPICs。植入五周后,对嵌入纤维蛋白凝胶的植入 iPIC 进行组织学分析,发现其中有大量胰岛素阳性细胞的小岛状结构。此外,腹膜前植入的移植物中胰岛素阳性细胞的面积大于皮下植入的移植物。免疫组化分析进一步显示,这些 iPIC 移植物含有胰高血糖素、体生长抑素和胰多肽阳性细胞,与天然存在的胰岛相似。iPICs 的移植成功地再现了。这些数据支持了 iPICs 接种良好的观察结果,尤其是在新生成的免疫受损糖尿病迷你猪的腹膜前间隙,形成了类似小岛的内分泌簇。未来在这种免疫受损猪模型中对人体细胞进行评估可加速细胞疗法产品的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell Transplantation
Cell Transplantation 生物-细胞与组织工程
CiteScore
6.00
自引率
3.00%
发文量
97
审稿时长
6 months
期刊介绍: Cell Transplantation, The Regenerative Medicine Journal is an open access, peer reviewed journal that is published 12 times annually. Cell Transplantation is a multi-disciplinary forum for publication of articles on cell transplantation and its applications to human diseases. Articles focus on a myriad of topics including the physiological, medical, pre-clinical, tissue engineering, stem cell, and device-oriented aspects of the nervous, endocrine, cardiovascular, and endothelial systems, as well as genetically engineered cells. Cell Transplantation also reports on relevant technological advances, clinical studies, and regulatory considerations related to the implantation of cells into the body in order to provide complete coverage of the field.
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