4.8 Article

An in situ-forming polyzwitterion hydrogel: Towards vitreous substitute application

Journal

BIOACTIVE MATERIALS
Volume 6, Issue 10, Pages 3085-3096

Publisher

KEAI PUBLISHING LTD
DOI: 10.1016/j.bioactmat.2021.02.029

Keywords

Zwitterion; Hydrogel; Anti-fouling; Vitreous substitute

Funding

  1. National Natural Science Foundation [51733006, 52073203, 31771030]

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The study introduces a novel vitreous substitute based on zwitterionic polymer hydrogel, which exhibits excellent anti-fouling ability and biocompatibility, effectively reducing inflammatory responses and complications.
Development of a biostable and biosafe vitreous substitute is highly desirable, but remains a grand challenge. Herein, we propose a novel strategy for constructing a readily administered vitreous substitute based on a thiolacrylate clickable polyzwitterion macromonomer. A biocompatible multivinyl polycarboxybetaine (PCB-OAA) macromonomer is designed and synthesized, and mixed with dithiothreitol (DTT) via a Michael addition reaction to form a hydrogel in vitreous cavity. This resultant PCB-OAA hydrogel exhibits controllable gelation time, super anti-fouling ability against proteins and cells, excellent biocompatibility, and approximate key parameters to human vitreous body including equilibrium water content, density, optical properties, modulus. Remarkably, outperforming clinically used silicone oil in biocompatibility, this rapidly formed hydrogel in the vitreous cavity of rabbit eyes remains stable in vitreous cavity, showing an appealing ability to prevent significantly inflammatory response, fibrosis and complications such as raised intraocular pressure (IOP), and cataract formation. This zwitterionic polymer hydrogel holds great potential as a vitreous substitute.

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