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iPreP is a three-dimensional nanofibrillar cellulose hydrogel platform for long-term ex vivo preservation of human islets

机译:iPreP是三维纳米原纤维纤维素水凝胶平台可长期离体保存人类胰岛

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摘要

Islet transplantation is an effective therapy for achieving and maintaining normoglycemia in patients with type 1 diabetes mellitus. However, the supply of transplantable human islets is limited. Upon removal from the pancreas, islets rapidly disintegrate and lose function, resulting in a short interval for studies of islet biology and pretransplantation assessment. Here, we developed a biomimetic platform that can sustain human islet physiology for a prolonged period ex vivo. Our approach involved the creation of a multichannel perifusion system to monitor dynamic insulin secretion and intracellular calcium flux simultaneously, enabling the systematic evaluation of glucose-stimulated insulin secretion under multiple conditions. Using this tool, we developed a nanofibrillar cellulose hydrogel–based ( ) that can preserve islet viability, morphology, and function for nearly 12 weeks ex vivo, and with the ability to ameliorate glucose levels upon transplantation into diabetic hosts. Our platform has potential applications in the prolonged maintenance of human islets, providing an expanded time window for pretransplantation assessment and islet studies.
机译:胰岛移植是一种用于实现和维持1型糖尿病患者血糖正常的有效疗法。但是,可移植人类胰岛的供应有限。从胰脏中取出后,胰岛会迅速崩解并失去功能,导致胰岛生物学研究和移植前评估的时间间隔很短。在这里,我们开发了一个仿生平台,该平台可以长期维持人体胰岛的生理功能。我们的方法涉及创建多通道灌注系统,以同时监测动态胰岛素分泌和细胞内钙通量,从而能够在多种情况下系统评估葡萄糖刺激的胰岛素分泌。使用该工具,我们开发了一种基于纳米纤维纤维素的水凝胶(),可以离体将胰岛的活力,形态和功能保持近12周,并且能够改善移植到糖尿病宿主中的葡萄糖水平。我们的平台在人类胰岛的长期维护中具有潜在的应用,为移植前评估和胰岛研究提供了扩展的时间范围。

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