Asymmetric nanocapsules via elongated liposome templated polymerization (ELTP) mediated by RAFT polymerization
Yunxin Xiao, Alexander W. Jackson, Angel Tan, John F. Quinn, Simon Crawford, Ben J. Boyd

TL;DR
This paper introduces a new method to create elongated nanocapsules using liposomes and RAFT polymerization for better drug delivery.
Contribution
A novel strategy for synthesizing elongated nanocapsules using liposome templates and RAFT polymerization is presented.
Findings
Elongated liposomes were successfully used as templates for nanocapsule formation.
RAFT polymerization enabled controlled chain extension to achieve desired morphology.
The method shows potential for improved drug delivery through elongated nanocapsules.
Abstract
Polymeric nanocapsules comprised of hydrophobic shells and hollow aqueous interiors are an extremely useful class of nanomaterial, particularly in the encapsulation and controlled delivery of hydrophilic cargo. Generally prepared via droplet or latex templation approaches, polymeric nanocapsules are mostly spherical. Controlling the morphology of hollow nanocapsules is an intriguing design challenge. Non-spherical, or elongated, templates are often inorganic materials which do not directly impart a hollow interior, and their post-polymerization removal is not straightforward. This study outlines a novel strategy for the preparation of elongated nanocapsules, wherein elongated liposomes are deployed as hollow templates. Initially, ciprofloxacin drug nanocrystals were utilized to facilitate the formation of elongated liposomes, followed by adsorption of reversible addition-fragmentation…
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Taxonomy
TopicsNanoparticle-Based Drug Delivery · Advanced Polymer Synthesis and Characterization · Dendrimers and Hyperbranched Polymers
