Synthesis, characterization, and biological activities of novel organometallic compounds of rhenium(I) with 2-(2-benzylidenehydrazinyl) benzothiazole Schiff-base derivatives: Molecular docking, ADME, and DFT studies.

Aelvish D Padariya, Nirbhay K Savaliya, Hitesh M Parekh, Bhupesh S Bhatt, Vaibhav D Bhatt, Mohan N Patel
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Abstract

A series of substituted 2-(2-benzylidenehydrazinyl)benzothiazole Schiff-base derivatives and complexes containing Re(I) were synthesized and analyzed using various characterization techniques, including elemental analysis, conductance measurement, 1H-NMR, FT-IR, and LC-MS. The biological activities of the compounds were evaluated. Binding affinity between the complexes and calf thymus DNA (CT-DNA) was conducted using UV-visible spectroscopy, viscosity measurement, fluorescence spectroscopy, and molecular docking studies, indicating intercalation binding mode. The broth dilution method evaluated antibacterial activity against two Gram-positive and three Gram-negative bacteria. The results demonstrated the effectiveness of each complex against the tested pathogens. The MTT assay examined cytotoxic qualities on MCF-7 cell lines, demonstrating strong cytotoxic effects. The lethality of brine prawn assay was employed to assess the toxicity of the compounds. The Schiff base was optimized using the 6-31 G (d, p) basis set and B3LYP techniques. Density functional theory calculations were performed to compare the bond angles and lengths of the synthesized compounds with experimental values, showing good agreement, and to calculate the related orbital energies. The therapeutic qualities were evaluated using an in silico ADMET model, which verified that the synthesized compounds have qualities similar to those of drugs.

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铼(I)与2-(2-苄基乙肼基)苯并噻唑希夫碱衍生物的新型有机金属化合物的合成、表征和生物活性:分子对接、ADME和DFT研究。
合成了一系列含Re(I)取代的2-(2-苄基乙肼基)苯并噻唑希夫碱衍生物和配合物,并采用元素分析、电导测量、1H-NMR、FT-IR和LC-MS等表征技术对其进行了分析。对化合物的生物活性进行了评价。通过紫外可见光谱、粘度测量、荧光光谱和分子对接研究,对复合物与小牛胸腺DNA (CT-DNA)的结合亲和力进行了研究,表明其具有插层结合模式。肉汤稀释法对两种革兰氏阳性菌和三种革兰氏阴性菌的抑菌活性进行了评价。结果证明了每种复合物对测试病原体的有效性。MTT试验检测了MCF-7细胞系的细胞毒性,显示出很强的细胞毒性作用。采用盐水对虾致死试验对化合物的毒性进行评价。采用6-31 G (d, p)基集和B3LYP技术对Schiff碱基进行优化。通过密度泛函理论计算,将合成化合物的键角和键长与实验值进行比较,结果吻合较好,并计算了相关的轨道能。使用计算机ADMET模型评估了治疗质量,该模型验证了合成的化合物具有与药物相似的质量。
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