Department of Chemistry, University of Delhi, Delhi, 110007, India.
BioMedical Engineering Department, Faculty of Medicine, McGill University, Montreal, Canada.
Sci Rep. 2019 Dec 20;9(1):19542. doi: 10.1038/s41598-019-55839-8.
In present investigation, an attempt was undertaken to modify the C-9 position of noscapine (Nos), an opium alkaloid to yield 9 -hydroxy methyl and 9 -carbaldehyde oxime analogues for augmenting anticancer potential. The synthesis of 9-hydroxy methyl analogue of Nos was carried out by Blanc reaction and 9-carbaldehyde oxime was engineered by oxime formation method and characterized using FT-IR, H NMR, C NMR, mass spectroscopy, and so on techniques. In silico docking techniques informed that 9-hydroxy methyl and 9-carbaldehyde oxime analogues of Nos had higher binding energy score as compared to Nos. The IC50 of Nos was estimated to be 46.8 µM signficantly (P < 0.05) higher than 8.2 µM of 9-carbaldehyde oxime and 4.6 µM of 9-hydroxy methyl analogue of Nos in U87, human glioblastoma cells. Moreover, there was significant (P < 0.05) difference between the IC50 of 9-carbaldehyde oxime and 9-hydroxy methyl analogue of Nos. Consistent to in vitro cytotoxicity data, 9-hydroxy methyl analogue of Nos induced significantly (P < 0.05) higher degree of apoptosis of 84.6% in U87 cells as compared to 78.5% and 64.3% demonstrated by 9-carbaldehyde oxime and Nos, respectively. Thus the higher therapeutic efficacy of 9-hydroxy methyl analogue of Nos may be credited to higher solubility and inhibitory constant (K).
在目前的研究中,我们试图修饰鸦片生物碱那可丁(Nos)的 C-9 位,以生成 9-羟甲基和 9-醛肟类似物,从而增强抗癌潜力。Nos 的 9-羟甲基类似物的合成通过 Blanc 反应进行,9-醛肟通过肟形成方法合成,并通过傅里叶变换红外光谱(FT-IR)、核磁共振(H NMR)、碳谱(C NMR)、质谱等技术进行了表征。计算机对接技术表明,与 Nos 相比,Nos 的 9-羟甲基和 9-醛肟类似物具有更高的结合能评分。Nos 的 IC50 估计为 46.8 μM,显著(P<0.05)高于 9-醛肟的 8.2 μM 和 9-羟甲基类似物的 4.6 μM,在 U87 人神经胶质瘤细胞中。此外,9-醛肟和 9-羟甲基类似物的 IC50 之间存在显著差异(P<0.05)。与体外细胞毒性数据一致,9-羟甲基类似物在 U87 细胞中诱导的凋亡程度显著(P<0.05)高于 9-醛肟(78.5%)和 Nos(64.3%)。因此,9-羟甲基类似物的更高治疗效果可能归因于更高的溶解度和抑制常数(K)。