Ultrafast light-activated polymeric nanomotors

Author:

Wang Jianhong,Wu HanglongORCID,Zhu XiaoweiORCID,Zwolsman Robby,Hofstraat Stijn R. J.ORCID,Li YudongORCID,Luo Yingtong,Joosten Rick R. M.,Friedrich HeinerORCID,Cao ShoupengORCID,Abdelmohsen Loai K. E. A.ORCID,Shao JingxinORCID,van Hest Jan C. M.ORCID

Abstract

AbstractSynthetic micro/nanomotors have been extensively exploited over the past decade to achieve active transportation. This interest is a result of their broad range of potential applications, from environmental remediation to nanomedicine. Nevertheless, it still remains a challenge to build a fast-moving biodegradable polymeric nanomotor. Here we present a light-propelled nanomotor by introducing gold nanoparticles (Au NP) onto biodegradable bowl-shaped polymersomes (stomatocytes) via electrostatic and hydrogen bond interactions. These biodegradable nanomotors show controllable motion and remarkable velocities of up to 125 μm s−1. This unique behavior is explained via a thorough three-dimensional characterization of the nanomotor, particularly the size and the spatial distribution of Au NP, with cryogenic transmission electron microscopy (cryo-TEM) and cryo-electron tomography (cryo-ET). Our in-depth quantitative 3D analysis reveals that the motile features of these nanomotors are caused by the nonuniform distribution of Au NPs on the outer surface of the stomatocyte along the z-axial direction. Their excellent motile features are exploited for active cargo delivery into living cells. This study provides a new approach to develop robust, biodegradable soft nanomotors with application potential in biomedicine.

Funder

Ministerie van Onderwijs, Cultuur en Wetenschap

EC | Horizon 2020 Framework Programme

CSC | Chinese Government Scholarship

Publisher

Springer Science and Business Media LLC

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