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Addressing the autofluorescence issue in deep tissue imaging by two-photon microscopy: the significance of far-red emitting dyes

机译:通过双光子显微镜解决深部组织成像中的自发荧光问题:发射远红色染料的重要性

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摘要

The fluorescence imaging of tissue is essential for studying biological events beyond the cellular level. Two-photon microscopy based on the nonlinear light absorption of fluorescent dyes is a viable tool for the high resolution imaging of tissue. A key limitation for deep tissue imaging is the autofluorescence from intrinsic biomolecules. Here, we report a systematic study that discloses relative autofluorescence interference, which is dependent on the type of tissue and the excitation and emission wavelengths in two-photon imaging. Among the brain, kidney, liver, lung, and spleen mouse tissues examined, the kidney tissue exhibited prominent autofluorescence followed by the liver and others. Notably, regardless of the tissue type, prominent autofluorescence is observed not only from the green emission channel but also from the yellow emission channel where common two-photon absorbing dyes also emit, whereas there is minimal autofluorescence from the red channel. The autofluorescence is slightly influenced by the excitation wavelength. Toward minimal autofluorescence, we developed a new class of two-photon absorbing dyes that are far-red emitting, water-soluble, and very bright inside cells as well as in tissue. A comparative assessment of the imaging depth, which is dependent on the three selected dyes that emit in the blue-green, yellow, and far-red regions, shows the importance of far-red emitting dyes for deep tissue imaging.
机译:组织的荧光成像对于研究超出细胞水平的生物事件至关重要。基于荧光染料非线性光吸收的双光子显微镜是一种用于组织高分辨率成像的可行工具。深度组织成像的关键限制是固有生物分子的自发荧光。在这里,我们报道了一项系统研究,揭示了相对自发荧光干扰,这取决于组织的类型以及双光子成像中的激发和发射波长。在检查的脑,肾,肝,肺和脾脏小鼠组织中,肾组织表现出显着的自发荧光,其次是肝脏和其他。值得注意的是,无论组织类型如何,不仅从绿色发射通道观察到显着的自发荧光,而且从常见的双光子吸收染料也发射的黄色发射通道观察到显着的自发荧光,而从红色通道观察到的自发荧光最小。自发荧光受激发波长的影响很小。为了实现最小的自发荧光,我们开发了一种新型的两光子吸收染料,它们在细胞内和组织内都发出远红光,水溶性且非常明亮。对成像深度的比较评估取决于蓝绿色,黄色和远红色区域中发射的三种选定染料,显示出远红色发射染料对于深部组织成像的重要性。

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