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首页> 外文期刊>Journal of Biophotonics >Enhancement of extracellular molecule uptake in plasmonic laser perforation
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Enhancement of extracellular molecule uptake in plasmonic laser perforation

机译:等离子体激光打孔中细胞外分子摄取的增强

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摘要

The use of laser induced surface plasmons on metal nanoparticles has proven to be an excellent tool for the delivery of molecules like siRNA and DNA into cells. However, a detailed understanding of the basic mechanisms of molecular uptake and the influence of parameters like biological environment is missing. In this study we analyzed the uptake of fluorescent dextrans with sizes from 10 to 2000 kDa, which resembles a wide range of biologically relevant molecules in size using a 532 nm picosecond laser system and 200 nm gold nanoparticles. Our results show a strong uptake-dependence on cell medium or buffer, but no dominant dependence on osmotic conditions. The relation between pulse energy and number of pulses for a given perforation efficiency revealed that multiphoton ionization of water might contribute to perforation. Moreover, a seven-fold uptake-enhancement could be reached with optimized parameters, providing a very promising basis for further studies and applications.
机译:事实证明,在金属纳米颗粒上使用激光诱导的表面等离激元是将siRNA和DNA等分子递送到细胞中的绝佳工具。但是,缺少对分子吸收的基本机理和诸如生物环境之类的参数的影响的详细理解。在这项研究中,我们分析了使用532 nm皮秒激光系统和200 nm金纳米粒子吸收大小为10至2000 kDa的荧光葡聚糖的情况,该大小类似于范围广泛的生物学相关分子。我们的结果显示出对细胞培养基或缓冲液的强烈吸收依赖性,但对渗透条件无显着依赖性。对于给定的穿孔效率,脉冲能量与脉冲数之间的关系表明,水的多光子电离可能有助于穿孔。此外,优化的参数可以达到七倍的吸收增强,为进一步的研究和应用提供了非常有希望的基础。

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