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A Versatile Model of Microfluidic Perifusion System for the Evaluation of C-Peptide Secretion Profiles: Comparison Between Human Pancreatic Islets and HLSC-Derived Islet-Like Structures

机译:评估C肽分泌特征的微流灌注系统的通用模型:人胰岛和HLSC衍生的胰岛样结构之间的比较。

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摘要

A robust and easy-to-use tool for the ex vivo dynamic evaluation of pancreatic islet (PI) function is essential for further development of novel cell-based therapeutic approaches to treating diabetes. Here, we developed four different glucose perifusion protocols (GPPs) in a microfluidic perifusion system (MPS), based entirely on commercially available components. After validation, the GPPs were used to evaluate C-peptide secretion profiles of PIs derived from different donors (healthy, obese, and type 2 diabetic) and from human liver stem-cell-derived islet-like structures (HLSC-ILS). Using this device, we demonstrated that PIs derived from healthy donors displayed a physiological C-peptide secretion profile as characterized by the response to (a) different glucose concentrations, (b) consecutive pulses of high-glucose concentrations, (c) a glucose threshold ranging from 5–8 mM, and (d) a constant high-glucose perifusion in a biphasic manner. Moreover, we were able to detect a dysregulated secretion profile in PIs derived from both obese and type 2 diabetes mellitus (T2DM) donors. Finally, we also evaluated the kinetic secretion profiles of HLSC-ILS, demonstrating that, nonetheless, with a lower amplitude of secretion compared to PI derived from healthy donors, they were already glucose-responsive on day seven post-differentiation. In conclusion, we have provided evidence that our MPS is a versatile device and may represent a valuable tool to study insulin-producing cells in vitro.
机译:用于胰岛(PI)功能离体动态评估的强大且易于使用的工具对于进一步开发基于细胞的新型糖尿病治疗方法至关重要。在这里,我们完全基于市售组件,在微流灌注系统(MPS)中开发了四种不同的葡萄糖灌注协议(GPPs)。验证后,GPP用于评估衍生自不同供体(健康,肥胖和2型糖尿病)和人肝干细胞来源的胰岛样结构(HLSC-ILS)的PI的C肽分泌谱。使用该设备,我们证明了来自健康供体的PI表现出生理C肽分泌特征,其特征在于对以下因素的响应:(a)不同的葡萄糖浓度,(b)连续的高葡萄糖浓度脉冲,(c)葡萄糖阈值范围为5–8 mM,以及(d)以双相方式持续不断的高糖灌注。此外,我们能够检测到来自肥胖和2型糖尿病(T2DM)供体的PI中分泌失调。最后,我们还评估了HLSC-ILS的动力学分泌谱,表明尽管如此,与源自健康供体的PI相比,其分泌幅度更低,它们在分化后第7天已经对葡萄糖产生反应。总之,我们提供了证据表明我们的MPS是一种多功能设备,可能代表了一种在体外研究胰岛素产生细胞的有价值的工具。

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