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超氧阴离子的化学发光成像可检测β细胞功能和质量。

Chemiluminescence Imaging of Superoxide Anion Detects Beta-Cell Function and Mass.

作者信息

Bronsart Laura L, Stokes Christian, Contag Christopher H

机构信息

Department of Biology, Stanford University, 318 Campus Drive, Stanford, California 94305, United States of America.

Department of Pediatrics, Stanford University, 318 Campus Drive, Stanford, California 94305, United States of America.

出版信息

PLoS One. 2016 Jan 11;11(1):e0146601. doi: 10.1371/journal.pone.0146601. eCollection 2016.

Abstract

Superoxide anion is produced during normal cellular respiration and plays key roles in cellular physiology with its dysregulation being associated with a variety of diseases. Superoxide anion is a short-lived molecule and, therefore, its homeostatic regulation and role in biology and disease requires dynamic quantification with fine temporal resolution. Here we validated coelenterazine as a reporter of intracellular superoxide anion concentration and used it as a dynamic measure both in vitro and in vivo. Chemiluminescence was dependent upon superoxide anion levels, including those produced during cellular respiration, and concentrations varied both kinetically and temporally in response to physiologically relevant fluctuations in glucose levels. In vivo imaging with coelenterazine revealed that beta cells of the pancreas have increased levels of superoxide anion, which acted as a measure of beta-cell function and mass and could predict the susceptibility of mice to diabetes mellitus. Glucose response and regulation are key elements of cellular physiology and organismal biology, and superoxide anion appears to play a fundamental and dynamic role in both of these processes.

摘要

超氧阴离子在正常细胞呼吸过程中产生,在细胞生理学中发挥关键作用,其失调与多种疾病相关。超氧阴离子是一种寿命短暂的分子,因此,其稳态调节以及在生物学和疾病中的作用需要具有精细时间分辨率的动态定量分析。在此,我们验证了腔肠素作为细胞内超氧阴离子浓度报告分子的作用,并在体外和体内将其用作动态测量指标。化学发光依赖于超氧阴离子水平,包括细胞呼吸过程中产生的超氧阴离子水平,并且其浓度会随着葡萄糖水平的生理相关波动在动力学和时间上发生变化。用腔肠素进行的体内成像显示,胰腺的β细胞中超氧阴离子水平升高,这可作为β细胞功能和质量的指标,并能预测小鼠患糖尿病的易感性。葡萄糖反应和调节是细胞生理学和机体生物学的关键要素,而超氧阴离子似乎在这两个过程中都发挥着重要的动态作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d19/4709142/1cda71603f1a/pone.0146601.g001.jpg

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