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Riboflavin-protected ultrasmall silver nanoclusters with enhanced antibacterial activity and the mechanisms

机译:核黄素保护的具有增强抗菌活性的超小银纳米簇及其机理

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Developing silver nanomaterials with efficient antimicrobial properties is of importance for combating bacteria. Here, we report ultrasmall riboflavin-protected silver nanoclusters (RF@AgNCs) that can effectively kill or suppress the growth of Gram-positive S. aureus , Gram-negative E. coli , and fungi C. albicans . Riboflavin (RF) with intrinsic biocompatibility was used as a surface ligand to synthesize silver nanoclusters. TEM revealed that the synthesized RF@AgNCs were ultrasmall (2.4 ± 1.2 nm), spherical and well-dispersed. Antibacterial activity tests showed that RF@AgNCs possessed superior antibacterial efficacy in comparison with RF, AgNPs and mixed RF and AgNPs (RF + AgNPs). The mechanisms of antibacterial activity of RF@AgNCs were studied by fluorescence microscopy-based Live/Dead cell staining assays and ROS measurement. And the results illustrated that the integrity of the bacteria membrane was disrupted and intracellular high level ROS generation was induced by RF@AgNCs. The cytotoxic activities were also assessed and RF@AgNCs were found to be non-toxic to human red blood cells and mammalian cells. With the highly efficient antibacterial activity and acceptable biocompatibility, RF@AgNCs hold great promise in biomedical applications as well as in water sterilization and the textile industry.
机译:开发具有有效抗菌性能的银纳米材料对于抵抗细菌至关重要。在这里,我们报道了可以有效杀死或抑制革兰氏阳性金黄色葡萄球菌,革兰氏阴性大肠杆菌和白色念珠菌真菌的超小核黄素保护的银纳米簇(RF @ AgNCs)。具有固有生物相容性的核黄素(RF)被用作表面配体来合成银纳米团簇。 TEM显示,合成的RF @ AgNCs非常小(2.4±1.2 nm),球形,分散良好。抗菌活性测试表明,RF @ AgNCs与RF,AgNPs以及混合的RF和AgNPs(RF + AgNPs)相比具有更好的抗菌功效。通过基于荧光显微镜的活/死细胞染色测定和ROS测量研究了RF @ AgNCs的抗菌活性的机制。结果表明RF @ AgNCs破坏了细菌膜的完​​整性,并诱导了细胞内高水平ROS的产生。还评估了细胞毒性活性,发现RF @ AgNCs对人红细胞和哺乳动物细胞无毒。具有高效的抗菌活性和可接受的生物相容性,RF @ AgNCs在生物医学应用以及水灭菌和纺织工业中具有广阔的前景。

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