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Synthesis of zwitterionic polyelectrolyte nanogels electrostatic-templated polymerization

Zwitterionic polyelectrolyte nanogels are prospective nanocarriers due to their soft loading pocket and regulated charges. We here report a facile strategy, namely, electrostatic-templated polymerization (ETP) for synthesizing zwitterionic nanogels with controlled size and properties. Specifically,...

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Bibliographic Details
Published in:Soft matter 2023-04, Vol.19 (14), p.2588-2593
Main Authors: Xu, Bingkun, Gao, Yifan, Guo, Xuhong, Cohen Stuart, Martien A, Wang, Junyou, Ding, Peng
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Summary:Zwitterionic polyelectrolyte nanogels are prospective nanocarriers due to their soft loading pocket and regulated charges. We here report a facile strategy, namely, electrostatic-templated polymerization (ETP) for synthesizing zwitterionic nanogels with controlled size and properties. Specifically, with anionic-neutral diblock polymers as the template, zwitterionic monomers such as carboxybetaine methacrylate (CBMA) or carboxybetaine acrylamide (CBAA) are polymerized together with a cross-linker at pH 2 where the monomers exhibit only positive charge due to the protonation of the carboxyl group. The obtained polyelectrolyte complex micelles dissociate upon introducing a concentrated salt. The subsequent separation yields the released template and zwitterionic nanogels with regulated size and swelling ability, achieved by tuning the salt concentration and cross-linker fraction during polymerization. The obtained PCBMA nanogels exhibit charges depending on the pH, which enables not only the selective loading of different dye molecules, but also encapsulation and intracellular delivery of cytochrome c protein. Our study develops a facile and robust way for fabricating zwitterionic nanogels and validates their potential applications as promising nanocarriers for load and delivery of functional charged cargos. Zwitterionic nanogels with controlled size and properties are fabricated by Electrostatic-Templated Polymerization (ETP) method, which exhibit well-defined charges for selective loading of oppositely charged dye molecules and proteins.
ISSN:1744-683X
1744-6848
DOI:10.1039/d3sm00092c