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Synthesis and antimicrobial activity of gold nanoparticle conjugates with cefotaxime

机译:头孢噻肟纳米金复合物的合成及抑菌活性

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Gold nanoparticles (GNPs) have attracted significant interest as a novel platform for various applications to nanobiotechnology and biomedicine. The conjugates of GNPs with antibiotics and antibodies were also used for selective photothermal killing of protozoa and bacteria. Also the conjugates of some antibiotics with GNPs decreased the number of bacterial growing cells. In this work was made the procedure optimization for conjugation of cefotaxime (a third-generation cephalosporin antibiotic) with GNPs (15 nm) and we examined the antimicrobial properties of this conjugate to bacteria culture of E.coli K-12. Addition of cefotaxime solution to colloidal gold does not change their color and extinction spectrum. For physiologically active concentration of cefotaxime (3 μg/mL), it was shown that the optimum pH for the conjugation was more than 9.5. A partial aggregation of the GNPs in saline medium was observed at pH 6.5-7.5. The optimum concentration of K_2CO_3 for conjugation cefotaxime with GNPs-15 was 5 mM. The optimum concentration of cefotaxime was at 0.36 μg/mL. We found the inhibition of the growth of E. coli K12 upon application cefotaxime-GNP conjugates.
机译:作为纳米生物技术和生物医学的各种应用的新型平台,金纳米颗粒(GNP)引起了极大的兴趣。 GNP与抗生素和抗体的结合物也用于对原生动物和细菌的选择性光热杀死。此外,某些抗生素与GNP的结合物也减少了细菌生长细胞的数量。在这项工作中,对头孢噻肟(第三代头孢菌素抗生素)与GNP(15 nm)结合的程序进行了优化,我们研究了该结合物对大肠杆菌K-12细菌培养的抗菌性能。将头孢噻肟溶液添加到胶体金中不会改变其颜色和消光光谱。对于头孢噻肟的生理活性浓度(3μg/ mL),显示缀合的最佳pH值大于9.5。在pH 6.5-7.5时,在盐水培养基中观察到GNP的部分聚集。头孢噻肟与GNPs-15结合的最佳K_2CO_3浓度为5 mM。头孢噻肟的最佳浓度为0.36μg/ mL。我们发现应用头孢噻肟-GNP偶联物后对大肠杆菌K12的生长有抑制作用。

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