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Detailed protocol for evaluation of dynamic perifusion of human islets to assess β-cell function

机译:评估人胰岛动态灌注以评估β细胞功能的详细方案

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The definitive measure of β-cell quality in an islet is the measurement of β-cell function, i.e., the ability of the islets to release insulin in a controlled manner in response to minute changes in ambient glucose levels. Continuous flow or dynamic perifusion of the solution containing glucose and secretagogues through the islets is the most accurate assessment of regulated insulin release in vitro. Here, we describe in detail a low cost, mini-perifusion system that can be adapted to any laboratory to assess islet function by examining dynamic insulin release in response to elevated glucose concentrations and addition of secretagogues. Human islets with purity >80% and viability >90% were perifused with low glucose (1 mM) and subsequently challenged with high glucose (16.8 mM ± KCl, 25 mM). A prototypical biphasic response to elevated glucose concentrations was observed with an average 8-fold (above basal) increase in insulin concentration at peak values. Similarly, perifusion with carbachol or exendin-4 (Byetta) with glucose (6 mM) resulted in 1.32- and 1.35-fold increase in insulin secretion above basal. Islets could be maintained in the perifusion apparatus and continued to respond to glucose for up to 3 h. At minimal financial cost and technical expertise, this apparatus can be set-up in any biological laboratory to evaluate regulated hormone release from many cell types in less than 6 h. This will allow other laboratories to measure insulin responses to their drug or modifier of interest in vitro, in a manner that better approximates islet function in vivo.
机译:胰岛中β细胞质量的确定指标是β细胞功能的测量,即胰岛响应于周围葡萄糖水平的微小变化以受控方式释放胰岛素的能力。包含葡萄糖和促分泌素的溶液通过胰岛的连续流动或动态灌注是体外调节胰岛素释放的最准确评估。在这里,我们详细描述了一种低成本的微型灌注系统,该系统可通过检查葡萄糖浓度升高和促分泌素的动态胰岛素释放而适用于任何实验室,以评估胰岛功能。将纯度> 80%和生存力> 90%的人胰岛与低葡萄糖(1 mM)融合,随后向高葡萄糖(16.8 mM±KCl,25 mM)攻击。观察到对升高的葡萄糖浓度的典型双相反应,在峰值处胰岛素浓度平均增加了8倍(基础以上)。同样,卡巴胆碱或exendin-4(Byetta)与葡萄糖(6 mM)的灌注会导致胰岛素分泌增加超过基础的1.32倍和1.35倍。胰岛可以维持在灌注设备中,并持续对葡萄糖反应长达3小时。以最低的财务成本和技术专长,可以在任何生物实验室中安装此设备,以评估在不到6小时的时间内从多种细胞类型释放的调节激素。这将允许其他实验室以更好地近似体内胰岛功能的方式在体外测量胰岛素对其感兴趣的药物或修饰剂的反应。

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