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Towards antimicrobial yet bioactive Cu-alginate hydrogels

机译:迈向抗菌却具有生物活性的海藻酸铜水凝胶

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The simplest approach to enhance alginate hydrogel characteristics and functional properties is to replace the calcium in the process of alginate gelation with other metallic ions which are essential for living systems. Gelling of alginate with other ions and using modern encapsulation techniques can provide new delivery systems with required properties. Hence, in this study Cu-alginate hydrogels in the form of microbeads were produced by electrostatic extrusion using gelling solutions with Cu(II) concentrations in the range 13.5-270 mM and comprehensively characterized in vitro. The variation of gelling solution concentration influenced the microbead Cu(II) content, size, biomechanical properties, Cu(II) release and subsequently potential biomedical application. The formulations chosen for biomedical evaluation showed potential for antimicrobial and tissue engineering applications. Microbeads with higher Cu(II) loading (similar to 100 mu mol g(-1)) induced immediate bactericidal effects against Escherichia coli and Staphylococcus aureus. Conversely, Cu(II) release from microbeads with the Cu(II) content of similar to 60 mu mol g(-1) was slower and they were suitable for promoting and maintaining chondrogenic phenotype of bovine calf chondrocytes in 3D culture. Results of this study have shown possibilities for tuning Cu-alginate properties for potential biomedical applications such as antimicrobial wound dressings, tissue engineering scaffolds or articular cartilage implants.
机译:增强藻酸盐水凝胶特性和功能特性的最简单方法是,在藻酸盐凝胶化过程中用对生命系统必不可少的其他金属离子代替钙。海藻酸盐与其他离子的胶凝并使用现代的封装技术可以为具有所需特性的新型输送系统提供支持。因此,在这项研究中,微珠形式的海藻酸铜水凝胶是通过使用浓度为13.5-270 mM的Cu(II)的胶凝溶液通过静电挤压生产的,并在体外进行了全面表征。胶凝溶液浓度的变化影响微珠Cu(II)的含量,大小,生物力学性能,Cu(II)释放以及随后的潜在生物医学应用。选择用于生物医学评估的制剂具有抗微生物和组织工程应用的潜力。具有较高Cu(II)含量(约100μmol g(-1))的微珠诱导对大肠杆菌和金黄色葡萄球菌的即时杀菌作用。相反,从微珠中释放的Cu(II)的Cu(II)含量接近60μmol g(-1)较慢,并且它们适用于在3D培养中促进和维持牛小牛软骨细胞的软骨形成表型。这项研究的结果表明,为潜在的生物医学应用(如抗菌伤口敷料,组织工程支架或关节软骨植入物)调整铜藻酸盐特性的可能性。

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