首页> 外文期刊>Journal of innovative optical health sciences >POWER OF DUAL-WAVELENGTH APPROACHES IN STUDYING PHYSIOLOGICAL AND FUNCTIONAL CHANGES OF INTACT HEART AND IN VIVO BRAIN
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POWER OF DUAL-WAVELENGTH APPROACHES IN STUDYING PHYSIOLOGICAL AND FUNCTIONAL CHANGES OF INTACT HEART AND IN VIVO BRAIN

机译:双波长方法在研究完整心和体内脑的生理和功能变化中的作用

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摘要

Since the dual-wavelength spectrophotometer was developed, it has been widely used for studying biological samples and applied to extensive investigations of the electron transport in respiration and redox cofactors, redox state, metabolic control, and the generation of reactive oxygen species in mitochondria. Here, we discuss some extension of dual-wavelength approaches in our research to study the physiological and functional changes in intact hearts and in vivo brain. Specifically, we aimed at (1) making nonratiometric fluorescent indicator become ratiometric fluorescence function for investigation of Ca2+ dynamics in live tissue; (2) eliminating the effects of physiological changes on measurement of intracellular calcium; (3) permitting simultaneous imaging of multiple physiological parameters. The animal models of the perfused heart and transiently ischemic insult of brain are used to validate these approaches for physiological applications.
机译:自从开发了双波长分光光度计以来,它已被广泛用于研究生物样品,并广泛用于呼吸和氧化还原辅助因子中的电子传输,氧化还原状态,代谢控制以及线粒体中活性氧的生成。在这里,我们讨论了双波长方法在研究中的一些扩展,以研究完整心脏和体内大脑的生理和功能变化。具体而言,我们旨在(1)使非比例荧光指示剂成为用于研究活组织中Ca2 +动力学的比例荧光功能; (2)消除生理变化对细胞内钙测量的影响; (3)允许同时成像多个生理参数。灌注心脏和短暂性脑缺血的动物模型被用于验证这些方法在生理上的应用。

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