首页> 外文会议>Conference on Biomedical Applications of Light Scattering; 20080119-21; San Jose,CA(US) >Relationship between light scattering and absorption due to cytochrome c oxidase reduction during loss of tissue viability in brains of rats
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Relationship between light scattering and absorption due to cytochrome c oxidase reduction during loss of tissue viability in brains of rats

机译:大鼠脑组织活力丧失过程中细胞色素c氧化酶还原引起的光散射与吸收的关系

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We performed simultaneous measurement of light scattering and absorption due to reduction of cytochrome c oxidase as intrinsic optical signals that are related to morphological characteristics and energy metabolism, respectively, for rat brains after oxygen/glucose deprivation by saline infusion. To detect change in light scattering, we determined the wavelength that was the most insensitive to change in light absorption due to the reduction of cytochrome c oxidase on the basis of multiwavelength analysis of diffuse reflectance data set for each rat. Then the relationships between scattering signal and absorption signals related to the reductions of heme aa_3 (605 nm) and CuA (830 nm) in cytochrome c oxidase were examined. Measurements showed that after starting saline infusion, the reduction of heme aa_3 started first; thereafter triphasic, large scattering change occurred (200-300 s), during which the reduction of CuA started. Despite such complex behaviors of IOSs, almost linear correlations were seen between the scattering signal and the heme aa_3-related absorption signal, while a relatively large animal-to-animal variation was observed in the correlation between the scattering signal and CuA-related absorption signal. Transmission electron microscopic observation revealed that dendritic swelling and mitochondrial deformation occurred in the cortical surface tissue after the triphasic scattering change. These results suggest that mitochondrial energy failure accompanies morphological alteration in the brain tissue and results in change in light scattering; light scattering will become an important indicator of tissue viability in brain.
机译:我们同时测量了由于细胞色素C氧化酶的减少而引起的光散射和吸收,这是内在的光信号,分别与盐水输注的氧/葡萄糖剥夺后的大鼠大脑的形态特征和能量代谢有关。为了检测光散射的变化,我们基于每只大鼠的漫反射数据集的多波长分析,确定了由于细胞色素C氧化酶减少而对光吸收变化最不敏感的波长。然后研究了散射信号与吸收信号之间的关系,这些信号与血红素aa_3(605 nm)和CuA(830 nm)在细胞色素c氧化酶中的还原有关。测量结果表明,开始输注盐水后,血红素aa_3的还原开始。此后发生了三次,大的散射变化(200-300 s)发生,在此期间开始降低CuA。尽管IOS具有如此复杂的行为,但在散射信号和血红素aa_3相关的吸收信号之间仍观察到几乎线性的相关性,而在散射信号与CuA相关的吸收信号之间的相关性中观察到相对较大的动物间差异。透射电子显微镜观察表明,在三次散射改变后,皮质表面组织中发生了树突状膨胀和线粒体变形。这些结果表明,线粒体能量衰竭伴随着大脑组织的形态学改变,并导致光散射的改变。光散射将成为大脑组织生存能力的重要指标。

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