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Synthesis of Thiol Derivatives of Biological Active Compounds for Nanotechnology Application

机译:纳米技术应用生物活性化合物硫醇衍生物的合成

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摘要

An efficient method of thiol group introduction to the structure of common natural products and synthetic active compounds with recognized biological efficacy such genistein (1), 5,11-dimethyl-5H-indolo[2,3-b]quinolin (2), capecitabine (3), diosgenin (4), tigogenin (5), flumethasone (6), fluticasone propionate (7), ursolic acid methyl ester (8), and β-sitosterol (9) was developed. In most cases, the desired compounds were obtained easily via two-step processes involving esterification reaction employing S-trityl protected thioacetic acid and the corresponding hydoxy-derivative, followed by removal of the trityl-protecting group to obtain the final compounds. The results of our preliminary experiments forced us to change the strategy in the case of genistein (1), and the derivatization of diosgenin (4), tigogenin (5), and capecitabine (3) resulted in obtaining different compounds from those designed. Nevertheless, in all above cases we were able to obtain thiol-containing derivatives of selected biological active compounds. Moreover, a modelling study for the two-step thiolation of genistein and some of its derivatives was accomplished using the density functional theory (B3LP). A hypothesis on a possible reason for the unsuccessful deprotection of the thiolated genistein is also presented based on the semiempirical (PM7) calculations. The developed methodology gives access to new sulphur derivatives, which might find a potential therapeutic benefit.
机译:硫醇组的高效方法介绍普通天然产物和合成活性化合物的结构,具有公认的生物学效果如此甘氨酸(1),5,11-二甲基-5H- Indolo [2,3-B]喹啉(2),Capecitabine (3),衍生因(5),氟喹啉酮(6),氟基丙酸酯(7),氟硅酸甲酯(8),β-谷甾醇(9)。在大多数情况下,通过涉及使用S-Trityl保护的硫酸和相应的烷基衍生物的酯化反应的两步方法容易地获得所需的化合物,然后除去Trityl保护基团以获得最终化合物。我们初步实验的结果迫使我们在Genistein(1)的情况下改变策略,以及Diosgenin(4),Tigogenin(5)和Capecitabine(3)的衍生化导致从设计的那些中获得不同的化合物。然而,在上述所有情况下,我们能够获得含硫醇的选定生物活性化合物的衍生物。此外,使用密度函数理论(B3LP)完成了Genistein的两步硫醇和一些衍生物的建模研究。还基于半透镜(PM7)计算,还介绍了对硫醇化结核病不成功脱保护的可能原因的假设。开发的方法可以获得新的硫衍生物,这可能会发现潜在的治疗益处。

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