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通过同步谐波产生和荧光显微镜观察心肌细胞中的线粒体。

Visualization of mitochondria in cardiomyocytes by simultaneous harmonic generation and fluorescence microscopy.

作者信息

Barzda Virginijus, Greenhalgh Catherine, Aus der Au Jürg, Elmore Steven, van Beek Johannes, Squier Jeff

出版信息

Opt Express. 2005 Oct 3;13(20):8263-76. doi: 10.1364/opex.13.008263.

Abstract

The simultaneous detection of third harmonic (THG), and multiphoton excitation fluorescence (MPF) or second harmonic (SHG) from the same focal volume has led us to the development of a nonlinear multimodal microscopic biological imaging tool. The multimodal microscope has been applied for imaging of isolated live cardiomyocytes, and investigation of structural origin of the THG and SHG signals has been performed. By employing the different image contrast mechanisms, differentiation of structures inside a single live adult rat cardiomyocyte has been achieved. Based on structural crosscorrelation image analysis between NAD(P)H fluorescence and THG, and morphology of cardiomyocytes we were able to assign large part of the structure revealed by THG to the mitochondria. The crosscorrelation of THG with fluorescence of tetramethylrhodamine methyl ester (TMRM) labeled cardiomyocytes confirmed the mitochondrial origin of THG. The SHG generated structures were anticorrelated with THG and possessed the characteristic pattern of the myofibrils in the myocyte in accordance with the literature. Possible visualization of mitochondria with THG microscopy appeared due to enhancement of the third harmonic by multilayer arrangement of cristae.

摘要

从同一焦体积同时检测三次谐波(THG)、多光子激发荧光(MPF)或二次谐波(SHG),促使我们开发出一种非线性多模态显微生物成像工具。该多模态显微镜已应用于分离的活心肌细胞成像,并对THG和SHG信号的结构起源进行了研究。通过采用不同的图像对比机制,实现了对单个成年大鼠活心肌细胞内部结构的区分。基于NAD(P)H荧光与THG之间的结构互相关图像分析以及心肌细胞的形态,我们能够将THG揭示的大部分结构归属于线粒体。THG与四甲基罗丹明甲酯(TMRM)标记的心肌细胞荧光的互相关证实了THG的线粒体起源。根据文献,SHG产生的结构与THG呈反相关,并具有心肌细胞中肌原纤维的特征模式。由于嵴的多层排列增强了三次谐波,使得用THG显微镜观察线粒体成为可能。

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