3-(羟甲基)-3-甲基-2,6-二苯哌啶-4-酮的光谱、nlo、nbo、生化研究

A.K. PANDEY, V.K. SINGH, A.K. SHARMA, S.N. TIWARI, G. MISHRA, R.K.S. YADAV, V.N. MISHRA
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引用次数: 0

摘要

哌替啶因其药理活性和药物设计而受到广泛关注。哌啶衍生物具有重要的抗癌和肿瘤活性。癌症是世界上最困难的疾病(WHO),它基本上被认为是异常细胞不受控制的生长。本文利用理论量子化学方法计算了哌啶衍生物3-(羟甲基)-3-甲基-2,6-二苯基哌啶-4- 1的通信结构和振动特性。通过优化几何结构、光谱行为、化学反应性和分子对接分析,计算了哌啶衍生物3-(羟甲基)-3-甲基-2,6-二苯基哌啶-4- 1的主要结构。在分子的振动特征中建立了模式耦合的信息。利用HOMO-LUMO能隙预测了3-(羟甲基)-3-甲基-2,6-二苯哌啶-4-酮的化学反应稳定性。分子静电表面电位(MESP)图利用了分子中单个原子电荷吸积的全图,对预测亲核和亲电电荷中心非常有用。哌啶衍生物3-(羟甲基)-3-甲基-2,6-二苯基哌啶-4-酮的药理重要性是通过计算生物活性来确定的。哌啶衍生物3-(羟甲基)- 3-甲基-2,6-二苯基哌啶-4- 1的抑制性能和化学反应性被用HOMO-LUMO能量描述的化学反应性所熟知。哌啶衍生物3-(羟甲基)- 3-甲基-2,6-二苯哌啶-4- 1的抑制电位通过计算的亲脂性、水溶性和结合亲和力来确定。并与合适的靶点进行了分子对接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPECTROSCOPIC, NLO, NBO, BIOCHEMICAL INVESTIGATION OF 3-(HYDROXYMETHYL)-3-METHYL-2,6-DIPHENYLPIPERIDIN-4-ONE
The piperidine put deep attention to research due to their pharmacological activity and hence drug designing. The derivatives of piperidine have important activities against cancers and tumor disease. Cancer is the most difficult disease in the world (WHO) which is basically considered to be the uncontrolled growth of abnormal cells. In present communication structural and vibrational features of piperidine derivatives 3-(hydroxymethyl)-3-methyl-2,6-diphenylpiperidin-4-one has been computed based on theoretical quantum chemical approach. The primary aspects of piperidine derivatives 3-(hydroxymethyl)-3-methyl-2,6-diphenylpiperidin-4-one structure has been calculated by using optimized geometry, spectroscopic behavior, chemical reactivity and molecular docking analysis. The info about coupled of modes were founded in vibrational features of the molecule. The stability of the chemical reactivity of 3-(hydroxymethyl)-3-methyl-2,6-diphenylpiperidin-4-one was predicted by using HOMO-LUMO energy gap. The molecular electrostatic surface potential (MESP) plot utilizes overall picture of accretion of charges on separate atoms in molecule which very useful predict the nucleophilic and electrophilic charge center. The pharmacological importance of piperidine derivatives 3-(hydroxymethyl)-3-methyl-2,6-diphenylpiperidin-4-one is established by calculated biological activity. The inhibition properties and chemical reactivity of piperidine derivatives 3-(hydroxymethyl)- 3-methyl-2,6-diphenylpiperidin-4-one are well-known by chemical reactivity descriptors by using HOMO-LUMO energies. The inhibition potentials of piperidine derivatives 3-(hydroxymethyl)- 3-methyl-2,6-diphenylpiperidin-4-one are established by calculated lipophilicity, aqueous solubility, and binding affinity. The docking of molecule has been also performed with suitable target.
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