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Discovery and Application of the Yoshida Effect: Nano-Sized Acicular Materials Enable Penetration of Bacterial Cells by Sliding Friction Force

机译:吉田效应的发现和应用:纳米针状材料通过滑动摩擦力使细菌细胞渗透。

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摘要

Bacterial genetic properties can be readily altered by a range of techniques, for example, when a mixture of recipient bacteria, donor genes, and nano-sized acicular material are stimulated by sliding friction on surface of the hydrogel such as agarose or gellan gum. In this particular case, a phenomenon called the Yoshida effect is responsible. Specially designed apparatus has been developed to investigate this effect in an effort to identify technical applications, such as the quantitative detection of asbestos. Current patents related to plasmid transformation methods for prokaryotes and quantitative detection of environmental asbestos are also presented.
机译:细菌的遗传特性可通过多种技术轻松地改变,例如,当受体凝胶,供体基因和纳米级针状材料的混合物通过琼脂糖或吉兰糖胶等水凝胶表面的滑动摩擦而刺激时。在这种特殊情况下,称为吉田效应的现象是有原因的。已开发出专门设计的设备来研究这种影响,以努力确定技术应用,例如石棉的定量检测。还介绍了与原核生物质粒转化方法和环境石棉定量检测有关的最新专利。

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