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Aqueous synthesis of ZnTe/dendrimer nanocomposites and their antimicrobial activity: implications in therapeutics

机译:水ZnTe /聚合物纳米复合材料的合成和他们的抗菌活性:影响治疗

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The present strategy proposes a simple and single step aqueous route for synthesizing stable, fluorescent ZnTe/dendrimer nanocomposites with varying dendrimer terminal groups. In these hybrid materials, the fluorescence of the semiconductor combines with the biomimetic properties of the dendrimer making them suitable for various biomedical applications. The ZnTe nanocomposites thus obtained demonstrate bactericidal activity against enteropathogenic bacteria without having toxic effects on the human erythrocytes. The average size of the ZnTe nanoparticles within the dendrimer matrix was in the range of 2.9-6.0 nm, and they have a good degree of crystallinity with a hexagonal crystal phase. The antibacterial activities of the ZnTe/dendrimer nanocomposites (ZnTe DNCs) as well other semiconductor nanocomposites were evaluated against enteropathogenic bacteria including multi-drug resistant Vibrio cholerae serogroup Ol and enterotoxigenic Escherichia coli (ETEC). ZnTe DNCs had significant antibacterial activity against strains of V. cholerae and ETEC with minimum inhibitory concentrations ranging from 64 to 512 μg ml~(-1) and minimum bactericidal concentrations ranging from 128 to 1000 μg ml~(-1). Thus, the observed results suggest that these water-soluble active nanocomposites have potential for the treatment of enteric diseases like diarrhoea and cholera.
机译:目前的策略提出了一种简单和单一水步路线合成稳定,荧光ZnTe /聚合物纳米复合材料不同聚合物终端组。混合材料的荧光半导体结合仿生聚合物使其适合的属性各种生物医学应用。纳米复合材料取得证明对致肠病的杀菌活性细菌没有不良影响人类红细胞。纳米颗粒在聚合物矩阵2.9 - -6.0纳米的范围,他们有很好的用六角晶体结晶度阶段。ZnTe / dendrimer nanocomposites (ZnTe DNCs) as well其他半导体纳米复合材料进行了评估对致肠病的细菌包括耐多药霍乱弧菌血清组Ol和产肠毒素的大肠杆菌(ETEC)。dnc有显著的抗菌活性对霍乱弧菌菌株和ETEC从64年最低抑制浓度512μg毫升~(1)和最低杀菌浓度范围从128到1000μg毫升~(1)。这些水溶性活性纳米复合材料肠道疾病的潜在治疗腹泻和霍乱。

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