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A facile and improved synthesis of sildenafil (Viagra?) analogs through solid support microwave irradiation possessing tyrosinase inhibitory potential, their conformational analysis and molecular dynamics simulation studies

机译:通过具有酪氨酸酶抑制潜能的固相支持微波辐射,轻松,改进地合成西地那非(Viagra?)类似物,其构象分析和分子动力学模拟研究

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摘要

Herein, the synthesis of some analogs of sildenafil (Viagra?) (21) is described, employing MW irradiations in key steps such as, SNAr reaction on important precursor bromopyrazole (7). Compound 7 was synthesized by the bromination followed by the amidation of readily available 1-methyl-3-propyl-1H-pyrazole-5-carboxylic acid (5). Compounds 9 and 10 were obtained as SNAr reaction products, apparently through the proposed dipolar high-energy transition states TS-1 and TS-2 under MW irradiation, respectively. In contrast, conventional heating failed to produce similar results, even after prolonged heating. Compound 10, upon chlorosulfonation followed by the coupling of various nucleophiles, yielded a series of compounds 12–20 as analogs of sildenafil (21). Compounds 12–21 were subjected to tyrosinase inhibition studies and SAR studies were carried out. This study reflected that the inhibition was enhanced with increase of carbon chain. In case of the compound 17, the –OH group was replaced with –CH2–CH2–OH with a resulting increase in inhibition against tyrosinase. Compound 17 was found to be more potent than the potent reference inhibitor LM and KA. The 2D and 3D hydrogen bonding descriptors that help to study QSPR were also calculated. Energetically most stable conformations of these compounds were analyzed. Their kinetic, potential and total energies were also calculated through MD simulation.
机译:本文描述了西地那非(Viagraα)(21)的一些类似物的合成,其在关键步骤如重要的前体溴吡唑(7)上的SNAr反应中采用了微波辐射。通过溴化,然后酰胺化易得的1-甲基-3-丙基-1H-吡唑-5-羧酸(5),来合成化合物7。显然是通过所提出的偶极高能跃迁态TS-1和TS-2在MW辐射下获得的,作为SNAr反应产物的化合物9和10。相反,即使长时间加热,常规加热也无法产生相似的结果。化合物10在进行氯磺化反应后偶联各种亲核试剂,生成了一系列化合物12–20,与昔多芬(21)相似。对化合物12–21进行了酪氨酸酶抑制研究,并进行了SAR研究。该研究表明,抑制作用随着碳链的增加而增强。在化合物17的情况下,-OH基团被-CH2-CH2-OH取代,从而增强了对酪氨酸酶的抑制作用。发现化合物17比有效的参考抑制剂LM和KA更有效。还计算了有助于研究QSPR的2D和3D氢键描述符。能量上最稳定的这些化合物的构象进行了分析。它们的动能,势能和总能量也通过MD模拟计算得出。

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