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Anacardic Acid Constituents from Cashew Nut Shell Liquid: NMR Characterization and the Effect of Unsaturation on Its Biological Activities

机译:腰果壳液中的没食子酸成分:NMR表征及不饱和度对其生物学活性的影响

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Anacardic acids are the main constituents of natural cashew nut shell liquid (CNSL), obtained via the extraction of cashew shells with hexane at room temperature. This raw material presents high technological potential due to its various biological properties. The main components of CNSL are the anacardic acids, salicylic acid derivatives presenting a side chain of fifteen carbon atoms with different degrees of unsaturation (monoene–15:1, diene–15:2, and triene–15:3). Each constituent was isolated by column chromatography using silica gel impregnated with silver nitrate. The structures of the compounds were characterized by nuclear magnetic resonance through complete and unequivocal proton and carbon assignments. The effect of the side chain unsaturation was also evaluated in relation to antioxidant, antifungal and anticholinesterase activities, and toxicity against Artemia salina . The triene anacardic acid provided better results in antioxidant activity assessed by the inhibition of the free radical 1,1-diphenyl-2-picrylhydrazyl (DPPH), higher cytotoxicity against A. salina , and acetylcholinesterase (AChE) inhibition. Thus, increasing the unsaturation of the side chain of anacardic acid increases its action against free radicals, AChE enzyme, and A. salina nauplii. In relation to antifungal activity, an inverse result was obtained, and the linearity of the molecule plays an important role, with monoene being the most active. In conclusion, the changes in structure of anacardic acids, which cause differences in polarity, contribute to the increase or decrease in the biological activity assessed.
机译:腰果酸是天然腰果壳液(CNSL)的主要成分,是通过在室温下用己烷萃取腰果壳而获得的。这种原料由于其多种生物学特性而具有很高的技术潜力。 CNSL的主要成分是豆香酸,水杨酸衍生物,具有15个碳原子的侧链,具有不同程度的不饱和度(单烯-15:1,二烯-15:2和三烯-15:3)。通过柱色谱法使用浸渍有硝酸银的硅胶分离每种成分。化合物的结构通过完整的,无歧义的质子和碳分配,通过核磁共振来表征。还评估了侧链不饱和的影响,涉及抗氧化剂,抗真菌和抗胆碱酯酶活性以及对卤虫卤虫的毒性。通过抑制自由基1,1,1-二苯基-2-吡啶并肼基(DPPH),对盐假单胞菌具有更高的细胞毒性和乙酰胆碱酯酶(AChE)抑制作用,三烯没食子酸的抗氧化活性更好。因此,增加腰果酸侧链的不饱和度会增加其对自由基,AChE酶和盐沼无节幼体的作用。关于抗真菌活性,获得了相反的结果,并且分子的线性起重要作用,其中单烯最活跃。总而言之,导致极性差异的脱水羧酸结构的变化有助于所评估的生物活性的增加或降低。

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