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芯片上的胰腺技术在移植应用中的研究进展

Pancreas-on-a-Chip Technology for Transplantation Applications.

机构信息

Department of Transplant Medicine and Institute for Surgical Research, Oslo University Hospital, Post Box 4950, Nydalen, N-0424, Oslo, Norway.

Hybrid Technology Hub-Centre of Excellence, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

出版信息

Curr Diab Rep. 2020 Nov 18;20(12):72. doi: 10.1007/s11892-020-01357-1.

Abstract

PURPOSE OF REVIEW

Human pancreas-on-a-chip (PoC) technology is quickly advancing as a platform for complex in vitro modeling of islet physiology. This review summarizes the current progress and evaluates the possibility of using this technology for clinical islet transplantation.

RECENT FINDINGS

PoC microfluidic platforms have mainly shown proof of principle for long-term culturing of islets to study islet function in a standardized format. Advancement in microfluidic design by using imaging-compatible biomaterials and biosensor technology might provide a novel future tool for predicting islet transplantation outcome. Progress in combining islets with other tissue types gives a possibility to study diabetic interventions in a minimal equivalent in vitro environment. Although the field of PoC is still in its infancy, considerable progress in the development of functional systems has brought the technology on the verge of a general applicable tool that may be used to study islet quality and to replace animal testing in the development of diabetes interventions.

摘要

目的综述

人胰腺芯片(PoC)技术作为一种胰岛生理学体外复杂模型的平台正在迅速发展。本综述总结了目前的进展,并评估了该技术在临床胰岛移植中的应用可能性。

最近的发现

PoC 微流控平台主要展示了用于长期培养胰岛的原理验证,以标准化格式研究胰岛功能。通过使用成像兼容生物材料和生物传感器技术的微流控设计的进步,可能为预测胰岛移植结果提供一种新的未来工具。将胰岛与其他组织类型相结合的进展为在最小等效的体外环境中研究糖尿病干预提供了可能性。尽管 PoC 领域仍处于起步阶段,但功能系统的发展取得了相当大的进展,使该技术即将成为一种通用适用的工具,可用于研究胰岛质量,并在开发糖尿病干预措施时替代动物试验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/511f/7674381/4e1bf1f7f9db/11892_2020_1357_Fig1_HTML.jpg

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