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用近红外飞秒激光脉冲对人类染色体进行纳米切割。

Nanodissection of human chromosomes with near-infrared femtosecond laser pulses.

作者信息

König K, Riemann I, Fritzsche W

出版信息

Opt Lett. 2001 Jun 1;26(11):819-21. doi: 10.1364/ol.26.000819.

Abstract

Near-infrared laser pulses of a compact 80-MHz femtosecond laser source at 800 nm, a mean power of 15-100 mW, 170-fs pulse width, and millisecond beam dwell times at the target have been used for multiphoton-mediated nanoprocessing of human chromosomes. By focusing of the laser beam with high-numerical-aperture objectives of a scanning microscope to diffraction-limited spots and with light intensities of terawatts per cubic centimeter, precise submicrometer holes and cuts in human chromosomes have been processed by single-point exposure and line scans. A minimum FWHM cut size of ~100 nm during a partial dissection of chromosome 1, which is below the diffraction-limited spot size, and a minimum material removal of ~0.003mum (3) were determined by a scanning-force microscope. The plasma-induced ablated material corresponds to ~1/400 of the chromosome 1 volume and to ~65x10(3) base pairs of chromosomal DNA. A complete dissection could be performed with FWHM cut sizes below 200 nm. High-repetition-frequency femtosecond lasers at low mean power in combination with high-numerical-aperture focusing optics appear therefore as appropriate noncontact tools for nanoprocessing of bulk and (or) surfaces of transparent materials such as chromosomes. In particular, the noninvasive inactivation of certain genomic regions on single chromosomes within living cells becomes possible.

摘要

800纳米的紧凑型80兆赫飞秒激光源产生的近红外激光脉冲,平均功率为15 - 100毫瓦,脉冲宽度为170飞秒,在目标处的光束驻留时间为毫秒级,已被用于人类染色体的多光子介导纳米加工。通过扫描显微镜的高数值孔径物镜将激光束聚焦到衍射极限光斑,并使光强达到每立方厘米太瓦级,通过单点曝光和线扫描对人类染色体进行了精确的亚微米级打孔和切割。在对1号染色体进行部分切割时,扫描力显微镜确定了最小半高宽切割尺寸约为100纳米,低于衍射极限光斑尺寸,最小材料去除量约为0.003微米(3)。等离子体诱导烧蚀的材料相当于1号染色体体积的约1/400,以及约65×10(3)个染色体DNA碱基对。可以用低于200纳米的半高宽切割尺寸进行完全切割。因此,低平均功率的高重复频率飞秒激光与高数值孔径聚焦光学器件相结合,似乎是用于透明材料(如染色体)的整体和(或)表面纳米加工的合适非接触工具。特别是,对活细胞内单条染色体上某些基因组区域进行无创失活成为可能。

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