Strategies to Prepare Chitin and Chitosan-Based Bioactive Structures Aided by Deep Eutectic Solvents: A Review

Author:

Durante-Salmerón D. Alonzo1ORCID,Fraile-Gutiérrez Isabel2ORCID,Gil-Gonzalo Rubén2ORCID,Acosta Niuris12ORCID,Aranaz Inmaculada12ORCID,Alcántara Andrés R.1ORCID

Affiliation:

1. Department of Chemistry in Pharmaceutical Sciences, Pharmacy Faculty, Complutense University of Madrid (UCM), Ciudad Universitaria, Plaza de Ramon y Cajal, s/n., E-28040 Madrid, Spain

2. Instituto Pluridisciplinar, Complutense University of Madrid (UCM), Paseo Juan XXIII, n 1, E-28040 Madrid, Spain

Abstract

Chitin and chitosan, abundant biopolymers derived from the shells of crustaceans and the cell walls of fungi, have garnered considerable attention in pharmaceutical circles due to their biocompatibility, biodegradability, and versatile properties. Deep eutectic solvents (DESs), emerging green solvents composed of eutectic mixtures of hydrogen bond acceptors and donors, offer promising avenues for enhancing the solubility and functionality of chitin and chitosan in pharmaceutical formulations. This review delves into the potential of utilizing DESs as solvents for chitin and chitosan, highlighting their efficiency in dissolving these polymers, which facilitates the production of novel drug delivery systems, wound dressings, tissue engineering scaffolds, and antimicrobial agents. The distinctive physicochemical properties of DESs, including low toxicity, low volatility, and adaptable solvation power, enable the customization of chitin and chitosan-based materials to meet specific pharmaceutical requirements. Moreover, the environmentally friendly nature of DESs aligns with the growing demand for sustainable and eco-friendly processes in pharmaceutical manufacturing. This revision underscores recent advances illustrating the promising role of DESs in evolving the pharmaceutical applications of chitin and chitosan, laying the groundwork for the development of innovative drug delivery systems and biomedical materials with enhanced efficacy and safety profiles.

Funder

Spanish Ministry of Science and Innovation

EU’s Horizon Europe Doctoral Network Program under the Marie Skłodowska-Curie

Publisher

MDPI AG

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