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首页> 外文期刊>RSC Advances >Identification of novel pyrazole–rhodanine hybrid scaffolds as potent inhibitors of aldose reductase: design, synthesis, biological evaluation and molecular docking analysis
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Identification of novel pyrazole–rhodanine hybrid scaffolds as potent inhibitors of aldose reductase: design, synthesis, biological evaluation and molecular docking analysis

机译:鉴定新型吡唑 - 罗丹明杂交支架作为醛糖还原酶有效抑制剂:设计,合成,生物学评价和分子对接分析

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In an effort to develop a new class of potent aldose reductase inhibitors, a series of 1,3-diarylpyrazole assimilated 3-substituted 4-oxo-2-thioxo-1,3-thiazolidines ( 9a–n ) was designed, and synthesized in good to excellent yields by a pharmacophore integration approach. The structures of the newly synthesized pyrazole–rhodanine derivatives were established by readily available spectroscopic methods (FTIR, ~(1) H and ~(13) C NMR) and mass spectrometry. The hybrid compounds were evaluated as aldehyde and aldose reductase inhibitors. The biological screening results identified several compounds as remarkable inhibitors of ALR1 and ALR2. Among them, compounds 9c and 9k showed excellent activity (and complete selectivity) towards the aldose reductase enzyme with IC _(50) values of 1.22 ± 0.67, and 2.34 ± 0.78 μM, respectively, as compared to the standard drug (sorbinil; IC _(50) = 3.10 ± 0.20 μM). The molecular docking analysis of the most potent inhibitor 9c was performed in order to identify the putative binding modes inside the active pocket of the enzymes. These newly discovered aldose reductase inhibitors are believed to represent valuable lead structures to further streamline the generation of candidate compounds to target a number of pathological conditions, most strikingly long-term diabetic complications.
机译:为了开发新类效率的醛糖还原酶抑制剂,设计了一系列1,3-二芳基吡唑同化的3-取代的4-氧代-2-硫代氧基-1,3-噻唑(9A-N),并合成通过药物团聚合方法良好的优质产量。通过容易获得的光谱方法(FTIR,〜(1)H和〜(13)C NMR)和质谱法建立新合成的吡唑-罗达胺衍生物的结构。将杂化化合物评价为醛和醛糖还原酶抑制剂。生物筛选结果将几种化合物鉴定为ALR1和ALR2的显着抑制剂。其中,与标准药物(Sorbinil; IC)相比,化合物9c和9k分别显示出朝向醛糖还原酶的优异活性(和完全选择性)朝向醛糖还原酶均为1.22±0.67和2.34±0.78μm。 _(50)= 3.10±0.20μm)。进行最有效抑制剂9c的分子对接分析,以鉴定酶的活性袋内的推定结合模式。这些新发现的醛糖还原酶抑制剂被认为是有价值的铅结构,以进一步简化候选化合物的产生,以靶向许多病理条件,最引人注目的长期糖尿病并发症。

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