Linear Diblock Copolymer Micellization Kinetics Probed by Integrated Microfluidic Device and Small-angle X-ray Scattering
ORAL
Abstract
Polymeric nanoparticles (NPs) for delivery of active pharmaceutical compounds are under rapid development as the need for advanced drug-delivery systems increase. Micelles, self-assembled from amphiphilic block copolymers, attracted attention because of their biocompatibility, better stability, and potential functionalities of targeting delivery. Nanoprecipitation, driven by solvent replacement, is one of the major processes for generating polymeric NPs. In order to optimize the structure of the NPs, the kinetics of micellization and drug nucleation and growth need to be well understood. However, the structural evolution is challenging to follow experimentally. With the development of synchrotron X-ray sources, time-resolved SAXS (TR-SAXS) integrated with a stopped-flow apparatus has become possible with a temporal resolution in the 100 millisecond time range. In this study, we have integrated a microfluidic mixer with TR-SAXS to catch the millisecond kinetics. Regimes of nuclei formation, merging, and polymer insertion were observed.
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Authors
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Joseph Kalkowski
Univ of Illinois - Chicago
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Chang Liu
Univ of Illinois - Chicago
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Paola Leon-Plata
Univ of Illinois - Chicago
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Magdalena Szymusiak
Univ of Illinois - Chicago
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Weifeng Shang
Illinois Institute of Technology
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Srinivas Chakravarthy
Illinois Institute of Technology
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Thomas Irving
Illinois Institute of Technology
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Ying Liu
Univ of Illinois - Chicago, University of Illinois at Chicago