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Nanocolloidal Hydrogel with Sensing and Antibacterial Activities Governed by Iron Ion Sequestration

机译:具有传感和抗菌活性的纳米胶体水凝胶由铁离子封存控制

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摘要

Advanced wound dressings improve wound healing by releasing antibacterial agents, accelerating wound closure, and reporting (sensing) changes in the wound’s state. The challenge with the release of antibacterial agents such as drugs, peptides, or nanoparticles is their unregulated administration. In addition, bacteria resistance to antibiotics stimulates the search for new types of antibacterial wound dressings. Here, we report a new approach to antibacterial wound dressings by utilizing a nanocolloidal hydrogel with strong Fe~(3+) ion sequestration capability, thus depriving bacteria of much-needed ionic iron and suppressing bacteria growth. The hydrogel was derived from cellulose nanocrystals decorated with carbon dots (C-dot/CNCs). Upon Fe~(3+) ion uptake by the nanofibrillar hydrogel, the photoluminescence of the hydrogel was quenched, due to adsorption of ions to the C-dot surface, thus reporting on the removal of ionic iron from the medium. The hydrogel suppressed the growth of antibiotic-resistant Gram-negative Escherichia coli , antibiotic-resistant Pseudomonas aeruginosa , and Gram-positive Staphylococcus aureus and was noncytotoxic for human fibroblasts. Wound dressings were readily fabricated using three-dimensional (3D) printing. The new mechanism of antibacterial performance of the hydrogel, its sensing capability, biocompatibility, and the capability to 3D print wound dressing patches make it a very promising material for the fabrication of advanced wound dressings.
机译:先进的伤口敷料通过释放抗菌剂、加速伤口闭合和报告(感应)伤口状态的变化来改善伤口愈合。释放抗菌剂(如药物、肽或纳米颗粒)的挑战在于其不受管制的给药。此外,细菌对抗生素的耐药性刺激了对新型抗菌伤口敷料的寻找。在这里,我们报道了一种抗菌伤口敷料的新方法,即利用具有强大Fe~(3+)离子封存能力的纳米胶体水凝胶,从而剥夺细菌急需的离子铁并抑制细菌生长。水凝胶来源于用碳点(C-dot/CNCs)装饰的纤维素纳米晶体。当纳米纤维水凝胶吸收Fe~(3+)离子时,由于离子吸附到C点表面,水凝胶的光致发光被猝灭,从而报告了离子铁从介质中去除的情况。水凝胶抑制了抗生素耐药革兰氏阴性大肠杆菌、抗生素耐药铜绿假单胞菌和革兰氏阳性金黄色葡萄球菌的生长,对人成纤维细胞无细胞毒性。伤口敷料很容易使用三维(3D)打印制造。水凝胶抗菌性能的新机制、传感能力、生物相容性以及 3D 打印伤口敷料贴片的能力使其成为制造先进伤口敷料的非常有前途的材料。

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