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Cellular and molecular mechanism of ofloxacin induced apoptotic cell death under ambient UV-A and sunlight exposure

机译:氧氟沙星在环境紫外线和阳光照射下诱导凋亡细胞死亡的细胞和分子机制

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Ofloxacin (OFLX) is a racemic mixture of levofloxacin which revealed phototoxicity in patients exposed with sunlight after medication. Here, we have been addressed the possible cellular and molecular mechanisms of OFLX induced apoptosis under ambient UV-A and sunlight exposure using HaCaT cell line as a model. The results showed that Photodegradation and three photo-products formation of OFLX by LC-MS/MS under ambient intensities of UV-A (1.5 and 2.2 mW/cm(2)) and sunlight. OFLX produced O-1(2), O-2(-), and OH radicals via type-II- and type-I- dependent reaction mechanism, which corroborated by its specifi c quenchers. 2'-dGua degradation in photochemical and % tail DNA formation in cell line using comet test advocated the genotoxic potential of OFLX. Photocytotoxic assays (MTT and NRU) revealed the considerable decline in cell viability by OFLX. OFLX triggered apoptosis, proved by cell cycle, Annexin V/PI double staining along with acridine orange (AO)/ethidium bromide (EB), and Hoechst staining as well as caspase-3 activity by colorimetric assay. OFLX induced lysosomal disruption and mitochondrial membrane destabilization confi rmed through fl uorescence staining with AO/JC-1. OFLX signifi cantly upregulated the expression of p21 and bax genes. In conclusion, the study revealed that photosensitized OFLX induced apoptosis via ROS-mediated DNA damage, destabilization of lysosomal and mitochondrial membrane, and upregulation of p21, bax, and caspase-3 genes.
机译:氧氟沙星(OFLX)是左氧氟沙星的外消旋混合物,在服药后暴露于阳光下的患者显示出光毒性。在这里,我们已经解决了使用HaCaT细胞系在环境UV-A和日光照射下OFLX诱导凋亡的可能的细胞和分子机制。结果表明,在环境强度为UV-A(1.5和2.2 mW / cm(2))和日光下,LC-MS / MS可以进行光降解和OFLX的三种光产物形成。 OFLX通过II型和I型依赖的反应机理产生O-1(2),O-2(-)和OH自由基,这由其特定的淬灭剂证实。使用彗星试验,光化学中的2'-dGua降解和细胞系中尾巴DNA形成的百分比提倡了OFLX的遗传毒性潜力。光细胞毒性测定(MTT和NRU)显示,OFLX使细胞活力大大下降。 OFLX通过细胞周期,膜联蛋白V / PI双重染色以及a啶橙(AO)/溴化乙锭(EB)以及Hoechst染色以及caspase-3活性(通过比色测定)证明了细胞凋亡。 OFLX通过AO / JC-1荧光染色证实了溶酶体破坏和线粒体膜失稳。 OFLX显着上调了p21和bax基因的表达。总之,该研究表明光敏的OFLX通过ROS介导的DNA损伤,溶酶体和线粒体膜的失稳以及p21,bax和caspase-3基因的上调诱导凋亡。

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