ArticleBioactive materials2026
Study on the repair effect of photothermal hydrogel with controllable adhesiveness regulated by melanin and magnesium ions on diabetic wounds.
Article in Bioactive materials, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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10 authors.
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Abstract
Chronic non-healing wounds, characterized by prolonged disease duration and low compromised reparative potential, not only cause patients to suffer from persistent physical pain and impaired daily living ability, but also are prone to inducing severe complications such as infection and amputation, posing a serious threat to patients' health and quality of life. In this study, a melanin derivative (M-HPCS) with excellent photothermal properties was successfully prepared through the condensation reaction between natural squid melanin and a chitosan derivative (HPCS). Subsequently, by virtue of charge interaction, M-HPCS was assembled with a hyaluronic acid derivative (HA-PEG) to construct a photothermal hydrogel (M-HPCS/HA-PEG) with controllable adhesion performance. This hydrogel could further enhance its own adhesion capacity by chelating magnesium ions, making it suitable for the repair and treatment of non-healing wounds. The results demonstrated that, relying on the dual regulatory effect of sepia melanin and Mg
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