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Experimental and Density Functional Theory Characteristics of Ibrutinib, a Bruton’s Kinase Inhibitor Approved for Leukemia Treatment

机译:伊布鲁替尼的实验和密度泛函理论特征,批准白血病治疗的Bruton激酶抑制剂

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Ibrutinib, a Bruton’s tyrosine kinase that plays an essential role in the B-cell development and cancer cells, has been recently approved to treat chronic, lymphocytic, and other types of leukemia. This study focused on investigating ibrutinib by its electronic transitions, vibrational frequencies, and electrospray mass spectra. The experimental peaks for electronic spectrum were found at 248.0 and 281.0?nm, whereas the ν C?=?0 stretching frequency was found at 1652.4 and 1639.19?cm ?1 . These experimental properties were compared with the corresponding theoretical calculations in which density functional theory was applied. The optimized structure was obtained with the calculations using a hybrid function (B3LYP) and high-level basis sets [6-311G++(d,p)]. Most of the calculated vibrational frequencies showed a relatively good agreement with the experimental ones. The electronic transitions of ibrutinib calculated using time-dependent DFT method were performed at two different solvation methods: PCM and SMD. The mass spectrum of ibrutinib, its fragments, and its isotopic pattern agreed well with the expected spectra.
机译:Ibrutinib是一款在B细胞发育和癌细胞中起重要作用的Bruton的酪氨酸激酶,最近被批准治疗慢性,淋巴细胞和其他类型的白血病。本研究专注于通过其电子转换,振动频率和电喷雾质量光谱来调查伊布鲁伊替尼。电子谱的实验峰在248.0和281.0℃下发现,而νC?= 0拉伸频率在1652.4和1639.19?cm?1。将这些实验性与应用密度泛函理论进行了相应的理论计算进行了比较。使用混合函数(B3LYP)和高级基集[6-311G ++(D,P)],通过计算获得优化的结构。大多数计算出的振动频率显示了与实验性相对较好的一致性。使用时间依赖性DFT方法计算的Ibrutinib的电子转变以两种不同的溶剂化方法进行:PCM和SMD。 Ibrutinib,其片段及其同位素模式的质谱与预期光谱很好。

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