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Measuring cytochrome c redox state using Resonance Raman spectroscopy to determine metabolic rates in electron transport chain when exposed to light

机译:使用共振拉曼光谱法测量细胞色素C氧化还原状态,从而确定电子传输链中的代谢速率

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Photobiomodulation, also known as low level laser therapy (LLLT), is a technique that uses light in the red and nearinfrared (NIR) range (600-900 nm) to elicit a clinically beneficial physiological change in tissue. This physiological changeis thought to begin in the mitochondria by altering the metabolic rate for the electron transport chain (ETC). ResonanceRaman spectroscopy at 532 nm was used to determine the reduction/oxidation (redox) state of cytochrome c in isolatedmitochondria after undergoing LLLT. Mitochondria from hTERT-RPE1 cells were isolated and placed in glutamate bufferand then exposed to violet (405 nm) or red (635 nm) light. The resonance Raman spectrum of the cytochrome c redox statebefore and after light illumination was measured. This gives us an insight into the types of metabolic changes that occurswithin the mitochondria while being illuminated by light during photobiomodulation.
机译:光致调节,也称为低水平激光治疗(LLLT),是一种在红色和附近使用光的技术红外线(NIR)范围(600-900 nm),以引发组织的临床有益生理变化。这种生理变革被认为通过改变电子传输链(ETC)的代谢率来开始在线粒体。谐振532nm处的拉曼光谱法用于确定分离的细胞色素c的还原/氧化(氧化还原)状态在接受lltt后的线粒体。来自HTERT-RPE1细胞的线粒体分离并置于谷氨酸缓冲液中然后暴露于紫色(405nm)或红色(635nm)光。细胞色素C氧化还原状态的共振拉曼光谱在测量光照照射之前和之后。这使我们能够深入了解发生的代谢变化类型在PhotoOmodulation期间被光照射的同时在线粒体内。

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