Wilson Jeremy D, Bigelow Chad E, Calkins David J, Foster Thomas H
Department of Physics and Astronomy, University of Rochester, Rochester, New York 14642, USA.
Biophys J. 2005 Apr;88(4):2929-38. doi: 10.1529/biophysj.104.054528. Epub 2005 Jan 14.
Angularly resolved light scattering measurements were performed on suspensions of EMT6 cells and on mitochondria isolated from rabbit liver. Mie theory analysis of the scattering from intact cells indicated that mitochondrial-sized organelles dominated scattering in the range 5-90 degrees . This interpretation was supported by the analysis of scattering from isolated mitochondria. Intact cells were subjected to oxidative stress by photodynamic insult. After 3 h of incubation in the heme precursor aminolevulinic acid hexylester, EMT6 cells accumulated abundant protoporphyrin IX, an endogenous photosensitizer formed in mitochondria. Irradiation of aminolevulinic acid/protoporphyrin IX-sensitized cells with 10 J cm(-2) of 514 nm light led to pronounced changes in angularly resolved light scattering consistent with mitochondrial swelling. Electron microscopy of similarly treated EMT6 cell monolayers showed significant changes in mitochondrial morphology, which included distension of the outer unit membrane and bloating of the internal mitochondrial compartment. Informed by these electron microscopy results, we implemented a coated sphere model to interpret the scattering from intact cells subjected to oxidative stress. The coated sphere interpretation was compatible with the scattering measurements from these cells, whereas simpler Mie theory models based on homogenous swelling were dramatically unsuccessful. Thus, in this system, angularly resolved light scattering reports oxidative-stress-induced changes in mitochondrial morphology.
对EMT6细胞悬液以及从兔肝脏分离得到的线粒体进行了角分辨光散射测量。对完整细胞散射的米氏理论分析表明,线粒体大小的细胞器在5 - 90度范围内主导着散射。对分离线粒体散射的分析支持了这一解释。完整细胞通过光动力损伤遭受氧化应激。在血红素前体氨基乙酰丙酸己酯中孵育3小时后,EMT6细胞积累了丰富的原卟啉IX,这是一种在线粒体中形成的内源性光敏剂。用10 J cm(-2)的514 nm光照射氨基乙酰丙酸/原卟啉IX敏化的细胞,导致角分辨光散射发生明显变化,这与线粒体肿胀一致。对同样处理的EMT6细胞单层进行电子显微镜观察,发现线粒体形态有显著变化,包括外单位膜扩张和线粒体内腔膨胀。基于这些电子显微镜结果,我们采用了包覆球体模型来解释遭受氧化应激的完整细胞的散射。包覆球体解释与这些细胞的散射测量结果相符,而基于均匀肿胀的更简单的米氏理论模型则明显不成功。因此,在这个系统中,角分辨光散射反映了氧化应激诱导的线粒体形态变化。