Department of Biomedical Engineering, Faculty of Medicine, McGill University, 3775 University Street, Montreal (QC), Canada.
Biomaterials. 2011 Feb;32(6):1536-42. doi: 10.1016/j.biomaterials.2010.10.036. Epub 2010 Nov 19.
Human pancreatic islet in vitro culture is very challenging and requires the presence of various extra cellular matrix (ECM) components in a three-dimensional environment, which provides mechanical and biological support. The development of such an environment is vital in providing favourable conditions to preserve human islets in long-term culture. In this study, we investigated the effects of human islet culture within various three-dimensional environments; collagen I gel, collagen I gel supplemented with ECM components fibronectin and collagen IV, and microfabricated scaffold with ECM-supplemented gel. The cultured human islets were analyzed for functionality, gene expression and hormone content following long-term in vitro culture. It was clear the incorporation of ECM components within the three-dimensional support improved prolonged culture. However, long-term and highly uniform human islet culture within a microfabricated scaffold, with controlled pore structures, coupled with the presence of ECM components, displayed an insulin release profile similar to freshly isolated islets, yielding a stimulation index of approximately 1.8. Moreover, gene expression was markedly increased for all pancreatic genes, giving a approximately 50-fold elevation of insulin gene expression with respect to suspension culture. The distribution and presence of pancreatic hormones was also highly elevated. These findings provide a platform for the long-term maintenance and preservation of human pancreatic islets in vitro.
人胰腺胰岛的体外培养极具挑战性,需要在三维环境中存在各种细胞外基质 (ECM) 成分,以提供机械和生物学支持。开发这种环境对于在长期培养中为保存人胰岛提供有利条件至关重要。在这项研究中,我们研究了人胰岛在各种三维环境中的培养效果;I 型胶原凝胶、补充了 ECM 成分纤连蛋白和 IV 型胶原的 I 型胶原凝胶,以及补充 ECM 的凝胶的微制造支架。长期体外培养后,分析培养的人胰岛的功能、基因表达和激素含量。很明显,在三维支架中加入 ECM 成分可以改善延长的培养。然而,在具有受控孔结构的微制造支架中进行长期且高度均匀的人胰岛培养,并结合 ECM 成分的存在,显示出与新鲜分离的胰岛相似的胰岛素释放谱,产生约 1.8 的刺激指数。此外,所有胰腺基因的表达都明显增加,相对于悬浮培养,胰岛素基因的表达增加了约 50 倍。胰腺激素的分布和存在也显著增加。这些发现为长期维持和保存人胰腺胰岛提供了一个体外平台。