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化学法制备细菌-纳/微米粒子杂化体系。

Chemical Approaches for the Preparation of Bacteria - Nano/Microparticle Hybrid Systems.

机构信息

École Polytechnique Fédérale de Lausanne (EPFL), Institut des Matériaux and Institut des Sciences et Ingénierie Chimiques, Laboratoire des Polymères, Bâtiment MXD, Station 12, Lausanne, CH-1015, Switzerland.

出版信息

Macromol Biosci. 2023 Aug;23(8):e2200440. doi: 10.1002/mabi.202200440. Epub 2022 Dec 15.

Abstract

Bacteria represent a class of living cells that are very attractive carriers for the transport and delivery of nano- and microsized particles. The use of cell-based carriers, such as for example bacteria, may allow to precisely direct nano- or microsized cargo to a desired site, which would greatly enhance the selectivity of drug delivery and allow to mitigate side effects. One key step towards the use of such nano-/microparticle - bacteria hybrids is the immobilization of the cargo on the bacterial cell surface. To fabricate bacteria - nano-/microparticle biohybrid microsystems, a wide range of chemical approaches are available that can be used to immobilize the particle payload on the bacterial cell surface. This article presents an overview of the various covalent and noncovalent chemistries that are available for the preparation of bacteria - nano-/microparticle hybrids. For each of the different chemical approaches, an overview will be presented that lists the bacterial strains that have been modified, the type and size of nanoparticles that have been immobilized, as well as the methods that have been used to characterize the nanoparticle-modified bacteria.

摘要

细菌是一类非常有吸引力的活细胞载体,可用于纳米级和微米级颗粒的运输和递释。使用基于细胞的载体(例如细菌)可以将纳米级或微米级货物精确地靶向到所需的部位,这将大大提高药物递释的选择性,并减轻副作用。制造这种纳米/微颗粒-细菌杂合体的关键步骤之一是将货物固定在细菌细胞表面。为了制造细菌-纳米/微颗粒生物混合微系统,有多种化学方法可用于将颗粒有效负载固定在细菌细胞表面。本文综述了可用于制备细菌-纳米/微颗粒杂合体的各种共价和非共价化学方法。对于每种不同的化学方法,将列出已修饰的细菌菌株、固定的纳米颗粒的类型和大小,以及用于表征纳米颗粒修饰细菌的方法。

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