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Measurement for optical properties of mitochondria in vitro

机译:线粒体体外光学性质的测量

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Abstract: The effectiveness of low-intensity light for clinical therapies is well demonstrated, however, the principles of these therapies are not well understood. Our aim of this study is the investigation of optical properties of mitochondria because it seems to be the most important cellular organella in terms of the light-cell interaction. We measured the optical absorption characteristics of an isolated mitochondrial suspension in the range of 300 to 900 nm by means of the transmission methods with an integral sphere. Mitochondrial specific absorption coefficients (ml/g/cm$+$MIN@1$/) were carried out by the transmission spectrum. The specific absorption coefficient at the maximum absorption of cytochrome c$-$gamma$/ peaked about 560 ml/g/cm$+$MIN@1$/ at 418 nm. Many papers described that the effect of the low intensity light to the biological tissue would be drastically changed by the irradiation conditions. We could calculate a deposit energy of irradiated light in a mitochondrion from our results. We think our results may be useful to describe the quantitative explanation in energy balance for the interaction between the light and mitochondria.!9
机译:摘要:低强度光在临床治疗中的有效性已得到充分证明,但是,这些治疗的原理尚未得到很好的理解。这项研究的目的是研究线粒体的光学特性,因为就光细胞相互作用而言,它似乎是最重要的细胞器。我们通过具有积分球的透射方法测量了分离的线粒体悬液在300至900 nm范围内的光吸收特性。线粒体比吸收系数(ml / g / cm $ + $ MIN @ 1 $ /)通过透射光谱进行。在细胞色素c $-γ$ /最大吸收时的比吸收系数在418 nm处达到约560 ml / g / cm $ + $ MIN @ $ /。许多论文描述了低强度光对生物组织的影响将被辐照条件彻底改变。我们可以根据我们的结果计算线粒体中照射光的沉积能量。我们认为我们的结果对于描述能量平衡中光与线粒体之间的相互作用可能是有用的!9

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