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使用改良的共聚焦激光扫描显微镜对活细胞进行三维分辨双光子荧光显微镜检查。

3D resolved two-photon fluorescence microscopy of living cells using a modified confocal laser scanning microscope.

作者信息

König K, Simon U, Halbhuber K J

机构信息

Institute of Anatomy II, Friedrich Schiller University, Jena, Germany.

出版信息

Cell Mol Biol (Noisy-le-grand). 1996 Dec;42(8):1181-94.

PMID:8997522
Abstract

Non-linear 3D imaging of fluorophore-labelled vital cells has been performed by femtosecond near infrared (NIR) microscopy. Ultraviolet and visible transitions of intracellular fluorophores, such as Fura-2, Calcium Green, Rhodamine 123 and fluorescent microspheres, were excited via simultaneous absorption of two 780 nm photons provided by a tunable Ti:Sapphire laser. The femtosecond laser was coupled to a conventional upright Zeiss confocal laser scanning microscope expanding its one-photon capabilities to 3D resolved two-photon microscopy. Pinhole-free non-linear 3D imaging was possible with 400 nm lateral and approximately 1 micron axial resolution. Axial resolution could be further improved by using an additional detection pinhole. The NIR average power and pulse width at the sample were adjusted to be 1-4 m W and 150-200 fs, respectively. Higher power levels resulted in cell damage as demonstrated by photoinduced lysis of human erythrocytes. The powerful capabilities of this universal microscope were demonstrated by 3D imaging of two-photon excited fluorophore-labelled macrophages during phagocytosis of fluorescent microsized beads.

摘要

通过飞秒近红外(NIR)显微镜对荧光团标记的活细胞进行了非线性3D成像。细胞内荧光团(如Fura-2、钙绿、罗丹明123和荧光微球)的紫外和可见跃迁,是通过可调谐钛宝石激光器提供的两个780nm光子的同时吸收来激发的。飞秒激光与传统的蔡司正置共聚焦激光扫描显微镜耦合,将其一光子功能扩展到三维分辨双光子显微镜。可以实现无针孔的非线性3D成像,横向分辨率为400nm,轴向分辨率约为1微米。通过使用额外的检测针孔,轴向分辨率可以进一步提高。样品处的近红外平均功率和脉冲宽度分别调整为1-4mW和150-200fs。如人红细胞的光诱导裂解所示,更高的功率水平会导致细胞损伤。通过对荧光微珠吞噬过程中双光子激发的荧光团标记巨噬细胞进行3D成像,展示了这种通用显微镜的强大功能。

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