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受 SFG 显微镜辅助的活肌原纤维的相干拉曼成像。

Coherent Raman Imaging of Live Muscle Sarcomeres Assisted by SFG Microscopy.

机构信息

Companion Diagnostics and Medical Technology Research Group, DGIST, Daegu, 42988, Republic of Korea.

Department of Brain and Cognitive Science, DGIST, Daegu, 42988, Republic of Korea.

出版信息

Sci Rep. 2017 Aug 23;7(1):9211. doi: 10.1038/s41598-017-09571-w.

Abstract

In this study, we used spectrally focused coherent anti-Stokes Raman scattering (spCARS) microscopy assisted by sum-frequency generation (SFG) to monitor the variations in the structural morphology and molecular vibrations of a live muscle of Caenorhabditis elegans. The subunits of the muscle sarcomeres, such as the M-line, myosin, dense body, and α-actinin, were alternatively observed using spCARS microscopy for different sample orientations, with the guidance of a myosin positional marker captured by SFG microscopy. Interestingly enough, the beam polarization dependence of the spCARS contrasts for two parallel subunits (dense body and myosin) showed a ~90° phase difference. The chemically sensitive spCARS spectra induced by the time-varying overlap of two pulses allowed (after a robust subtraction of the non-resonant background using a modified Kramers-Krönig transformation method) high-fidelity detection of various genetically modified muscle sarcomeres tuned to the C-H vibration (2800-3100 cm). Conversely, SFG image mapping assisted by phase-retrieved spCARS spectra also facilitated label-free monitoring of the changes in the muscle content of C. elegans that are associated with aging, based on the hypothesis that the C-H vibrational modes could serve as qualitative chemical markers sensitive to the amount and/or structural modulation of the muscle.

摘要

在这项研究中,我们使用受和频产生 (SFG) 辅助的光谱聚焦相干反斯托克斯拉曼散射 (spCARS) 显微镜来监测秀丽隐杆线虫活体肌肉的结构形态和分子振动变化。使用 spCARS 显微镜,通过 SFG 显微镜捕获的肌球蛋白位置标记物的指导,对不同样品取向的肌节亚基(如 M 线、肌球蛋白、密体和α-辅肌动蛋白)进行交替观察。有趣的是,两个平行亚基(密体和肌球蛋白)的 spCARS 对比度的光束偏振依赖性显示出约 90°的相位差。通过两个脉冲的时变重叠产生的对化学敏感的 spCARS 光谱(使用经过改进的凯末尔-克朗尼变换方法对非共振背景进行稳健的扣除后)允许对各种经基因改造的肌肉肌节进行高保真检测,这些肌节调谐到 C-H 振动(2800-3100 cm)。相反,通过相位重建 spCARS 光谱辅助的 SFG 图像映射也有助于根据 C-H 振动模式可以作为对肌肉含量的量和/或结构调制敏感的定性化学标记物的假设,对与衰老相关的秀丽隐杆线虫的肌肉含量变化进行无标记监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad42/5569110/4cedca2365ae/41598_2017_9571_Fig1_HTML.jpg

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