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Potent Nonclassical Nucleoside Antiviral Drugs Based on the N,N-Diarylformamidine Concept

机译:基于N,N-二芳基甲am概念的有效非经典核苷类抗病毒药物

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摘要

New formamidine-3TC (3TC = 2',3'-dideoxy-3'-thiacytidine) analogues have been synthesized through various methods, and their antiviral activities (HIV, HBV) have been evaluated in vitro. Anti-HIV-1 in acutely infected MT-4 cells and peripheral blood monocellular cells (PBMCs) showed that compounds substituted by N,N-diarylformamidine side chains at the 4-N nucleic base position (compounds 3 and 8-11) had at least equivalent anti-HIV activity as 3TC (EC_(50) = 0.5 and 11.6 μM, respectively). Moreover, the newly synthesized compounds demonstrated higher anti-HBV activity (EC_(50) ranging from 0.01 to 0.05 μM) compared to the parent nucleoside 3TC (EC_(50) = 0.2 μM). It should be underlined that these new promising derivatives inhibited HIV in cells of a macrophage lineage, which are known to be cellular reservoir for HIV. These results were particularly of interest, since the antiviral activities appeared not to be mediated through the formamidine bond hydrolysis and consequently the release of free 3TC. These new analogue series were found to be highly stable to hydrolysis even after prolonged incubation in different biological media (t_(1/2) ranged from 48 to 120 h). This enzymatic stability, coupled to the fact that no delay in the antiviral response was observed compared to the free 3TC antiviral response, suggest that this new N,N-diarylformamidine nucleoside series should not be considered as classical prodrugs.
机译:已经通过各种方法合成了新的甲-3 3TC(3TC = 2',3'-二脱氧-3'-硫代胞苷)类似物,并已在体外评估了它们的抗病毒活性(HIV,HBV)。在急性感染的MT-4细胞和外周血单细胞细胞(PBMC)中,抗HIV-1表明在4-N核酸碱基位置(化合物3和8-11)被N,N-二芳基甲am侧链取代的化合物具有最小等效抗HIV活性为3TC(分别为EC_(50)= 0.5和11.6μM)。此外,与亲本核苷3TC(EC_(50)= 0.2μM)相比,新合成的化合物显示出更高的抗HBV活性(EC_(50)为0.01至0.05μM)。应当强调的是,这些新的有前途的衍生物在巨噬细胞谱系的细胞中抑制了HIV,而巨噬细胞谱系是已知的HIV的细胞贮存库。这些结果特别令人感兴趣,因为抗病毒活性似乎不是通过甲am键水解以及因此释放的游离3TC介导的。发现这些新的类似物系列即使在不同的生物介质中长时间孵育(t_(1/2)范围从48到120 h)后,也对水解高度稳定。这种酶的稳定性,再加上与游离3TC抗病毒反应相比未观察到抗病毒反应没有延迟的事实,表明该新的N,N-二芳基甲am核苷系列不应被视为经典的前药。

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