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首页> 外文期刊>Nature reviews Cancer >Bioenergetic Health Assessment of a Single Caenorhabditis elegans from Postembryonic Development to Aging Stages via Monitoring Changes in the Oxygen Consumption Rate within a Microfluidic Device
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Bioenergetic Health Assessment of a Single Caenorhabditis elegans from Postembryonic Development to Aging Stages via Monitoring Changes in the Oxygen Consumption Rate within a Microfluidic Device

机译:通过监测微流体装置内的氧气消耗率的变化,从后宫内发育对老化阶段的单个Caenorhabdise秀丽隐杆线虫的生物能量健康评估

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Monitoring dynamic changes in oxygen consumption rates (OCR) of a living organism in real time provide an indirect method of monitoring changes in mitochondrial function during development, aging, or malfunctioning processes. In this study, we developed a microfluidic device integrated with an optical detection system to measure the OCR of a single developing Caenorhabditis elegans (C. elegans) from postembryonic development to aging stages in real time via phase-based phosphorescence lifetime measurement. The device consists of two components: an acrylic microwell deposited with an oxygen-sensitive luminescent layer for oxygen (O-2) measurement and a microfluidic module with a pneumatically driven acrylic lid to controllably seal the microwell. We successfully measured the basal respiration (basal OCR, in pmol O-2/min/worm) of a single C. elegans inside a microwell from the stages of postembryonic development (larval stages) through adulthood to aged adult. Sequentially adding metabolic inhibitors to block bioenergetic pathways allowed us to measure the metabolic profiles of a single C. elegans at key growth and aging stages, determining the following fundamental parameters: basal OCR, adenosine triphosphate (ATP)-linked OCR, maximal OCR, reserve respiratory capacity, OCR due to proton leak, and non-mitochondrial OCR. The bioenergetic health index (BHI) was calculated from these fundamental parameters to assess the bioenergetic health of a single developing C. elegans from the postembryonic development to aging stages. The changes in BHI are correlated to C. elegans development stage, with the highest BHI = 27.5 for 4-day-old adults, which possess well-developed bioenergetic functionality. Our proposed platform demonstrates for the first time the feasibility of assessing the BHI of a single C. elegans from postembryonic development to aging stages inside a microfluidic device and provides the potential for a wide variety of biomedical applications that relate mitochondrial malfunction and diseases.
机译:在实时监测生物体的氧气消耗率(OCR)的动态变化提供了在开发,老化或故障过程中监测线粒体功能变化的间接方法。在这项研究中,我们开发了一种与光学检测系统集成的微流体装置,以通过基于相位基磷光寿命测量来测量从后期发育到老化阶段的后期漂亮的发育中的单个开发的Caenorhabdisegrise该装置由两个组分组成:沉积有用于氧(O-2)测量的氧敏感发光层的丙烯酸微孔和具有气动驱动的丙烯酸盖的微流体模块,以控制地密封微孔。我们通过成年为年龄成人,在微孔中,在微孔中,在微孔中成功地测量了基础呼吸(基础OCR,在PMOL O-2 / MIN / WORM)中。顺序添加代谢抑制剂以阻断生物能量途径,使我们能够在关键的生长和老化阶段测量单个C.杆状随着杆状花虫的代谢谱,确定以下基本参数:基础参数:基础OCR,腺苷三磷酸(ATP) - 链接OCR,最大OCR,储备呼吸能力,OCR由于质子泄漏和非线粒体OCR。生物能量健康指数(BHI)由这些基本参数计算,以评估从后宫内发育到老龄化阶段的单个发展秀丽隐杆线虫的生物能量健康。 BHI的变化与C.杆杆线虫开发阶段相关,为期4天老成年人的BHI = 27.5,具有发达的生物能源功能。我们所提出的平台首次展示了评估从后宫内发育到微流体装置内的老化阶段的单个C椭角度的BHI的可行性,并提供了各种各样的生物医学应用,这些应用涉及线粒体故障和疾病。

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