Advances in Stimuli-Responsive Chitosan Hydrogels for Drug Delivery Systems.

Macromol Biosci

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.

Published: May 2024

AI Article Synopsis

  • Sustainable drug transport using chitosan and its derivatives is highly effective for disease treatment due to their biocompatibility, biodegradability, and low cost.
  • Chitosan hydrogels, known for their amino and hydroxyl groups, facilitate drug passage through biological barriers and allow for precise drug release based on various stimuli like pH and temperature.
  • The text reviews synthesis methods, modification strategies, and recent advancements in chitosan-based hydrogels for drug delivery, while also discussing clinical challenges and future prospects.

Article Abstract

Sustainable and controllable drug transport is one of the most efficient ways of disease treatment. Due to high biocompatibility, good biodegradability, and low costs, chitosan and its derivatives are widely used in biomedical fields. Specifically, chitosan hydrogel enables drugs to pass through biological barriers because of their abundant amino and hydroxyl groups that can interact with human tissues. Moreover, the multi-responsive nature (pH, temperature, ions strength, and magnetic field, etc.) of chitosan hydrogels makes precise drug release a possibility. Here, the synthesis methods, modification strategies, stimuli-responsive mechanisms of chitosan-based hydrogels, and their recent progress in drug delivery are summarized. Chitosan hydrogels that carry and release drugs through subcutaneous (dealing with wound dressing), oral (dealing with gastrointestinal tract), and facial (dealing with ophthalmic, ear, and brain) are reviewed. Finally, challenges toward clinic application and the future prospects of stimuli-responsive chitosan-based hydrogels are indicated.

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Source
http://dx.doi.org/10.1002/mabi.202300399DOI Listing

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