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Wide-field medium-repetition-rate multiphoton microscopy reduces photodamage of living cells

机译:宽视野中重复率多光子显微镜可减少活细胞的光损伤

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摘要

Demands of higher spatial and temporal resolutions in linear and nonlinear imaging keep pushing the limits of optical microscopy. We showed recently that a multiphoton microscope with 200 kHz repetition rate and wide-field illumination has a 2–3 orders of magnitude improved throughput compared to a high repetition rate confocal scanning microscope. Here, we examine the photodamage mechanisms and thresholds in live cell imaging for both systems. We first analyze theoretically the temperature increase in an aqueous solution resulting from illuminating with different repetition rates (keeping the deposited energy and irradiated volume constant). The analysis is complemented with photobleaching experiments of a phenolsulfonphthalein (phenol red) solution. Combining medium repetition rates and wide-field illumination promotes thermal diffusivity, which leads to lower photodamage and allows for higher peak intensities. A three day proliferation assay is also performed on living cells to confirm these results: dwell times can be increased by a factor of 3×106 while still preserving cell proliferation. By comparing the proliferation data with the endogenous two-photon fluorescence decay, we propose to use the percentage of the remaining endogenous two-photonfluorescence after exposure as a simple in-situ viability test. These findingsenable the possibility of long-term imaging and reduced photodamage.
机译:在线性和非线性成像中对更高的空间和时间分辨率的需求不断推动着光学显微镜的极限。我们最近发现,与高重复频率共聚焦扫描显微镜相比,具有200 kHz重复频率和宽视野照明的多光子显微镜的通量提高了2-3个数量级。在这里,我们检查两种系统的活细胞成像中的光损伤机理和阈值。我们首先从理论上分析以不同的重复率进行照明(保持沉积的能量和照射的体积恒定)导致的水溶液温度升高。该分析辅以酚磺酞(酚红)溶液的光漂白实验。中等重复率和宽视野照明相结合可提高热扩散率,从而导致较低的光损伤并允许更高的峰强度。还对活细胞进行了为期三天的增殖测定,以证实这些结果:在保持细胞增殖的同时,停留时间可以增加3×10 6 。通过将增殖数据与内源性双光子荧光衰减进行比较,我们建议使用剩余的内源性双光子的百分比暴露后的荧光作为简单的原位生存力测试。这些发现可以进行长期成像并减少光损伤。

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