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首页> 外文期刊>Applied optics >Effects of fixatives on myelin molecular order probed with RP-CARS microscopy
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Effects of fixatives on myelin molecular order probed with RP-CARS microscopy

机译:RP-CAS显微镜探测骨髓素分子序列的含量

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摘要

When live imaging is not feasible, sample fixation allows preserving the ultrastructure of biological samples for subsequent microscopy analysis. This process could be performed with various methods, each one affecting differently the biological structure of the sample. While these alterations were well-characterized using traditional microscopy, little information is available about the effects of the fixatives on the spatial molecular orientation of the biological tissue. We tackled this issue by employing rotating-polarization coherent anti-Stokes Raman scattering (RP-CARS) microscopy to study the effects of different fixatives on the myelin sub-micrometric molecular order and micrometric morphology. RP-CARS is a novel technique derived from CARS microscopy that allows probing spatial orientation of molecular bonds while maintaining the intrinsic chemical selectivity of CARS microscopy. By characterizing the effects of the fixation procedures, the present work represents a useful guide for the choice of the best fixation technique(s), in particular for polarization-resolved CARS microscopy. Finally, we show that the combination of paraformaldehyde and glutaraldehyde can be effectively employed as a fixative for RP-CARS microscopy, as long as the effects on the molecular spatial distribution, here characterized, are taken into account. (C) 2020 Optical Society of America
机译:当实时成像不可行时,样品固定允许保持生物样品的超微结构以进行后续显微镜分析。该过程可以用各种方法进行,每个方法每一个影响样品的生物结构。虽然使用传统显微镜的这些改变是良好的表征,但是关于固件对生物组织的空间分子取向的影响很少。我们通过采用旋转偏振相干抗刺激拉曼散射(RP-CARS)显微镜来解决这个问题,以研究不同固定剂对骨髓蛋白亚微米分子量和微电形态的影响。 RP-CAR是一种新的技术源自汽车显微镜,允许探测分子键的空间取向,同时保持汽车显微镜的内在化学选择性。通过表征固定程序的效果,本作工作代表了选择最佳固定技术的有用指南,特别是用于偏振分辨的汽车显微镜。最后,我们表明,多甲醛和戊二醛的组合可以有效地用作RP-CAS显微镜的固定剂,只要在这里表征了对分子空间分布的影响,就会考虑。 (c)2020美国光学学会

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    《Applied optics》 |2020年第6期|共7页
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