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一种优化用于胰岛微环境 3D 建模的人胰腺细胞外基质水凝胶。

A human pancreatic ECM hydrogel optimized for 3-D modeling of the islet microenvironment.

机构信息

Division of Transplantation, Department of Surgery, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, WI, USA.

Department of Medicine, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Sci Rep. 2022 May 3;12(1):7188. doi: 10.1038/s41598-022-11085-z.

Abstract

Extracellular matrix (ECM) plays a multitude of roles, including supporting cells through structural and biochemical interactions. ECM is damaged in the process of isolating human islets for clinical transplantation and basic research. A platform in which islets can be cultured in contact with natural pancreatic ECM is desirable to better understand and support islet health, and to recapitulate the native islet environment. Our study demonstrates the derivation of a practical and durable hydrogel from decellularized human pancreas that supports human islet survival and function. Islets embedded in this hydrogel show increased glucose- and KCl-stimulated insulin secretion, and improved mitochondrial function compared to islets cultured without pancreatic matrix. In extended culture, hydrogel co-culture significantly reduced levels of apoptosis compared to suspension culture and preserved controlled glucose-responsive function. Isolated islets displayed altered endocrine and non-endocrine cell arrangement compared to in situ islets; hydrogel preserved an islet architecture more similar to that observed in situ. RNA sequencing confirmed that gene expression differences between islets cultured in suspension and hydrogel largely fell within gene ontology terms related to extracellular signaling and adhesion. Natural pancreatic ECM improves the survival and physiology of isolated human islets.

摘要

细胞外基质 (ECM) 具有多种功能,包括通过结构和生化相互作用来支持细胞。在为临床移植和基础研究分离人胰岛的过程中,ECM 会受到损伤。需要一个平台,使胰岛能够在与天然胰腺 ECM 接触的情况下进行培养,以更好地理解和支持胰岛健康,并再现天然胰岛环境。我们的研究证明了从脱细胞化的人胰腺中衍生出一种实用且耐用的水凝胶,该水凝胶支持人胰岛的存活和功能。与没有胰腺基质培养的胰岛相比,嵌入这种水凝胶中的胰岛显示出葡萄糖和 KCl 刺激的胰岛素分泌增加,以及线粒体功能改善。在延长培养中,与悬浮培养相比,水凝胶共培养显著降低了细胞凋亡水平,并保持了受控制的葡萄糖反应性功能。与原位胰岛相比,分离的胰岛显示出内分泌和非内分泌细胞排列的改变;水凝胶保留了更类似于原位观察到的胰岛结构。RNA 测序证实,悬浮和水凝胶培养的胰岛之间的基因表达差异主要属于与细胞外信号和黏附相关的基因本体术语。天然胰腺 ECM 可提高分离的人胰岛的存活率和生理功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe80/9065104/314abfcacc8c/41598_2022_11085_Fig1_HTML.jpg

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