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Oxygen-permeable microwell device maintains islet mass and integrity during shipping

机译:透氧微孔装置可在运输过程中保持胰岛质量和完整性

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摘要

Islet transplantation is currently the only minimally invasive therapy available for patients with type 1 diabetes that can lead to insulin independence; however, it is limited to only a small number of patients. Although clinical procedures have improved in the isolation and culture of islets, a large number of islets are still lost in the pre-transplant period, limiting the success of this treatment. Moreover, current practice includes islets being prepared at specialized centers, which are sometimes remote to the transplant location. Thus, a critical point of intervention to maintain the quality and quantity of isolated islets is during transportation between isolation centers and the transplanting hospitals, during which 20–40% of functional islets can be lost. The current study investigated the use of an oxygen-permeable PDMS microwell device for long-distance transportation of isolated islets. We demonstrate that the microwell device protected islets from aggregation during transport, maintaining viability and average islet size during shipping.
机译:目前,胰岛移植是唯一可用于可导致胰岛素依赖的1型糖尿病患者的微创疗法。但是,它仅限于少数患者。尽管临床程序已改善了胰岛的分离和培养,但在移植前仍遗失了大量胰岛,从而限制了该治疗的成功。此外,当前的做法包括在专门的中心准备胰岛,这些中心有时远离移植地点。因此,维持隔离小岛的质量和数量的干预的关键点是在隔离中心和移植医院之间的运输过程中,在此期间可能损失20-40%的功能性胰岛。当前的研究调查了透氧PDMS微孔装置用于离体胰岛的长距离运输的用途。我们证明了微孔设备可以保护胰岛免受运输过程中的聚集,在运输过程中保持活力和平均胰岛大小。

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