d' Avila Farias Marília, Oliveira Pathise Souto, Dutra Filipe S Pereira, Fernandes Thiely Jacobsen, de Pereira Claudio M P, de Oliveira Simone Quintana, Stefanello Francieli Moro, Lencina Claiton Leonetti, Barschak Alethéa Gatto
Programa de Pós-Graduação em Bioquímica e Bioprospecção, UFPel, Campus Universitário s/n, Porto Alegre, RS, Brazil.
J Pharm Pharmacol. 2014 May;66(5):733-46. doi: 10.1111/jphp.12197. Epub 2013 Dec 27.
Eugenol, obtained from clove oil (Eugenia caryophyllata), possess several biological activities. It is anti-inflammatory, analgesic, anaesthesic, antipyretic, antiplatelet, anti-anaphylactic, anticonvulsant, anti-oxidant, antibacterial, antidepressant, antifungal and antiviral. The anti-oxidant activity of eugenol have already been proven. From this perspective testing, a series of planned structural derivatives of eugenol were screened to perform structural optimization and consequent increase of the potency of these biological activities.
In an attempt to increase structural variability, 16 compounds were synthesized by acylation and alkylation of the phenolic hydroxyl group. Anti-oxidant activity capacity was based on the capture of DPPH radical (2,2-diphenyl-1-picryl-hydrazyl), ABTS radical 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulphonic acid), measure of TBARS (thiobarbituric acid-reactive species), total sulfhydryl and carbonyl content (eugenol derivatives final concentrations range from 50 to 200 μm).
Four derivatives presented an efficient concentration to decrease 50% of the DPPH radical (EC50 ) < 100 μm, which has a good potential as a free-radical scavenger. Three of these compounds also showed reduction of ABTS radical. Eugenol derivatives presenting alkyl or aryl (alkylic or arylic) groups substituting hydroxyl 1 of eugenol were effective in reducing lipid peroxidation, protein oxidative damage by carbonyl formation and increase total thiol content in cerebral cortex homogenates. In liver, the eugenol derivatives evaluated had no effect.
Our results suggest that these molecules are promising anti-oxidants agents.
从丁香油(丁香)中提取的丁香酚具有多种生物活性。它具有抗炎、镇痛、麻醉、解热、抗血小板、抗过敏、抗惊厥、抗氧化、抗菌、抗抑郁、抗真菌和抗病毒作用。丁香酚的抗氧化活性已经得到证实。从这个角度进行测试,筛选了一系列丁香酚的计划结构衍生物,以进行结构优化,从而提高这些生物活性的效力。
为了增加结构变异性,通过酚羟基的酰化和烷基化合成了16种化合物。抗氧化活性能力基于对DPPH自由基(2,2-二苯基-1-苦基肼)、ABTS自由基2,2'-偶氮二(3-乙基苯并噻唑啉-6-磺酸)的捕获,丙二醛(硫代巴比妥酸反应性物质)的测定,总巯基和羰基含量(丁香酚衍生物最终浓度范围为50至200μm)。
四种衍生物呈现出降低50%DPPH自由基(EC50)<100μm的有效浓度,作为自由基清除剂具有良好的潜力。其中三种化合物还显示出ABTS自由基的减少。具有取代丁香酚羟基1的烷基或芳基(烷基或芳基)基团的丁香酚衍生物可有效减少脂质过氧化、通过羰基形成的蛋白质氧化损伤,并增加大脑皮质匀浆中的总巯基含量。在肝脏中,所评估的丁香酚衍生物没有效果。
我们的结果表明这些分子是有前途的抗氧化剂。