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A cellular isolation system for real-time single-cell oxygen consumption monitoring

机译:用于实时单细胞耗氧量监测的细胞隔离系统

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摘要

The development of a cellular isolation system (CIS) that enables the monitoring of single-cell oxygen consumption rates in real time is presented. The CIS was developed through a multidisciplinary effort within the Microscale Life Sciences Center (MLSC) at the University of Washington. The system comprises arrays of microwells containing Pt-porphyrin-embedded polystyrene microspheres as the reporter chemistry, a lid actuator system and a gated intensified imaging camera, all mounted on a temperature-stabilized confocal microscope platform. Oxygen consumption determination experiments were performed on RAW264.7 mouse macrophage cells as proof of principle. Repeatable and consistent measurements indicate that the oxygen measurements did not adversely affect the physiological state of the cells measured. The observation of physiological rates in real time allows studies of cell-to-cell heterogeneity in oxygen consumption rate to be performed. Such studies have implications in understanding the role of mitochondrial function in the progression of inflammatory-based diseases, and in diagnosing and treating such diseases.
机译:介绍了能够实时监控单细胞耗氧率的细胞隔离系统(CIS)的开发。 CIS是在华盛顿大学微型生命科学中心(MLSC)内通过多学科努力而开发的。该系统包括微孔阵列,这些微孔包含安装在温度稳定的共焦显微镜平台上的微孔阵列,微孔阵列包含作为报告化学试剂的Pt卟啉包埋的聚苯乙烯微球。作为原理的证明,在RAW264.7小鼠巨噬细胞上进行了耗氧量测定实验。可重复且一致的测量结果表明氧气测量值不会对测量的细胞的生理状态产生不利影响。实时观察生理速率允许研究耗氧速率中细胞间的异质性。此类研究对理解线粒体功能在炎症性疾病进展中的作用以及诊断和治疗此类疾病具有重要意义。

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