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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Multiphoton Near-Infrared Femtosecond Laser Pulse-Induced DNA Damage With and Without the Photosensitizer Proflavine
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Multiphoton Near-Infrared Femtosecond Laser Pulse-Induced DNA Damage With and Without the Photosensitizer Proflavine

机译:多光子近红外飞秒激光脉冲诱导的DNA损伤与有和没有光敏剂Proflavine

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摘要

The excitation of pBR322 supercoiled plasmid DNA with intense near-IR 810 nm fs laser pulses by a simultaneous multiphoton absorption mechanism results in single-strand breaks after treatment of the irradiated samples with Micrococcus luteus UV endonuclease. This enzyme cleaves DNA strands at sites of cyclobutane dimers that are formed by the simultaneous absorption of three (or more) 810 nm IR photons (pulse width similar to 140 fs, 76 MHz pulse repetition rate, average power output focused through 10x microscope objective is similar to 1.2 MW/cm super(2)). Direct single-strand breaks (without treatment with M. luteus) were not observed under these conditions. However, in the presence of 6 mu M of the intercalator proflavine (PF), both direct single- and double-strand breaks are observed under conditions where substantial fractions of undamaged supercoiled DNA molecules are still present. The fraction of direct double-strand breaks is 30 plus or minus 5% of all measurable strand cleavage events, is independent of dosage (up to 6.4 GJ/ cm super(2)) and is proportional to I super(n), where I is the average power/area of the 810 nm fs laser pulses, and n = 3 plus or minus 1. The nicking of two DNA strands in the immediate vicinity of the excited PF molecules gives rise to this double-strand cleavage. In contrast, excitation of the same samples under low-power, single-photon absorption conditions ( similar to 400-500 nm) gives rise predominantly to single-strand breaks, but some double-strand breaks are observed at the higher dosages. Thus, single-photon excitation with 400-500 nm light and multiphoton activation of PF by near-IR fs laser pulses produces different distributions of single- and double-strand breaks. These results suggest that DNA strand cleavage originates from unrelaxed, higher excited states when PF is excited by simultaneous IR multiphoton absorption processes.
机译:通过同时的多光子吸收机制用强烈的近红外810 nm fs激光脉冲激发pBR322超螺旋质粒DNA,在用黄球菌微球菌内切核酸酶处理辐照后的样品后导致单链断裂。该酶在同时吸收三个(或更多)810 nm红外光子(脉冲宽度类似于140 fs,76 MHz脉冲重复频率,通过10倍显微镜物镜聚焦的平均功率输出为)形成的环丁烷二聚体位点切割DNA链。类似于1.2 MW / cm super(2))。在这些条件下,未观察到直接的单链断裂(未经黄褐藻治疗)。但是,在存在6μM的嵌入剂牛黄素(PF)的情况下,在仍然存在大量未损坏的超螺旋DNA分子的条件下,可以观察到直接的单链和双链断裂。直接双链断裂的分数是所有可测量的链断裂事件的30%或负5%,与剂量无关(最高6.4 GJ / cm super(2)),并且与I super(n)成比例,其中I是810 nm fs激光脉冲的平均功率/面积,n = 3正负1。在激发的PF分子紧邻处的两条DNA链的切口导致了这种双链断裂。相比之下,在低功率单光子吸收条件(类似于400-500 nm)下激发相同的样品主要引起单链断裂,但在较高剂量下观察到一些双链断裂。因此,用近红外fs激光脉冲激发400-500 nm光的单光子激发和PF的多光子激活会产生不同的单链和双链断裂分布。这些结果表明,当PF通过同时的IR多光子吸收过程被激发时,DNA链的切割起源于未松弛的,更高的激发态。

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