École Polytechnique Fédérale de Lausanne (EPFL), Institut des Matériaux and Institut des Sciences et Ingénierie Chimiques, Laboratoire des Polymères, Bâtiment MXD, Station 12, CH-1015 Lausanne, Switzerland.
ACS Appl Bio Mater. 2021 Mar 15;4(3):2293-2306. doi: 10.1021/acsabm.0c01619. Epub 2021 Feb 12.
Cells are promising as carriers that can enhance the delivery of nanomedicines. Cells that carry nanomedicinal cargo, either immobilized on the cell surface or internalized, can allow for highly specific delivery and can enable the transport of nanomedicines across challenging physiological barriers. The effective use of cells as carriers for the transport and delivery of nanomedines requires a careful selection of the chemical strategies that are used to load the cell-based carriers with their cargo. To this end, an in-depth understanding of the impact of various cell-surface modification chemistries on the viability and functional properties of the cells is essential, and techniques are needed that allow characterization of nanoparticle-modified living cells. This article touches upon both of these aspects. The first part of this review will present an overview of contemporary strategies that are available for the cell surface immobilization of nanoparticle cargo. After that, the various techniques that are most frequently used for the characterization of nanoparticle-modified cells will be discussed.
细胞作为载体具有很大的应用潜力,可以增强纳米药物的递送效果。携带纳米药物的细胞(无论是固定在细胞表面还是被内化)可以实现高度特异性的递送,并能够使纳米药物穿过具有挑战性的生理屏障。为了有效地将细胞用作纳米药物运输和递送的载体,需要仔细选择用于将细胞载体加载其货物的化学策略。为此,深入了解各种细胞表面修饰化学物质对细胞活力和功能特性的影响至关重要,并且需要能够对纳米颗粒修饰的活细胞进行表征的技术。本文将涉及这两个方面。本综述的第一部分将概述目前用于纳米颗粒货物细胞表面固定的策略。之后,将讨论最常用于纳米颗粒修饰细胞表征的各种技术。