Literature DB >> 21093908

Long-term in vitro human pancreatic islet culture using three-dimensional microfabricated scaffolds.

Jamal T Daoud1, Maria S Petropavlovskaia, Jason M Patapas, Christian E Degrandpré, Robert W Diraddo, Lawrence Rosenberg, Maryam Tabrizian.   

Abstract

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. 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 21093908     DOI: 10.1016/j.biomaterials.2010.10.036

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  32 in total

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4.  Pdx1 and controlled culture conditions induced differentiation of human amniotic fluid-derived stem cells to insulin-producing clusters.

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Review 5.  Tissue engineering approaches to cell-based type 1 diabetes therapy.

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7.  A Collagen Based Cryogel Bioscaffold that Generates Oxygen for Islet Transplantation.

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Review 8.  Polymeric Scaffolds for Pancreatic Tissue Engineering: A Review.

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9.  Extracellular factors and immunosuppressive drugs influencing insulin secretion of murine islets.

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Review 10.  Hyaluronan: A Mediator of Islet Dysfunction and Destruction in Diabetes?

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