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Zwitterionic polymers in drug delivery: A review

期刊

JOURNAL OF MOLECULAR RECOGNITION
卷 35, 期 1, 页码 -

出版社

WILEY
DOI: 10.1002/jmr.2944

关键词

biocompatible; drug delivery; drug nanocarriers; healthcare sector; zwitterionic polymers

资金

  1. IoE, BHU [6031]
  2. UGC [16-6(Dec.2018)/2019(NET/CSIR]

向作者/读者索取更多资源

The development of novel drug delivery vehicles is crucial for enhancing the therapeutic effectiveness of standard drugs. Zwitterionic materials have emerged as promising candidates due to their sustainability, biocompatibility, and high stability. Various zwitterionic polymers are being used to fabricate drug delivery vehicles with potential for commercialization in the healthcare sector.
Developments of novel drug delivery vehicles are sought-after to augment the therapeutic effectiveness of standard drugs. An urgency to design novel drug delivery vehicles that are sustainable, biocompatible, have minimized cytotoxicity, no immunogenicity, high stability, long circulation time, and are capable of averting recognition by the immune system is perceived. In this pursuit for an ideal candidate for drug delivery vehicles, zwitterionic materials have come up as fulfilling almost all these expectations. This comprehensive review is presenting the progress made by zwitterionic polymeric architectures as prospective sustainable drug delivery vehicles. Zwitterionic polymers with varied architecture such as appending protein conjugates, nanoparticles, surface coatings, liposomes, hydrogels, etc, used to fabricate drug delivery vehicles are reviewed here. A brief introduction of zwitterionic polymers and their application as reliable drug delivery vehicles, such as zwitterionic polymer-protein conjugates, zwitterionic polymer-based drug nanocarriers, and stimulus-responsive zwitterionic polymers are discussed in this discourse. The prospects shown by zwitterionic architecture suggest the tremendous potential for them in this domain. This critical review will encourage the researchers working in this area and boost the development and commercialization of such devices to benefit the healthcare fraternity.

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