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工程化血管床为产生胰腺激素的细胞提供关键信号。

Engineered vascular beds provide key signals to pancreatic hormone-producing cells.

机构信息

Department of Biomedical Engineering, Technion - Israel Institute of Technology, Haifa, Israel.

出版信息

PLoS One. 2012;7(7):e40741. doi: 10.1371/journal.pone.0040741. Epub 2012 Jul 12.

Abstract

The mechanisms underlying early islet graft failure are not entirely clear, but are thought to involve ischemic injury due to delayed vascularization. We hypothesize that blood vessels play an active role in cell-cell communications supporting islet survival and engraftment. To test this hypothesis and to uncouple endothelial cell (EC)-generated signaling stimuli from their nutritional and gas exchange functions, we developed three dimensional (3D) endothelial vessel networks in engineered pancreatic tissues prepared from islets, fibroblasts and ECs. The tri-culture setup, seeded on highly porous biocompatible polymeric scaffolds closely mimics the natural anatomical context of pancreatic vasculature. Enhanced islet survival correlating with formation of functional tube-like endothelial vessels was demonstrated. Addition of foreskin fibroblasts to islet-endothelial cultures promoted tube-like structure formation, which further supported islet survival as well as insulin secretion. Gene expression profiles of EC growth factors, extracellular matrix (ECM), morphogenes and differentiation markers were significantly different in 2D versus 3D culture systems and were further modified upon addition of fibroblasts. Implantation of prevascularized islets into diabetic mice promoted survival, integration and function of the engrafted engineered tissue, supporting the suggested role of ECs in islet survival. These findings present potential strategies for preparation of transplantable islets with increased survival prospects.

摘要

早期胰岛移植物失功的机制尚不完全清楚,但据认为与血管化延迟导致的缺血性损伤有关。我们假设血管在支持胰岛存活和植入的细胞间通讯中发挥积极作用。为了验证这一假说,并将内皮细胞(EC)产生的信号刺激与其营养和气体交换功能分离,我们在由胰岛、成纤维细胞和 EC 制备的工程化胰腺组织中开发了三维(3D)血管网络。该三培养体系接种在高度多孔的生物相容性聚合物支架上,非常接近胰腺血管的自然解剖结构。结果表明,增强的胰岛存活与功能性管状内皮血管的形成相关。将包皮成纤维细胞添加到胰岛-内皮培养物中促进了管状结构的形成,这进一步支持了胰岛的存活和胰岛素分泌。与 2D 培养系统相比,EC 生长因子、细胞外基质(ECM)、形态发生和分化标志物的基因表达谱在 3D 培养系统中明显不同,并且在添加成纤维细胞后进一步修饰。将预血管化胰岛植入糖尿病小鼠中可促进移植工程化组织的存活、整合和功能,支持 EC 在胰岛存活中的作用。这些发现为制备具有更高存活前景的可移植胰岛提供了潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fda/3395696/f069d304d284/pone.0040741.g001.jpg

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