Tailoring Dialdehyde Bacterial Cellulose Synthesis for Versatile Applications

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Abstract

Dialdehyde bacterial cellulose (DBC) has been implemented in versatile applications. DBC was prepared from bacterial cellulose (BC) through periodate oxidation with varying parameters, including the mole ratio of BC and NaOI4, temperature, and reaction time. The relationship between the degree of oxidation (DO)/aldehyde content and these parameters was proposed as a quadratic equation to predict the oxidation conditions needed to achieve a specific DO using Response Surface Methodology (RSM). The chemical structure and morphology of DBC were influenced by DO. DBC with different DO levels was used as a crosslinker and a reinforcing agent for gelatin sponge fabrication. Results indicated that a high DO of DBC could enhance the tensile strength and structural stability of the gelatin matrix. Selecting the proper DO level could control the morphological structure of the gelatin sponge, which is crucial for biomedical applications.

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Kadsanit, K., Sriariyanun, M., Phisalaphong, M., & Kirdponpattara, S. (2025). Tailoring Dialdehyde Bacterial Cellulose Synthesis for Versatile Applications. Polymers, 17(13). https://doi.org/10.3390/polym17131836

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