Xu C, Zipfel W, Shear J B, Williams R M, Webb W W
Cornell University, Ithaca, NY 14853, USA.
Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):10763-8. doi: 10.1073/pnas.93.20.10763.
Intrinsic, three-dimensionally resolved, microscopic imaging of dynamical structures and biochemical processes in living preparations has been realized by nonlinear laser scanning fluorescence microscopy. The search for useful two-photon and three-photon excitation spectra, motivated by the emergence of nonlinear microscopy as a powerful biophysical instrument, has now discovered a virtual artist's palette of chemical indicators, fluorescent markers, and native biological fluorophores, including NADH, flavins, and green fluorescent proteins, that are applicable to living biological preparations. More than 25 two-photon excitation spectra of ultraviolet and visible absorbing molecules reveal useful cross sections, some conveniently blue-shifted, for near-infrared absorption. Measurements of three-photon fluorophore excitation spectra now define alternative windows at relatively benign wavelengths to excite deeper ultraviolet fluorophores. The inherent optical sectioning capability of nonlinear excitation provides three-dimensional resolution for imaging and avoids out-of-focus background and photodamage. Here, the measured nonlinear excitation spectra and their photophysical characteristics that empower nonlinear laser microscopy for biological imaging are described.
通过非线性激光扫描荧光显微镜,已实现对活体标本中动态结构和生化过程的内在、三维分辨的显微成像。随着非线性显微镜作为一种强大的生物物理仪器的出现,对有用的双光子和三光子激发光谱的探索,现已发现了一系列宛如艺术家调色板般丰富的化学指示剂、荧光标记物和天然生物荧光团,包括烟酰胺腺嘌呤二核苷酸(NADH)、黄素和绿色荧光蛋白等,它们适用于活体生物标本。超过25种紫外和可见光吸收分子的双光子激发光谱显示出有用的截面,其中一些方便地发生了蓝移,可用于近红外吸收。三光子荧光团激发光谱的测量现在定义了在相对无害波长处的替代窗口,以激发更深层的紫外荧光团。非线性激发固有的光学切片能力为成像提供了三维分辨率,避免了离焦背景和光损伤。在此,描述了测量的非线性激发光谱及其光物理特性,这些特性使非线性激光显微镜能够用于生物成像。