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移植到皮下空间的工程化胰岛细胞簇在治疗糖尿病方面优于胰岛。

Engineered islet cell clusters transplanted into subcutaneous space are superior to pancreatic islets in diabetes.

作者信息

Pathak Shiva, Regmi Shobha, Gupta Biki, Pham Tung Thanh, Yong Chul Soon, Kim Jong Oh, Yook Simmyung, Kim Jae-Ryong, Park Min Hui, Bae Young Kyung, Jeong Jee-Heon

机构信息

College of Pharmacy, Yeungnam University, Gyeongsan, South Korea.

College of Pharmacy, Keimyung University, Daegu, South Korea.

出版信息

FASEB J. 2017 Nov;31(11):5111-5121. doi: 10.1096/fj.201700490R. Epub 2017 Jul 28.

Abstract

An alternative route for pancreatic islet transplantation is the subcutaneous space; however, inadequate vascularization in the subcutaneous space limits the availability of oxygen and nutrients to the subcutaneously transplanted islets, which leads to the development of a necrotic core in the islets, thereby causing islet dysfunction. Thus, we aimed to prevent the early apoptosis of pancreatic islets after transplantation into subcutaneous space by preparing islet clusters of appropriate size. We prepared fully functional islet cell clusters (ICCs) by using the hanging-drop technique. We optimized the size of ICCs on the basis of viability and functionality after culture in an hypoxic environment. We transplanted ICCs into the subcutaneous space of diabetic mice and evaluated the viability of the islets at the transplantation site. In an hypoxic environment, ICCs exhibited improved viability and functionality compared with control islets. ICCs, upon transplantation into the hypoxic subcutaneous space of diabetic mice, showed better glycemic control compared with control islets. Live/dead imaging of the islets after retrieval from the transplanted area revealed significantly reduced apoptosis in ICCs. Transplantation of ICCs may be an attractive strategy to prevent islet cell apoptosis that results from nonimmune-mediated physiologic stress at the transplantation site.-Pathak, S., Regmi, S., Gupta, B., Pham, T. T., Yong, C. S., Kim, J. O., Yook, S., Kim, J.-R., Park, M. H., Bae, Y. K., Jeong, J.-H. Engineered islet cell clusters transplanted into subcutaneous space are superior to pancreatic islets in diabetes.

摘要

胰岛移植的另一条途径是皮下间隙;然而,皮下间隙血管化不足限制了皮下移植胰岛获得氧气和营养物质,这导致胰岛内出现坏死核心,进而引起胰岛功能障碍。因此,我们旨在通过制备合适大小的胰岛团簇来防止移植到皮下间隙后的胰岛早期凋亡。我们采用悬滴技术制备了功能完备的胰岛细胞团簇(ICCs)。我们根据在缺氧环境中培养后的活力和功能对ICCs的大小进行了优化。我们将ICCs移植到糖尿病小鼠的皮下间隙,并评估移植部位胰岛的活力。在缺氧环境中,与对照胰岛相比,ICCs表现出更高的活力和功能。将ICCs移植到糖尿病小鼠的缺氧皮下间隙后,与对照胰岛相比,血糖控制更好。从移植区域取出后对胰岛进行的活/死成像显示,ICCs中的凋亡明显减少。移植ICCs可能是一种有吸引力的策略,可防止因移植部位非免疫介导的生理应激导致的胰岛细胞凋亡。——帕塔克,S.,雷格米,S.,古普塔,B.,范,T.T.,勇,C.S.,金,J.O.,柳,S.,金,J.-R.,朴,M.H.,裴,Y.K.,郑,J.-H. 移植到皮下间隙的工程化胰岛细胞团簇在糖尿病治疗方面优于胰岛。

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