Bio-Organic Chemistry, Institute of Complex Molecular Systems, Department of Biomedical Engineering, Eindhoven University of Technology, Helix (STO 3.41), P. O. Box 513, 5600 MB, Eindhoven, The Netherlands.
Department of Chemistry, College of Science, Swansea University, Swansea, SA2 8PP, UK.
Angew Chem Int Ed Engl. 2020 Sep 21;59(39):16918-16925. doi: 10.1002/anie.202003748. Epub 2020 Jul 27.
Synthetic nanomotors are appealing delivery vehicles for the dynamic transport of functional cargo. Their translation toward biological applications is limited owing to the use of non-degradable components. Furthermore, size has been an impediment owing to the importance of achieving nanoscale (ca. 100 nm) dimensions, as opposed to microscale examples that are prevalent. Herein, we present a hybrid nanomotor that can be activated by near-infrared (NIR)-irradiation for the triggered delivery of internal cargo and facilitated transport of external agents to the cell. Utilizing biodegradable poly(ethylene glycol)-b-poly(d,l-lactide) (PEG-PDLLA) block copolymers, with the two blocks connected via a pH sensitive imine bond, we generate nanoscopic polymersomes that are then modified with a hemispherical gold nanocoat. This Janus morphology allows such hybrid polymersomes to undergoing photothermal motility in response to thermal gradients generated by plasmonic absorbance of NIR irradiation, with velocities ranging up to 6.2±1.10 μm s . These polymersome nanomotors (PNMs) are capable of traversing cellular membranes allowing intracellular delivery of molecular and macromolecular cargo.
合成纳米马达作为功能性货物的动态运输的有吸引力的输送载体。由于使用不可降解的组件,它们向生物应用的转化受到限制。此外,由于需要达到纳米级(约 100nm)尺寸,而不是普遍存在的微尺度示例,因此尺寸一直是一个障碍。在此,我们提出了一种混合纳米马达,它可以通过近红外(NIR)辐射激活,用于触发内部货物的递送,并促进外部试剂向细胞的运输。我们利用可生物降解的聚(乙二醇)-b-聚(d,l-乳酸)(PEG-PDLLA)嵌段共聚物,两个嵌段通过 pH 敏感的亚胺键连接,生成纳米级聚合物囊泡,然后用半球形金纳米涂层进行修饰。这种Janus 形态使这种混合聚合物囊泡能够在等离子体吸收近红外辐射产生的热梯度的作用下进行光热运动,速度高达 6.2±1.10μm/s。这些聚合物囊泡纳米马达(PNM)能够穿透细胞膜,允许分子和大分子货物的细胞内递送。