Institute of Clinical and Translational Research, Biomedical Research Center, University Science Park for Biomedicine, Slovak Academy of Sciences, 845 05 Bratislava, Slovakia.
Department of Pharmacology and Toxicology, Faculty of Pharmacy, Comenius University, 832 32 Bratislava, Slovakia.
Molecules. 2019 Mar 22;24(6):1148. doi: 10.3390/molecules24061148.
Doxycycline (DOXY) is an antibiotic routinely prescribed in human and veterinary medicine for antibacterial treatment, but it has also numerous side effects that include oxidative stress, inflammation, cancer or hypoxia-induced injury. Endogenously produced hydrogen sulfide (H₂S) and polysulfides affect similar biological processes, in which reactive oxygen species (ROS) play a role. Herein, we have studied the interaction of DOXY with H₂S (Na₂S) or polysulfides (Na₂S₂, Na₂S₃ and Na₂S₄) to gain insights into the biological effects of intermediates/products that they generate. To achieve this, UV-VIS, EPR spectroscopy and plasmid DNA (pDNA) cleavage assay were employed. Na₂S or Na₂S₂ in a mixture with DOXY, depending on ratio, concentration and time, displayed bell-shape kinetics in terms of producing/scavenging superoxide and hydroxyl radicals and decomposing hydrogen peroxide. In contrast, the effects of individual compounds (except for Na₂S₂) were hardly observable. In addition, DOXY, as well as oxytetracycline and tetracycline, interacting with Na₂S or other studied polysulfides reduced the cPTIO radical. Tetracyclines induced pDNA cleavage in the presence of Na₂S. Interestingly, they inhibited pDNA cleavage induced by other polysulfides. In conclusion, sulfide and polysulfides interacting with tetracyclines produce/scavenge free radicals, indicating a consequence for free radical biology under conditions of ROS production and tetracyclines administration.
多西环素(DOXY)是一种在人类和兽医医学中常规用于抗菌治疗的抗生素,但它也有许多副作用,包括氧化应激、炎症、癌症或缺氧诱导的损伤。内源性产生的硫化氢(H₂S)和多硫化物影响类似的生物过程,其中活性氧(ROS)发挥作用。在此,我们研究了 DOXY 与 H₂S(Na₂S)或多硫化物(Na₂S₂、Na₂S₃和 Na₂S₄)的相互作用,以深入了解它们产生的中间产物/产物的生物学效应。为此,我们采用了 UV-VIS、EPR 光谱和质粒 DNA(pDNA)切割实验。Na₂S 或 Na₂S₂与 DOXY 的混合物,根据比例、浓度和时间,在产生/清除超氧自由基和羟基自由基以及分解过氧化氢方面表现出钟形动力学。相比之下,单独化合物(除了 Na₂S₂)的作用几乎难以观察到。此外,DOXY 以及土霉素和四环素与 Na₂S 或其他研究的多硫化物相互作用,降低了 cPTIO 自由基。土霉素在存在 Na₂S 的情况下诱导 pDNA 切割。有趣的是,它们抑制了其他多硫化物诱导的 pDNA 切割。总之,与四环素相互作用的硫化物和多硫化物产生/清除自由基,表明在 ROS 产生和四环素给药条件下对自由基生物学的后果。