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Ultrasensitive label-free photothermal imaging, spectral identification, and quantification of cytochrome c in mitochondria, live cells, and solutions

机译:超敏感的无标记光热成像,光谱鉴定和线粒体,活细胞和溶液中细胞色素c的定量

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Light-absorbing endogenous cellular proteins, in particular cytochrome c, are used as intrinsic biomarkers for studies of cell biology and environment impacts. To sense cytochrome c against real biological backgrounds, we combined photothermal (PT) thermal-lens single-channel schematic in a back-synchronized measurement mode and a multiplex thermal-lens schematic in a transient high resolution (ca. 350 nm) imaging mode. These multifunctional PT techniques using continuous-wave (cw) Ar~+ laser and a nanosecond pulsed optical parametric oscillator in the visible range demonstrated the capability for label-free spectral identification and quantification of trace amounts of cytochrome c in a single mitochondrion alone or within a single live cell. PT imaging data were verified in parallel by molecular targeting and fluorescent imaging of cellular cytochrome c. The detection limit of cytochrome c in a cw mode was 5 x 10~(-9) mol/L (80 attomols in the signal-generation zone); that is ca. 10~3 lower than conventional absorption spectroscopy. Pulsed fast PT microscopy provided the detection limit for cytochrome c at the level of 13 zmol (13 x 10~(-21) mol) in the ultrasmall irradiated volumes limited by optical diffraction effects. For the first time. we demonstrate a combination of high resolution PT imaging with PT spectral identification and ultrasensitive quantitative PT characterization of cytochrome c within individual mitochondria in single live cells. A potential of far-field PT microscopy to sub-zeptomol detection thresholds, resolution beyond diffraction limit, PT Raman spectroscopy, and 3D imaging are further highlighted.
机译:吸收光的内源性细胞蛋白质,特别是细胞色素c,被用作研究细胞生物学和环境影响的内在生物标记。为了在实际生物学背景下检测细胞色素c,我们将反向同步测量模式下的光热(PT)热透镜单通道示意图与瞬态高分辨率(约350 nm)成像模式下的多路热透镜示意图相结合。这些使用连续波(cw)Ar〜+激光和纳秒脉冲光学参量振荡器在可见光范围内的多功能PT技术证明了无标记光谱识别和定量检测单个线粒体中或单个线粒体内痕量细胞色素c的能力。一个活细胞。通过分子靶向和细胞色素c的荧光成像并行验证PT成像数据。 cw模式下细胞色素c的检出限为5 x 10〜(-9)mol / L(信号产生区为80 attomol)。那是ca。比常规吸收光谱低10〜3。脉冲快速PT显微镜在受光学衍射效应限制的超小辐照量中,提供了13 zmol(13 x 10〜(-21)mol)的细胞色素c检测限。首次。我们证明了高分辨率PT成像与PT光谱识别以及单个活细胞中单个线粒体中细胞色素c的超灵敏定量PT表征相结合。进一步强调了远场PT显微镜在亚Zeptomol检测阈值,超过衍射极限的分辨率,PT拉曼光谱和3D成像方面的潜力。

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