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A Physiological Pattern of Oxygenation Using Perfluorocarbon-Based Culture Devices Maximizes Pancreatic Islet Viability and Enhances β-Cell Function

机译:使用全氟化碳培养装置的氧合的生理学模式最大化胰岛胰岛活力并增强β细胞功能

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摘要

Conventional culture vessels are not designed for physiological oxygen (O 2 ) delivery. Both hyperoxia and hypoxia—commonly observed when culturing cells in regular plasticware—have been linked to reduced cellular function and death. Pancreatic islets, used for the clinical treatment of diabetes, are especially sensitive to sub- and supraphysiological O 2 concentrations. A result of current culture standards is that a high percentage of islet preparations are never transplanted because of cell death and loss of function in the 24–48 h postisolation. Here, we describe a new culture system designed to provide quasiphysiological oxygenation to islets in culture. The use of dishes where islets rest atop a perfluorocarbon (PFC)-based membrane, coupled with a careful adjustment of environmental O 2 concentration to target the islet physiological pO 2 range, resulted in dramatic gains in viability and function. These observations underline the importance of approximating culture conditions as closely as possible to those of the native microenvironment, and fill a widely acknowledged gap in our ability to preserve islet functionality in vitro. As stem cell-derived insulin-producing cells are likely to suffer from the same limitations as those observed in real islets, our findings are especially timely in the context of current efforts to define renewable sources for transplantation.
机译:常规的培养容器不是设计用于生理氧(O 2)递送。在常规塑料中培养细胞的培养细胞与降低细胞功能和死亡时,常常观察到的高氧和缺氧常见。用于临床治疗糖尿病患者的胰岛对副和超级学浓度特别敏感。目前培养标准的结果是,由于细胞死亡和24-48小时后的功能丧失,高比例的胰岛制剂从未移植。在这里,我们描述了一种新的培养系统,旨在为培养物中的胰岛提供Quasiphysiologic氧合。使用菜肴的含量在全氟化碳(PFC)的膜上静置,仔细调整环境O 2浓度以靶向胰岛生理PO 2范围,导致活力和功能急剧增益。这些观察结果强调了近似培养条件的重要性,尽可能接近天然微环境的那些,并填补了我们在体外保持胰岛功能的能力的广泛认可的差距。由于干细胞衍生的胰岛素的细胞可能患有与在真实胰岛中观察到的胰岛素的细胞相同的局限性,我们的研究结果特别是在当前努力确定可再生源进行移植的背景下。

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