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Anti-Toxoplasma gondii activity of 5-oxo-hexahydroquinoline derivatives: synthesis, in vitro and in vivo evaluations, and molecular docking analysis

机译:5-氧代 - 六羟基喹啉衍生物的抗弓形虫杆菌活性:合成,体外和体内评价,以及分子对接分析

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Background and purpose: The aim of this study was to evaluate the in vitro and in vivo anti- Toxoplasma gondii ( T. gondii) effect of 5-oxo-hexahydroquinoline compounds. Moreover, molecular docking study of the compounds into the active site of enoyl-acyl carrier protein reductase (ENR) as a necessary enzyme for the vitality of apicoplast was carried out. Experimental approach: A number of 5-oxo-hexahydoquinoline derivatives (Z1-Z4) were synthesized. The T. gondii tachyzoites of RH strain were treated by different concentrations (1-64 μg/mL) of the compounds. The viability of the encountered parasites with compounds was assessed using flow cytometry and propidium iodide (PI) staining. Due to the high mortality effect of Z 3 and Z 4 in vitro , their chemotherapy effect was assessed by inoculation of tachyzoites to four BALB/c mice groups (n = 5), followed by the gavage of various concentrations of the compounds to the mice. Molecular docking was done to study the binding affinity of the synthesized 5-oxo-hexahydroquinolines into ENR enzyme active site byusing AutoDock Vina ? software. Docking was performed by a Lamarckian Genetic Algorithm with 100 runs. Findings / Results: Flow cytometry assay results indicated compounds Z 3 and Z 4 had relevant mortality effect on parasite tachyzoites. Besides, in vivo experiments were also performed and a partial increase of mice longevity between control and experiment groups was recorded. Molecular docking of Z 3 and Z 4 in the binding site of ENR enzyme indicated that the compounds were well accommodated within the binding site. Therefore, it could be suggested that these compounds may exert their anti- T. gondii activity through the inhibition of the ENR enzyme. Conclusion and implications: Compounds Z 3 and Z 4 are good leads in order to develop better anti- T. gondii agents as they demonstrated both in vitro and in vivo inhibitory effects on tachyzoites viability and infection. Further studies on altering the route of administration along with additional pharmacokinetics evaluations are needed to improve the anti- T. gondii impacts of 5-oxo-hexahydroquinoline compounds.
机译:背景和目的:本研究的目的是评估5-氧代 - 六羟基喹啉化合物的体外和体内抗弓形虫杆菌(T.Gondii)作用。此外,实施了化合物在Enicoplast活力的必要酶中将化合物的分子对接研究进入烯库 - 酰基载体蛋白质还原酶(ENR)的活性位点。实验方法:合成了许多5-氧代 - 六碳喹啉衍生物(Z1-Z4)。 RH菌株的T.Gondii Tachyzoites由不同浓度(1-64μg/ ml)处理的化合物处理。使用流式细胞术和碘化丙啶(PI)染色来评估遇到的寄生虫与化合物的活力。由于Z 3和Z 4体外的高死亡率,通过将Tachyzoites接种到四个BALB / C小鼠基团(n = 5)来评估它们的化疗效果,然后将各种浓度的化合物的饲养剂进行评估。进行分子对接以研究合成的5-氧代 - 六羟基喹啉的结合亲和力,进入ENR酶活性位点,通过验证Autodock Vina?软件。通过Lamarckian遗传算法进行对接,100次运行。结果/结果:流式细胞术测定结果表明化合物Z 3和Z 4对寄生虫Tachyzoites具有相关的死亡率影响。此外,还进行了体内实验,记录了对照和实验组之间的小鼠寿命的部分增加。 Z 3和Z 4在恩酶的结合位点中的分子对接表明该化合物在结合位点内很好地容纳。因此,可以提出这些化合物可以通过抑制eNAz酶来施加抗-Gondii活性。结论和含义:化合物Z 3和Z 4是良好的导线,以便在体外和体内抑制作用和感染的体外和体内抑制作用上表现出更好的抗-Gondii剂。需要进一步研究改变给药途径以及另外的药代动力学评估,以改善5-氧代 - 六羟基喹啉化合物的抗结构撞击。

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