Issue 17, 2025

Polymersome-based nanomotors: preparation, motion control, and biomedical applications

Abstract

Polymersome-based nanomotors represent a cutting-edge development in nanomedicine, merging the unique vesicular properties of polymersomes with the active propulsion capabilities of synthetic nanomotors. As a vesicular structure enclosed by a bilayer membrane, polymersomes can encapsulate both hydrophilic and hydrophobic cargoes. In addition, their physical–chemical properties such as size, morphology, and surface chemistry are highly tunable, which makes them ideal for various biomedical applications. The integration of motility into polymersomes enables them to actively navigate biological environments and overcome physiological barriers, offering significant advantages over passive delivery platforms. Recent breakthroughs in fabrication techniques and motion control strategies, including chemically, enzymatically, and externally driven propulsion, have expanded their potential for drug delivery, biosensing, and therapeutic interventions. Despite these advancements, key challenges remain in optimizing propulsion efficiency, biocompatibility, and in vivo stability to translate these systems into clinical applications. In this perspective, we discuss recent advancements in the preparation and motion control strategies of polymersome-based nanomotors, as well as their biomedical-related applications. The molecular design, fabrication approaches, and nanomedicine-related utilities of polymersome-based nanomotors are highlighted, to envisage the future research directions and further development of these systems into effective, precise, and smart nanomedicines capable of addressing critical biomedical challenges.

Graphical abstract: Polymersome-based nanomotors: preparation, motion control, and biomedical applications

Article information

Article type
Perspective
Submitted
06 Dec 2024
Accepted
02 Apr 2025
First published
03 Apr 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2025,16, 7106-7129

Polymersome-based nanomotors: preparation, motion control, and biomedical applications

S. Song, H. Han, J. Wang, Y. Pu, J. Shao, J. Xie, H. Che, J. C. M. van Hest and S. Cao, Chem. Sci., 2025, 16, 7106 DOI: 10.1039/D4SC08283D

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