4.7 Review

Mediation of synergistic chemotherapy and gene therapy via nanoparticles based on chitosan and ionic polysaccharides

期刊

出版社

ELSEVIER
DOI: 10.1016/j.ijbiomac.2022.11.017

关键词

Chitosan; Co-delivery; Cancer therapy; Gene therapy; Polysaccharide

资金

  1. National Natural Science Foundation of China [81471777]
  2. Scientific Research Project of Hunan Provincial Health Commission [202113021875]
  3. Research Foundation of Education Bureau of Hunan Province [21A0284]
  4. Hunan Provincial Innovation Foundation for Postgraduate [CX20200953]
  5. Key R&D Program of Hunan Province [2021SK2036]
  6. Natural Science Foundation of Hunan province [2021JJ30603, 2022JJ40381]
  7. Hunan Science and Technology Innovation Leading Talent Project [2022RC3080]

向作者/读者索取更多资源

This review summarizes the applications of nanoparticles (NPs) based on different ionic polysaccharides for controlled release. It focuses on optimizing polysaccharide structures to achieve maximum synergistic effects. The review introduces strategies for overcoming extracellular and intracellular barriers, summarizes four preparation strategies, and discusses challenges and future trends. The guidelines provided will promote the use of polysaccharides-based NPs in cancer therapy.
Nanoparticles (NPs)-based on various ionic polysaccharides, including chitosan, hyaluronic acid, and alginate have been frequently summarized for controlled release applications, however, most of the published reviews, to our knowledge, focused on the delivery of a single therapeutic agent. A comprehensive summarization of the co-delivery of multiple therapeutic agents by the ionic polysaccharides-based NPs, especially on the optimization of the polysaccharide structure for overcoming various extracellular and intracellular barriers toward maximized synergistic effects, to our knowledge, has been rarely explored so far. For this purpose, the strategies used for overcoming various extracellular and intracellular barriers in vivo were introduced first to provide guidance for the rational design of ionic polysaccharides-based NPs with desired features, including long-term circulation, enhanced cellular internalization, controllable drug/gene release, endosomal escape and improved nucleus localization. Next, four preparation strategies were summarized including three physical methods of polyelectrolyte complexation, ionic crosslinking, and self-assembly and a chemical conjugation approach. The challenges and future trends of this rapidly developing field were finally discussed in the concluding remarks. The important guidelines on the rational design of ionic polysaccharides-based NPs for maximized synergistic efficiency drawn in this review will promote the future generation and clinical translation of polysaccharides-based NPs for cancer therapy.

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