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三种新型氟喹诺酮类化合物的合成及声动力学抗菌活性评价。

Synthesis and Sonodynamic Antibacterial Activity Evaluation of Three Novel Fluoroquinolone Compounds.

机构信息

School of Pharmaceutical Sciences, Liaoning University, Shenyang, China.

Beijing Liling Hengtai Pharmaceutical Co. Ltd., Beijing, China.

出版信息

Ultrasound Med Biol. 2023 Sep;49(9):2034-2041. doi: 10.1016/j.ultrasmedbio.2023.05.008. Epub 2023 Jun 16.

Abstract

OBJECTIVE

Three ciprofloxacin derivatives (CPDs) were synthesized. Also, their sonodynamic antibacterial activities and possible mechanism under ultrasound (US) irradiation were preliminarily investigated.

METHODS

Staphylococcus aureus and Escherichia coli were selected as the research objects. The sonodynamic antibacterial effects of three CPDs and their structure-effective relationship were explored by the inhibition rate. The reactive oxygen species (ROS) produced under US irradiation were detected by oxidative extraction spectrophotometry and used to analyze the sonodynamic antibacterial mechanism of three CPDs.

RESULTS

Research indicated that three CPDs, named compound 1 (C1), compound 2 (C2) and compound 3 (C3), separately all had strong sonodynamic antibacterial activities. In addition, C3 had the strongest effect relative to the other CPDs. The study also found that CPDs' concentration, US irradiation time, US solution temperature and US medium could disturb their sonodynamic antimicrobial effects. Moreover, O and ·OH were the main types of ROS produced by C1 and C3; the ROS produced by C2 included O, among other types.

CONCLUSION

Results showed that all three CPDs could be activated to produce ROS after US irradiation. Among them, C3 displayed the highest ROS production and the utmost activity, which may be related to the introduction of the electron-giving group at the C-3 position of the quinoline backbone.

摘要

目的

合成了三种环丙沙星衍生物(CPD)。同时,初步研究了它们在超声(US)照射下的声动力抗菌活性及其可能的机制。

方法

选择金黄色葡萄球菌和大肠杆菌作为研究对象。通过抑制率探讨了三种 CPD 的声动力抗菌效果及其结构-效关系。通过氧化提取分光光度法检测了 US 照射下产生的活性氧(ROS),并用于分析三种 CPD 的声动力抗菌机制。

结果

研究表明,三种 CPD,分别命名为化合物 1(C1)、化合物 2(C2)和化合物 3(C3),均具有较强的声动力抗菌活性。此外,C3 相对其他 CPD 具有最强的效果。研究还发现,CPD 的浓度、US 照射时间、US 溶液温度和 US 介质会干扰其声动力抗菌效果。此外,C1 和 C3 产生的 ROS 主要类型为 O 和·OH;C2 产生的 ROS 包括 O 等其他类型。

结论

结果表明,三种 CPD 在 US 照射后均可被激活产生 ROS。其中,C3 表现出最高的 ROS 产生和最大的活性,这可能与喹啉母核 C-3 位引入供电子基团有关。

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