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Synthesis and Pharmacological Effects of Diosgenin–Betulinic Acid Conjugates

机译:二氧素蛋白 - 桦木酸缀合物的合成与药理作用

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摘要

The target diosgenin–betulinic acid conjugates are reported to investigate their ability to enhance and modify the pharmacological effects of their components. The detailed synthetic procedure that includes copper(I)-catalyzed Huisgen 1,3-dipolar cycloaddition (click reaction), and palladium-catalyzed debenzylation by hydrogenolysis is described together with the results of cytotoxicity screening tests. Palladium-catalyzed debenzylation reaction of benzyl ester intermediates was the key step in this synthetic procedure due to the simultaneous presence of a 1,4-disubstituted 1,2,3-triazole ring in the molecule that was a competing coordination site for the palladium catalyst. High pressure (130 kPa) palladium-catalyzed procedure represented a successful synthetic step yielding the required products. The conjugate 7 showed selective cytotoxicity in human T-lymphoblastic leukemia (CEM) cancer cells (IC50 = 6.5 ± 1.1 µM), in contrast to the conjugate 8 showing no cytotoxicity, and diosgenin (1), an adaptogen, for which a potential to be active on central nervous system was calculated in silico. In addition, 5 showed medium multifarious cytotoxicity in human T-lymphoblastic leukemia (CEM), human cervical cancer (HeLa), and human colon cancer (HCT 116). Betulinic acid (2) and the intermediates 3 and 4 showed no cytotoxicity in the tested cancer cell lines. The experimental data obtained are supplemented by and compared with the in silico calculated physico-chemical and absorption, distribution, metabolism, and excretion (ADME) parameters of these compounds.
机译:据报道,靶毒素 - 桦木酸缀合物探讨其增强和改变其组分的药理作用的能力。包括铜(I)的详细合成程序 - 催化Huisgen 1,3-偶极环加入(点击反应),以及通过氢分解的钯催化的脱苄酰化与细胞毒性筛选试验结果一起描述。苄基酯中间体的钯催化的脱苄基化反应是该合成程序中的关键步骤,因为在分子中同时存在1,4-二取代的1,2,3-三唑环,其是钯催化剂的竞争配位部位。高压(130kPa)钯催化的程序代表了成功的合成步骤,得到所需产物。缀合物7显示人T淋巴细胞白血病(CEM)癌细胞(IC50 = 6.5±1.1μm)中的选择性细胞毒性,与显示没有细胞毒性的缀合物8和Diosgenin(1),适应性在中枢神经系统中是活跃的,在硅中计算。此外,5显示人T淋巴细胞白血病(CEM),人宫颈癌(HELA)和人结肠癌(HCT 116)中的中等多种细胞毒性。桦木酸(2)和中间体3和4在测试的癌细胞系中没有表明细胞毒性。所获得的实验数据补充并与硅计算出的物理化学和吸收,分布,代谢和排泄(ADME)参数进行了补充和比较这些化合物的排泄物。

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