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Preparation of Expanded Chitin Foams and their Use in the Removal of Aqueous Copper
Published on: February 27, 2021
Chitosan derivative-doped carboxymethyl cellulose-based films with robust mechanical properties and short dissolution
Qirui Zhou1, Congde Qiao1, Xiaodeng Yang1
1School of Chemistry and Chemical Engineering, Qilu University of Technology, Shandong Academy of Science, Ji'nan 250353, China.
Abstract:
This study aimed to fabricate a type of carboxymethyl cellulose (CMC)-based films doped with hydroxypropyltrimethyl ammonium chloride chitosan (HTCC) and N-lauric-O-carboxymethyl chitosan (LA-CMCh) to address the limitations of CMC films. The impacts of the HTCC and LA-CMCh contents on the properties of CMC-based films, including microstructure, mechanical properties, water vapor permeability, thermal stability, swelling capacity, disintegration time, antibacterial activity, and in-vitro cytotoxicity, were explored. The CMC/HTCC2%/LA-CMCh10% film simultaneously exhibited the highest tensile strength (6.38 MPa), elongation at break (39.56 %), and the fastest dissolution time (44.56 s), meeting the key properties of orally disintegrating films (ODFs). The rheological properties of the film-forming solution were tested to explain the mechanism underlying the influence of HTCC and LA-CMCh on the properties of CMC-based films. Lomefloxacin hydrochloride was used as a model drug to evaluate the drug-releasing behavior of the films. The results showed a very rapid release rate within 10 min, including an anomalous transport-controlled process. The results indicated that CMC/HTCC2%/LA-CMCh10% film was a promising ODF candidate, offering improved mechanical properties and rapid disintegration, which could enhance patient compliance and drug delivery efficiency.

