Computer 3D controlled bacterial transports and aggregations of microbial adhered nano-components

Computer 3D controlled bacterial transports and aggregations of microbial adhered nano-components
复制标题

计算机 3D 控制细菌运输和微生物粘附纳米组件的聚集

DOI:
10.1007/s12213-014-0076-x
复制
发表时间:
2013
影响因子:
2.3
通讯作者:
O. Felfoul
O. Felfoul
中科院分区:
--
文献类型:
--
作者:
S. Martel;S. Taherkhani;M. Tabrizian;M. Mohammadi;D. Lanauze;O. Felfoul

文献摘要

参考文献

被引文献

相似文献

细菌可用作微载体用于纳米组分的运输。通过利用诸如趋化性、趋气性或趋光性的特定税(仅举几个例子),可以实现纳米组分朝向或远离例如特定化学品、氧气或光源的基于感觉的运输。使用微生物粘附方法,这样的纳米组分可以附着到趋磁细菌(MTB)的表面,允许这些纳米组分沿着平面表面上的规划路径或朝向3D空间内的特定区域的精确趋磁性计算机控制的运输。这里,将大量纳米组分附着到趋磁细菌表面的可能性与在3D空间中聚集大量细胞的可能性相结合,表明了使用相对低的电能在相对大的3D空间内的特定区域处递送和聚集大量纳米组分的可能性。
Bacteria can be used as microcarriers for the transport of nano-components. By exploiting specific taxes such as chemotaxis, aerotaxis or phototaxis, to name but a few examples, sensory-based transports of nano-components towards or away from a specific source of chemical, oxygen, or light for instance, can be achieved. Using microbial adhesion methods, such nano-components can be attached to the surface of magnetotactic bacteria (MTB), allowing for precise magnetotaxis computer controlled transport of these nano-components along a planned path on a planar surface or towards a specific region within a 3D space. Here, the possibility of attaching a large number of nano-components to the surface of magnetotactic bacteria combined with the possibility of aggregating a large number of cells in a 3D space suggests the possibility of delivering and aggregating a large number of nano-components at a specific region within a relatively large 3D space using relatively low electrical energy.
DOI: 10.1016/s0006-3495(00)76662-8
发表时间: 2000-02-01
影响因子: 3.4
作者:
Chen, XB;Berg, HC
通讯作者: Berg, HC