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裸鼠中装置包封的人诱导多能干细胞源性胰腺内胚层的网膜和皮下作为植入部位的比较。

Comparison of Omentum and Subcutis as Implant Sites for Device-Encapsulated Human iPSC-Derived Pancreatic Endoderm in Nude Rats.

机构信息

Diabetes Research Center, Vrije Universiteit Brussel (VUB), Brussels, Belgium.

Nestlé Institute of Health Sciences (NIHS), Nestec SA, Lausanne, Switzerland.

出版信息

Cell Transplant. 2023 Jan-Dec;32:9636897231167323. doi: 10.1177/09636897231167323.

Abstract

Subcutaneous implants of device-encapsulated stem cell-derived pancreatic endoderm (PE) can establish a functional beta cell mass (FBM) with metabolic control in immune-compromised mice. In a study with human-induced pluripotent stem cell-PE, this outcome was favored by a preformed pouch which allowed lesion-free insertion of devices in a pre-vascularized site. This was not reproduced in nude rats, known to exhibit a higher innate reactivity than mice and therefore relevant as preclinical model: a dense fibrotic capsule formed around subcutis (SC) implants with virtually no FBM formation. Placement in omentum (OM) of nude rats provided a less fibrous, better vascularized environment than SC. It resulted in less donor cell loss (56% recovery at post-transplant-PT week 3 versus 16% in SC) allowing FBM-formation. At PT week 30, 6/13 OM-recipients exhibited glucose-induced plasma hu-C-peptide to 0.1-0.4 ng/ml, versus 0/8 in SC-recipients. These levels are more than 10-fold lower than in a state of metabolic control. This shortcoming is not caused by inadequate glucose responsiveness of the beta cells but by their insufficient number. The size of the formed beta cell mass (0.4 0.2 µl) was lower than that reported in mice receiving the same cell product subcutaneously; the difference is attributed to a lower expansion of pancreatic progenitor cells and to their lower degree of differentiation to beta cells. This study in the nude rat model demonstrates that OM provides a better environment for formation of beta cells in device-encapsulated PE-implants than SC. It also identified targets for increasing their dose-efficacy.

摘要

皮下植入设备包裹的干细胞衍生胰腺内胚层(PE)可以在免疫功能低下的小鼠中建立具有代谢控制功能的功能性β细胞团(FBM)。在一项使用人诱导多能干细胞-PE 的研究中,这种结果得益于预先形成的囊袋,允许在预先血管化的部位无损伤地插入设备。在裸鼠中没有重现这种结果,裸鼠已知比小鼠具有更高的固有反应性,因此作为临床前模型具有相关性:在皮下(SC)植入物周围形成致密的纤维囊,几乎没有形成 FBM。将裸鼠的大网膜(OM)放置在比 SC 更好的血管化环境中。这导致供体细胞损失减少(移植后第 3 周的 PT 时为 56%,而在 SC 中为 16%),从而允许 FBM 形成。在 PT 第 30 周时,13 个 OM 受体中有 6 个表现出葡萄糖诱导的血浆 hu-C-肽达到 0.1-0.4ng/ml,而 8 个 SC 受体中没有。这些水平比代谢控制状态下低 10 多倍。这种不足不是由于β细胞对葡萄糖反应不足,而是由于β细胞数量不足。形成的β细胞团的大小(0.4±0.2µl)低于接受相同细胞产物皮下注射的小鼠报告的大小;差异归因于胰腺祖细胞的扩张较少,以及它们向β细胞的分化程度较低。这项在裸鼠模型中的研究表明,OM 为设备包裹的 PE 植入物中β细胞的形成提供了比 SC 更好的环境。它还确定了增加其剂量疗效的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e30/10150423/aa4d37f1c487/10.1177_09636897231167323-fig1.jpg

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