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Intelligent Metal-Phenolic Metallogels as Dressings for Infected Wounds

机译:智能金属酚醛金属盐作为伤口感染的敷料

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摘要

In this study, we report a metallogel developed based on metal-phenolic coordination of natural low-cost polyphenolic molecule and metal ions. Gelation occurs by mixing tannic acid (TA) and group (IV) titanium ions (TiIV) to form TA-TiIV gel. The TA-TiIV gel exhibits good capability to incorporate diverse metal ions by in situ co-gelation. Herein, five antimicrobial metal ions, i.e. ferric (FeIII), copper (CuII), zinc (ZnII), cobalt (CoII) and nickel (NiII) ions, were employed to include in TA-TiIV gels for developing intelligent dressings for infected wounds. The chemical and coordinative structures of TA-TiIV metallogels were characterized by UV-Vis and Fourier-transform infrared (FT-IR) spectroscopies. Cytotoxicity of antimicrobial metallogels was explored by MTT assay with NIH 3T3 fibroblasts. The release of metal ions was evaluated by inductively coupled plasma mass spectrometry (ICP-MS), indicating the different releasing profiles upon the coordinative interactions of metal ions with TA. The formation and disassembly of metallogels are sensitive to the presence of acid and an oxidizer, H2O2, which are substances spontaneously generated in infected wounds due to the metabolic activity of bacteria and the intrinsic immune response. The CuII releasing rates of TA-TiIV-CuII metallogels at different pH values of 5.5, 7.4 and 8.5 have been studied. In addition, addition of H2O2 trigger fast release of CuII as a result of oxidation of galloyl groups in TA. Consequently, the antimicrobial potency of TA-TiIV-CuII metallogels can be simultaneously activated while the wounds are infected and healing. The antimicrobial property of metallogels against Gram-negative Escherichia coli, and Gram-positive Methicillin-Resistant Staphylococcus aureus (USA300) and Staphylococcus epidermidis has been investigated by agar diffusion test. In an animal model, the TA-TiIV-CuII metallogels were applied as dressings for infected wounds, indicating faster recovery in the wound area and extremely lower amount of bacteria around the wounds, compared to TA-TiIV gels and gauze. Accordingly, the intelligent nature derived metallogels is a promising and potential materials for medical applications.
机译:在这项研究中,我们报告了一种基于天然低成本多酚分子和金属离子的金属-酚配位而开发的金属试剂。通过将鞣酸(TA)和第(IV)组钛离子(Ti IV )混合以形成TA-Ti IV 凝胶来发生胶凝。 TA-Ti IV 凝胶具有良好的通过原位共凝胶结合各种金属离子的能力。在此,五种抗菌金属离子,即铁(Fe III ),铜(Cu II ),锌(Zn II ),钴(Co II )和镍(Ni II )离子被用于TA-Ti IV 凝胶中,以开发用于感染伤口的智能敷料。通过UV-Vis和傅立叶变换红外光谱(FT-IR)对TA-Ti IV 金属成对化合物的化学和配位结构进行了表征。通过使用NIH 3T3成纤维细胞的MTT分析,探索了抗微生物金属元素的细胞毒性。金属离子的释放通过电感耦合等离子体质谱法(ICP-MS)进行评估,表明金属离子与TA的配位相互作用后释放的曲线不同。金属盐的形成和分解对酸和氧化剂H2O2的存在很敏感,由于细菌的代谢活性和内在的免疫反应,酸和氧化剂H2O2是在感染的伤口中自发产生的物质。研究了在不同pH值5.5、7.4和8.5条件下TA-Ti IV -Cu II 金属盐的Cu II 释放速率。另外,由于TA中没食子酰基的氧化作用,H2O2的添加会触发Cu II 的快速释放。因此,在伤口被感染和愈合的同时,TA-Ti IV -Cu II 金属元素的抗菌效力可以同时被激活。通过琼脂扩散试验研究了金属成瘾菌对革兰氏阴性大肠杆菌,耐革兰氏阳性的金黄色葡萄球菌(USA300)和表皮葡萄球菌的抗菌性能。在动物模型中,TA-Ti IV -Cu II 金属盐用作感染伤口的敷料,表明伤口部位恢复更快,周围细菌数量极低与TA-Ti IV 凝胶和纱布相比。因此,从智能性质衍生的金属盐是用于医疗应用的有前途和潜在的材料。

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