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用于医学和工程的细菌纳流结构

Bacterial nanofluidic structures for medicine and engineering.

机构信息

Department of Mechanical Engineering and Mechanics Drexel University 3141 Chestnut St., Philadelphia, PA 19104, USA.

出版信息

Small. 2010 Apr 23;6(8):895-909. doi: 10.1002/smll.200901576.

Abstract

Bacteria are microscopic, single-celled organisms that utilize a variety of nanofluidic structures. One of the best known and widely used nanofluidic structures that are derived from bacteria is the alpha-hemolysin pore. This pore, which self-assembles in lipid bilayers, has been used for a wide variety of sensing applications, most notably, DNA sensing. Synthetic pores drilled in a wide variety of materials, such as silicon nitride and polymers have been developed that use inspiration from the alpha-hemolysin pore. Higher-aspect-ratio nanofluidic structures, akin to nanotubes, are also synthesized by bacteria. Examples of such structures include those that are associated with bacterial transport apparatus, such as pili, and are used by bacteria to facilitate the transfer of genetic material from one bacterium to another. Flagella, and its associated structures, such as the rod and hook, are also tubular nanostructures, through which the protein, flagellin, travels to assemble the flagellum. Genetic engineering allows for the creation of modified bacterial nanopores and nanotubes that can be used for a variety of medical and engineering purposes.

摘要

细菌是微观的单细胞生物,利用各种纳流控结构。其中一种最著名和广泛应用的纳流控结构来源于细菌,是α-溶血素孔。这种在脂质双层中自组装的孔已被用于各种传感应用,尤其是 DNA 传感。在氮化硅和聚合物等各种材料中钻制的合成孔,受到α-溶血素孔的启发而得到开发。类似纳米管的高纵横比纳流控结构也由细菌合成。此类结构的示例包括与细菌运输设备(如菌毛)相关的结构,细菌利用这些结构来促进遗传物质从一个细菌转移到另一个细菌。鞭毛及其相关结构,如杆和钩,也是管状纳米结构,鞭毛蛋白通过这些结构移动以组装鞭毛。基因工程允许创建可用于各种医疗和工程目的的改良细菌纳孔和纳米管。

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