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在 Oroboros Oxygraph-2K 分析仪中,稳定化在呼吸测量期间保护胰岛完整性。

Stabilization protects islet integrity during respirometry in the Oroboros Oxygraph-2K analyzer.

机构信息

Department of Pediatrics, Indiana University School of Medicine, Indianapolis, IN, USA.

Department of Emergency Medicine, Indiana University School of Medicine, Indianapolis, IN, USA.

出版信息

Islets. 2022 Dec 31;14(1):128-138. doi: 10.1080/19382014.2022.2054251.

Abstract

Metabolic dysfunction of β-cells has been implicated as a contributor to diabetes pathogenesis, and efforts are ongoing to optimize analytical techniques that evaluate islet metabolism. High-resolution respirometry offers sensitive measurements of the respiratory effects of metabolic substrates and customizable manipulation of electron transport chain components, though the delicate nature of islets can pose challenges to conventional analyses. An affordable and reliable option for respirometry is the Oroboros Oxygraph-2 K system, which utilizes a stir bar to circulate reagents around cells. While this technique may be suitable for individual cells or mitochondria, the continual force exerted by the stir bar can have damaging effects on islet integrity. Herein, we demonstrate the protective benefits of a novel 3D-printed islet stabilization device and highlight the destructive effects of conventional Oxygraph analysis on islet integrity. Islet containment did not inhibit cellular responses to metabolic modulatory drugs, as indicated by robust fluctuations in oxygen consumption rates. The average size of wild-type mouse islets was significantly reduced following a standard Mito Stress Test within Oxygraph chambers, with a clear disruption in islet morphology and viability. Alternatively, containment of the islets within the interior chamber of the islet stabilization device yielded preservation of both islet morphology and increased cell viability/survival after respirometry analysis. Collectively, our study introduces a new and easily accessible tool to improve conventional Oxygraph respirometry of pancreatic islets by preserving natural islet structure and function throughout metabolic analysis.

摘要

β细胞的代谢功能障碍被认为是糖尿病发病机制的一个因素,目前正在努力优化分析技术,以评估胰岛代谢。高分辨率呼吸测量法提供了对代谢底物呼吸作用的敏感测量和电子传递链组件的定制操作,但胰岛的脆弱性质给常规分析带来了挑战。一种经济实惠且可靠的呼吸测量法选择是 Oroboros Oxygraph-2K 系统,它利用搅拌棒使试剂在细胞周围循环。虽然这种技术可能适用于单个细胞或线粒体,但搅拌棒不断施加的力会对胰岛的完整性产生破坏性影响。在此,我们展示了一种新型 3D 打印胰岛稳定装置的保护益处,并强调了传统 Oxygraph 分析对胰岛完整性的破坏性影响。胰岛的封闭并没有抑制细胞对代谢调节剂药物的反应,这表明氧耗率有明显的波动。在 Oxygraph 室中进行标准的 Mito Stress Test 后,野生型小鼠胰岛的平均大小显著减小,胰岛形态和活力明显受到破坏。相比之下,将胰岛封闭在胰岛稳定装置的内部腔室内,既能保持胰岛形态,又能在呼吸测量分析后提高细胞活力/存活率。总的来说,我们的研究引入了一种新的、易于获得的工具,通过在整个代谢分析过程中保持天然胰岛结构和功能,来改善胰腺胰岛的常规 Oxygraph 呼吸测量法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d9/8959522/e228df704ab7/KISL_A_2054251_UF0001_OC.jpg

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