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Structural activity analysis spectroscopic investigation biological and chemical properties interpretation on Beta Carboline using quantum computational methods

机译:使用量子计算方法对Beta Carboline进行结构活性分析光谱研究生物学和化学性质的解释

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摘要

In this methodological work, the structural activity analysis have been carried out on β-Carboline to study the anti cancer activity and the way of improving the biological activity. The molecular spectroscopic tools were used to evaluate all the experimental data like spectral results and data were validated by the computational, HyperChem and Osiris tools. The structural, biological and physico-chemical related analyses have been performed to interpret the properties. The GPCR ligand calculated to be 0.11 for generating pharmacokinetic process, Specified drug information for the compound, was congregated from all types of structural activity which was drawn by spectral and HyperChem data. The σ and π interaction band gap (6.18 eV) ensured the drug consistency. The Mulliken charge process distribution was mapped, the charge orientation assignment was checked; the acquired negative charge potential consignment for the cause of antibiotic impact was verified. The molecular orbital interaction study was carried out to identify the origination of degeneracy of interaction causing drug mechanism. Using NMR spectral pattern, the chemical reaction path was recognized and the nodal region dislocation was distinguished on chemical shift. The Electronegativity (χ) and Electrophilicity charge transfer found to be 3.83 and 0.215, confirmed charge complex transfer for activating drug process in the compound. The molecular nonbonding section was thoroughly observed in order to find the occupancy energy, was the key process to initiate drug activity. The bathochromic electronic shift was observed and the existence of CT complex was discussed. The hindering of toxicity was inspected on inevitable chirality of the compound by specifying VCD spectrum.
机译:在这项方法学工作中,已经对β-卡巴琳进行了结构活性分析,以研究其抗癌活性和提高生物学活性的方法。使用分子光谱工具评估所有实验数据,例如光谱结果,并通过计算工具,HyperChem和Osiris工具验证数据。已经进行了与结构,生物学和物理化学相关的分析以解释其性质。从光谱和HyperChem数据得出的所有类型的结构活性中,汇总得出用于生成药代动力学过程的GPCR配体为0.11(化合物的指定药物信息)。 σ和π相互作用带隙(6.18 eV)确保了药物的一致性。绘制了Mulliken充电过程分布图,检查了充电方向分配;验证了获得的产生负电荷的抗生素潜在负电荷。进行了分子轨道相互作用研究,以确定引起药物作用机理的相互作用简并性的起源。利用核磁共振谱图,识别了化学反应路径,并根据化学位移区分了节点区位错。发现电负性(χ)和亲电性电荷转移为3.83和0.215,这证实了该化合物在激活化合物过程中的电荷配合物转移。彻底观察了分子的非键合部分,以发现占用能量,这是引发药物活性的关键过程。观察到红移电子位移,并讨论了CT复合物的存在。通过指定VCD光谱,检查了该化合物的不可避免的手性对毒性的阻碍。

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