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首页> 外文期刊>The international journal of biochemistry and cell biology >Ambient UV-B exposure reduces the binding of ofloxacin with bacterial DNA gyrase and induces DNA damage mediated apoptosis
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Ambient UV-B exposure reduces the binding of ofloxacin with bacterial DNA gyrase and induces DNA damage mediated apoptosis

机译:暴露于紫外线B下会降低氧氟沙星与细菌DNA促旋酶的结合并诱导DNA损伤介导的细胞凋亡

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Ofloxacin (OFLX) is a broad spectrum antibiotic, which generates photo-products under sunlight exposure. Previous studies have failed to explain the attenuated anti-bacterial activity of OFLX. The study was extended to explore the unknown molecular mechanism of photogenotoxicity on human skin cell line (HaCaT) under environmental UV-B irradiation. Photochemically OFLX generates ROS and caused 2'-dGu0 photodegradation. We have addressed the binding affinity of OFLX and its photo-products against DNA gyrase. Significant free radical generation such as 102, Of and 'OH reduces antioxidants and demonstrated the ROS mediated OFLX phototoxicity. However, the formation of micronuclei and CPDs showed photogenotoxic potential of OFLX. OFLX induced cell cycle arrest in sub-G1 peak. OFLX triggers apoptosis via permeabilization of mitochondrial membrane with the downregulation of anti-apoptotic BcI-2 and caspase-3 whereas, upregulation of pro-apoptotic Bax and Cyto-C proteins. Our study illustrated that binding affinity of OFLX photo-products with DNA gyrase was mainly responsible for the attenuated antimicrobial activity. It was proved through molecular docking study. Thus, study suggests that sunlight exposure should avoid by drug users especially during peak hours for their safety from photosensitivity. Clinicians may guide patients regarding the safer use of photosensitive drugs during treatment. (C) 2016 Published by Elsevier Ltd.
机译:氧氟沙星(OFLX)是一种广谱抗生素,在阳光照射下会产生光产物。先前的研究未能解释OFLX减弱的抗菌活性。这项研究扩展到探索在环境UV-B照射下对人类皮肤细胞系(HaCaT)的光遗传毒性的未知分子机制。光化学上的OFLX产生ROS,并引起2'-dGu0光降解。我们已经解决了OFLX及其光产物对DNA旋转酶的结合亲和力。大量的自由基生成,例如102,Of和'OH减少了抗氧化剂并证明了ROS介导的OFLX光毒性。但是,微核和CPD的形成显示了OFLX的光遗传毒性潜力。 OFLX诱导细胞周期停滞在sub-G1峰中。 OFLX通过线粒体膜的透化触发细胞凋亡,同时下调抗凋亡的BcI-2和caspase-3,而上调促凋亡的Bax和Cyto-C蛋白。我们的研究表明,OFLX光产物与DNA促旋酶的结合亲和力是造成抗菌活性减弱的主要原因。通过分子对接研究证明。因此,研究表明,吸毒者应避免阳光直射,尤其是在高峰时段,以免受到光敏性的影响。临床医生可以指导患者有关在治疗期间安全使用光敏药物的信息。 (C)2016由Elsevier Ltd.出版

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