Kirsch A K, Subramaniam V, Striker G, Schnetter C, Arndt-Jovin D J, Jovin T M
Department of Molecular Biology, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
Biophys J. 1998 Sep;75(3):1513-21. doi: 10.1016/S0006-3495(98)74070-6.
We have implemented continuous-wave two-photon excitation of near-UV absorbing fluorophores in a scanning near-field optical microscope (SNOM). The 647-nm emission of an Ar-Kr mixed gas laser was used to excite the UV-absorbing DNA dyes DAPI, the bisbenzimidazole Hoechst 33342, and ethidium bromide in a shared aperture SNOM with uncoated fiber tips. Polytene chromosomes of Drosophila melanogaster and the nuclei of 3T3 Balb/c cells labeled with these dyes were readily imaged. The fluorescence intensity showed the expected nonlinear (second order) dependence on the excitation power in the range of 8-180 mW. We measured the fluorescence intensity as a function of the tip-sample displacement in the direction normal to the sample surface in the single- and two-photon excitation modes (SPE, TPE). The fluorescence intensity decayed faster in TPE than in SPE.
我们已在扫描近场光学显微镜(SNOM)中实现了对近紫外吸收荧光团的连续波双光子激发。使用氩 - 氪混合气体激光器的647 nm发射光,在具有未涂层光纤尖端的共享孔径SNOM中激发吸收紫外光的DNA染料4′,6-二脒基-2-苯基吲哚(DAPI)、双苯并咪唑Hoechst 33342和溴化乙锭。用这些染料标记的黑腹果蝇多线染色体和3T3 Balb/c细胞核很容易成像。荧光强度在8 - 180 mW范围内对激发功率呈现出预期的非线性(二阶)依赖性。我们在单光子激发模式(SPE)和双光子激发模式(TPE)下,测量了荧光强度随尖端 - 样品在垂直于样品表面方向上位移的变化。双光子激发模式下的荧光强度比单光子激发模式下衰减得更快。