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首页> 外文期刊>Molecules >2-Arylidene-1-indandiones as Pleiotropic Agents with Antioxidant and Inhibitory Enzymes Activities
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2-Arylidene-1-indandiones as Pleiotropic Agents with Antioxidant and Inhibitory Enzymes Activities

机译:2-Aridlidene-1-indandiones作为具有抗氧化和抑制酶活性的多效药物。

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Indandiones are a relatively new group of compounds presenting a wide range of biological activities. The synthesis of these compounds was performed via a Knoevenagel reaction between an aldehyde and 1,3-indandione and were obtained with a yield up to 54%. IR, 1H-Nucleic Magnetic Resonance (NMR), 13C-NMR, LC/MS ESI+ and elemental analysis were used for the confirmation of the structures of the novel derivatives. Lipophilicity values of compounds were calculated theoretically and experimentally by reversed chromatography method as values RM. The novel derivatives were studied through in vitro and in vivo experiments for their activity as anti-inflammatory and antioxidant agents and as inhibitors of lipoxygenase, trypsin, and thrombin. The inhibition of the carrageenin-induced paw edema (CPE) was also determined for representative structures. In the above series of experiments, we find that all the compounds showed moderate to satisfying interaction with the stable DPPH free radical in relation to the concentration and the time 2-arylidene-1-indandione (10) was the strongest. We observed moderate or very low antioxidant activities for selected compounds in the decolorization assay with ABTS+?. Most of the compounds showed high anti-lipid peroxidation of linoleic acid induced by AAPH.2-arylidene-1-indandione (7) showed a strongly inhibited soybean LOX. Only 2-arylidene-1-indandione (3) showed moderate scavenging activity of superoxide anion, whereas 2-arylidene-1-indandione (8) and 2-arylidene-1-indandione (9) showed very strong inhibition on proteolysis. 2-arylidene-1-indandione (8) highly inhibited serine protease thrombin. 2-arylidene-1-indandiones (7, 8 and 9) can be used as lead multifunctional molecules. The compounds were active for the inhibition of the CPE (30–57%) with 2-arylidene-1-indandione (1) being the most potent (57%). According to the predicted results a great number of the derivatives can cross the Blood–Brain Barrier (BBB), act in CNS and easily transported, diffused, and absorbed. Efforts are conducted a) to correlate quantitatively the in vitro/in vivo results with the most important physicochemical properties of the structural components of the molecules and b) to clarify the correlation of actions among them to propose a possible mechanism of action. Hydration energy as EHYDR and highest occupied molecular orbital (HOMO) better describe their antioxidant profile whereas the lipophilicity as RM values governs the in vivo anti-inflammatory activity. Docking studies are performed and showed that soybean LOX oxidation was prevented by blocking into the hydrophobic domain the substrates to the active site.
机译:茚满是相对较新的化合物,具有广泛的生物活性。这些化合物的合成是通过醛和1,3-茚满二酮之间的Knoevenagel反应进行的,产率高达54%。 IR,1H-核磁共振(NMR),13C-NMR,LC / MS ESI +和元素分析用于确认新型衍生物的结构。化合物的亲脂性值通过反相色谱法在理论上和实验上作为RM值计算。通过体外和体内实验研究了这些新型衍生物的抗炎和抗氧化剂以及脂氧合酶,胰蛋白酶和凝血酶抑制剂的活性。还确定了角叉菜胶诱导的爪水肿(CPE)的抑制作用,用于代表性结构。在上述一系列实验中,我们发现,相对于浓度,所有化合物均与稳定的DPPH自由基表现出中度至令人满意的相互作用,并且2-亚芳基-1-茚满二酮(10)的时间最强。我们在使用ABTS +?的脱色测定中观察到所选化合物的中等或极低的抗氧化活性。大多数化合物对AAPH诱导的亚油酸具有很高的抗脂质过氧化作用.2-芳基-1-茚并二酮(7)显示出对大豆LOX的强烈抑制作用。只有2-亚芳基-1-茚满二酮(3)表现出适度的超氧阴离子清除活性,而2-亚芳基-1-茚满二酮(8)和2-亚芳基-1-茚满二酮(9)对蛋白水解具有很强的抑制作用。 2-芳基-1-茚满二酮(8)高度抑制丝氨酸蛋白酶凝血酶。 2-亚芳基-1-茚满二酮(7、8和9)可用作多功能铅化合物。这些化合物具有抑制CPE的活性(30-57%),其中2-芳基-1-茚二酮(1)最有效(57%)。根据预测结果,大量衍生物可以穿过血脑屏障(BBB),在中枢神经系统中起作用并易于运输,扩散和吸收。进行以下工作:a)定量地将体外/体内结果与分子结构成分的最重要的理化性质相关联; b)阐明它们之间的作用相关性,以提出可能的作用机理。作为EHYDR的水合能和最高占据分子轨道(HOMO)可以更好地描述其抗氧化特性,而作为RM值的亲脂性控制着体内的抗炎活性。进行了对接研究,结果表明,通过将疏水底物阻断到活性位点,可以防止大豆LOX氧化。

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