Biodegradable zwitterionic polymers as PEG alternatives for drug delivery

Author:

Zhang Ziwen1ORCID,Sun Haotian1ORCID,Giannino Justin2ORCID,Wu Yun23ORCID,Cheng Chong1ORCID

Affiliation:

1. Department of Chemical and Biological Engineering, University at Buffalo The State University of New York Buffalo New York USA

2. Department of Biomedical Engineering, University at Buffalo The State University of New York Buffalo New York USA

3. Cell, Gene and Tissue Engineering Center, University at Buffalo The State University of New York Buffalo New York USA

Abstract

AbstractPoly(ethylene glycol) (PEG) is a highly biocompatible and water‐soluble polymer that is widely utilized for biomedical applications. Unfortunately, the immunogenicity and antigenicity of PEG severely restrict the biomedical efficacy of pegylated therapeutics. As emerging PEG alternatives, biodegradable zwitterionic polymers (ZPs) have attracted significant interest in recent years. Biodegradable ZPs generally are not only water‐soluble and immunologically inert, but also possess a range of favorable biomedically relevant properties, without causing long‐term side effects for in vivo biomedical applications. This review presents a systematic overview of recent studies on biodegradable ZPs. Their structural designs and synthetic strategies by integrating biodegradable base polymers with zwitterions are addressed. Their applications in the delivery of small molecule drugs (as mono‐drugs or multi‐drugs) and proteins are highlighted.

Funder

National Institute of Biomedical Imaging and Bioengineering

Publisher

Wiley

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