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用光轴相关的光学傅里叶滤波器检测线粒体裂变。

Detection of mitochondrial fission with orientation-dependent optical Fourier filters.

机构信息

Department of Biomedical Engineering, Rutgers University, Piscataway, NJ 08854, USA.

出版信息

Cytometry A. 2011 Feb;79(2):137-48. doi: 10.1002/cyto.a.21011. Epub 2011 Jan 3.

Abstract

We utilize a recently developed optical imaging method based on Fourier processing with Gabor-like filters to detect changes in light scattering resulting from alterations in mitochondrial structure in endothelial cells undergoing apoptosis. Imaging based on Gabor filters shows a significant decrease in the orientation of subcellular organelles at 60 to 100 minutes following apoptosis induction and concomitant with mitochondrial fragmentation observed by fluorescence. The optical scatter changes can be detected at low resolution at the whole cell level. At high resolution, we combine fluorescence imaging of the mitochondria with optical Fourier-based imaging to demonstrate that the dynamic decrease in organelle orientation measured by optical Gabor filtering is spatially associated with fluorescent mitochondria and remains largely absent from nonfluorescent subcellular regions. These results provide strong evidence that the optical Gabor responses track mitochondrial fission during apoptosis and can be used to provide label-free, rapid monitoring of this morphological process within single cells.

摘要

我们利用最近开发的基于傅里叶处理和类 Gabor 滤波器的光学成像方法,来检测凋亡过程中内皮细胞中线粒体结构变化导致的光散射变化。基于 Gabor 滤波器的成像显示,在凋亡诱导后 60 至 100 分钟内,细胞器的亚细胞取向显著减少,同时观察到荧光标记的线粒体碎片化。可以在整个细胞水平的低分辨率下检测到光散射变化。在高分辨率下,我们将线粒体的荧光成像与基于傅里叶光学的成像相结合,证明通过光学 Gabor 滤波测量的细胞器取向的动态减少与荧光标记的线粒体具有空间相关性,并且主要不存在于非荧光的亚细胞区域。这些结果提供了有力的证据,表明光学 Gabor 响应可跟踪凋亡过程中线粒体的分裂,并可用于对单个细胞内这种形态过程进行无标记、快速监测。

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