Stimuli-responsive biodegradable polyurethane nano-constructs as a potential triggered drug delivery vehicle for cancer therapy

TitleStimuli-responsive biodegradable polyurethane nano-constructs as a potential triggered drug delivery vehicle for cancer therapy
Publication TypeJournal Article
Year of Publication2020
AuthorsGajbhiye, KR, Chaudhari, BP, Pokharkar, VB, Pawar, A, Gajbhiye, V
JournalInternational Journal of Pharmaceutics
Volume588
Pagination119781
Date PublishedOCT
Type of ArticleReview
ISSN0378-5173
KeywordsCancer nanomedicine, GSH, micelles, Polyurathanes, redox, Stimuli-responsive
Abstract

Polyurethanes (PUs) constitute an essential class of stimuli-responsive and biodegradable material, which has significantly contributed to the advancement of polymers utilization in the biomedical field. The bio-erodible PUs construct an active corridor for facilitating drug into tumor cells, which has significantly impacted the progression of nano-micellar delivery systems. The self-assembled colloidal PUs pose distinctive features such as enhancing the solubility of hydrophobic chemotherapeutics, rapid cellular uptake, triggered erosion and drug release, bio-stimulus sensitivity, improvement in the targeting and proficiency of bioactive. Cationic PUs can easily be condensed with genetic material to form polyplexes and have shown excellent transfection efficiency for potential gene therapy against various cancers. Their modifiable chemistry offers a tool to impart the desired multifunctionality such as biocompatibility, sensitivity to pH, redox, temperature, enzyme, etc. and ligand conjugation for active targeting. These diverse exceptional properties make them excellent nano-carrier for a variety of bioactive, including chemotherapeutic drugs, DNA, RNA, and diagnostic moieties to the target tissue or cells. The PUs based nano-devices have certainly uncovered the path to achieve ideal systems for controlled personalized therapy. The literature discussed in this review shed light on the research innovations carried out in the last ten years for the development of multifunctional PUs for triggered delivery of bioactive to treat various cancers.

DOI10.1016/j.ijpharm.2020.119781
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

4.845

Divison category: 
Biochemical Sciences

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