活体细胞内双光子激发的光漂白特性
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国家杰出青年科学基金(60025514),国家自然科学基金(39870205,30070215,30070261)和高校博士点专项基金(98048733)等资助项目.


Photobleaching of Two-photon Excitation in Alive Cell
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This work was supported by grants from the National Natural Sciences Foundation of China for Distinguished Young Scholars (60025514), the National Nature Science Foundation of China(39870205, 3007025, 30070261) and the Research Fund for the Doctoral Progr

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    摘要:

    长波长光的强穿透能力和对活体细胞和生物组织光毒性很小的特性,使得双光子激发荧光显微术已经成为无损伤成像的重要工具.可是双光子激发的高光子密度可能会产生高次光子相互作用, 从而产生更快的光漂白.从实验上研究了离体和活体细胞内的若丹明123和若丹明B分别在单光子激发和双光子激发时的光漂白特性.在体的实验结果与离体的实验结果一致.正如期望的一样,单光子激发时光漂白速率非常近似地随着激发功率的增加而线性增加.可是,双光子激发时的光漂白速率并不是正比于激发功率的平方,而是正比于激发功率的高次方(>3.5).对绿色荧光蛋白(GFP)变异体CFP和YFP的实验也得到同样的结果,这就表明高次光漂白可能是双(多)光子激发中的普遍现象.因此多光子的应用可能会受到强光漂白的限制.

    Abstract:

    The two-photon excitation microscopy has become an important tool of noninvasive imaging due to the better penetration and relative harmlessness of the longer wavelength. However, the high photon flux in two-photon excitation can potentially lead to higher-order photobleaching within the focal volume. The relationship between the photobleaching rate and the excitation power for rhodamine 123 and rhodamine B in vivo and in vitro were measured. The coincidence of the results in vivo and in vitro demonstrated the correctness of the method. As expected, the photobleaching rate increased near-linearly with the excitation power for one-photon excitation. However, the two-photon photobleaching rate increased with high-order power (≥3.5) of excitation power, indicating the presence of high-order photon interaction in two-photon excitation microscopy. The same results are obtained by photobleaching experiments of the green fluorescence protein. As a consequence, the use of multi-photon excitation microscopy in the study may be limited by increased photobleaching.

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陈同生,曾绍群,骆清铭,张智红,周炜.活体细胞内双光子激发的光漂白特性[J].生物化学与生物物理进展,2002,29(2):261-266

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  • 收稿日期:2001-07-16
  • 最后修改日期:2001-08-28
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