Antioxidative Activity of Some S-Alkyl Derivatives of Thiosalicylic Acid. In Vivo and In Silico Approach

Marina Nikolic, Marina Ž. Vesović, M. Andjic, Jovana V Bradic, Aleksandar Kocovic, Nikola Nedeljković, Ana S. Živanović, Andriana M Bukonjić, D. Tomović, Gordana P Radić, Zoran Ratković, Miloš Nikolić
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Abstract

This study examined the effects of S-alkyl derivatives acute administration on local redox status and interaction between tested compounds and antioxidant enzymes via molecular docking studies. This study included 88 male Wistar albino rats divided into three experimental groups, receiving different S-alkyl derivatives per os in three different doses (10 mg/kg, 15 mg/kg, and 20 mg/kg) and two control groups, CMC - rats treated with 1% carboxymethyl cellulose and indomethacin group (IND) – rats treated with indomethacin (10 mg/kg). Carrageenan-induced paw edema model was used for evaluation of local antioxidant potential of the investigated S-alkyl derivatives. After finishing the experimental protocol, carrageenan-induced edema feet of each animal were collected and homogenized. From isolated supernatant pro-oxidative parameters (O2 −., NO2 −, and TBARS) and antioxidant enzymes activity (SOD, CAT, and GSH) were spectrophotometrically measured. Molecular docking studies were performed in AutoDock Vina software. The levels of pro-oxidative parameters were significantly decreased in tissue of rats treated with S-alkyl derivatives, while dose dependent manner in TBARS reduction was observed in L3 groups (p<0.05). Moreover, tested compounds exposed antioxidant activity due to enhanced CAT activity compared to untreated rats while the most prominent changes in GSH activity was observed after acute administration of L3 in the highest dose (p<0.05). According to molecular docking parameters, derivative L3 exhibited the highest binding affinity towards antioxidant enzymes. Obtained in vivo and in silico results suggest the high antioxidative potential of L3 and its beneficial effect on redox balance recovery in state of increased inflammation.
硫代水杨酸某些 S-烷基衍生物的抗氧化活性。体内和硅学方法
本研究通过分子对接研究,探讨了急性给药 S-烷基衍生物对局部氧化还原状态的影响,以及受试化合物与抗氧化酶之间的相互作用。本研究纳入了 88 只雄性 Wistar 白化大鼠,分为三个实验组,每只大鼠接受三种不同剂量(10 毫克/千克、15 毫克/千克和 20 毫克/千克)的不同 S-烷基衍生物,以及两个对照组,即 CMC 组--接受 1%羧甲基纤维素治疗的大鼠和吲哚美辛组(IND)--接受吲哚美辛(10 毫克/千克)治疗的大鼠。利用卡拉胶诱导的爪水肿模型评估所研究的 S-烷基衍生物的局部抗氧化潜力。实验结束后,收集每只动物的角叉菜胶诱导的水肿脚并匀浆。从分离的上清液中测量原氧化参数(O2、NO2 和 TBARS)和抗氧化酶活性(SOD、CAT 和 GSH)。分子对接研究在 AutoDock Vina 软件中进行。经 S-烷基衍生物处理的大鼠组织中的促氧化参数水平明显降低,而 L3 组中 TBARS 的降低呈剂量依赖性(p<0.05)。此外,与未处理的大鼠相比,测试化合物的抗氧化活性增强了 CAT 活性,而在急性服用最高剂量的 L3 后,观察到 GSH 活性发生了最明显的变化(p<0.05)。根据分子对接参数,衍生物 L3 与抗氧化酶的结合亲和力最高。体内和硅学研究结果表明,L3 具有很高的抗氧化潜力,在炎症加剧的情况下对恢复氧化还原平衡有益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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