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Chemoenzymatic Preparation and Biophysical Properties of Sulfated Quercetin Metabolites

机译:硫酸槲皮素代谢物的化学酶法制备及其生物物理性质

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摘要

Sulfated quercetin derivatives are important authentic standards for metabolic studies. Quercetin-3′-O-sulfate, quercetin-4′-O-sulfate, and quercetin-3-O-sulfate as well as quercetin-di-O-sulfate mixture (quercetin-7,3′-di-O-sulfate, quercetin-7,4′-di-O-sulfate, and quercetin-3′,4′-di-O-sulfate) were synthetized by arylsulfotransferase from Desulfitobacterium hafniense. Purified monosulfates and disulfates were fully characterized using MS and NMR and tested for their 1,1-diphenyl-2-picrylhydrazyl (DPPH), 2,2′-azinobis-(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS+) and N,N-dimethyl-p-phenylenediamine (DMPD) radical scavenging, Folin-Ciocalteau reduction (FCR), ferric reducing antioxidant power (FRAP), and anti-lipoperoxidant activities in rat liver microsomes damaged by tert-butylhydroperoxide. Although, as expected, the sulfated metabolites were usually less active than quercetin, they remained still effective antiradical and reducing agents. Quercetin-3′-O-sulfate was more efficient than quercetin-4′-O-sulfate in DPPH and FCR assays. In contrast, quercetin-4′-O-sulfate was the best ferric reductant and lipoperoxidation inhibitor. The capacity to scavenge ABTS+• and DMPD was comparable for all substances, except for disulfates, which were the most efficient. Quantum calculations and molecular dynamics simulations on membrane models supported rationalization of free radical scavenging and lipid peroxidation inhibition. These results clearly showed that individual metabolites of food bioactives can markedly differ in their biological activity. Therefore, a systematic and thorough investigation of all bioavailable metabolites with respect to native compounds is needed when evaluating food health benefits.
机译:硫酸槲皮素衍生物是代谢研究的重要真实标准。槲皮素-3'-O-硫酸盐,槲皮素-4'-O-硫酸盐和槲皮素-3-O-硫酸盐以及槲皮素-二-O-硫酸盐混合物(槲皮素-7,3'-二-O-硫酸盐,由哈弗脱硫杆菌中的芳基磺基转移酶合成了槲皮素7,4'-二-O-硫酸盐和槲皮素3',4'-二-O-硫酸盐。使用MS和NMR对纯化的单硫酸盐和二硫酸盐进行了全面表征,并测试了它们的1,1-二苯基-2-吡啶并肼基(DPPH),2,2'-叠氮基双-(3-乙基苯并噻唑啉-6-磺酸)(ABTS + )和N,N-二甲基-对苯二胺(DMPD)自由基清除,Folin-Ciocalteau还原(FCR),三价铁还原抗氧化能力(FRAP)和叔丁基氧化还原对大鼠肝脏微粒体的抗脂过氧化活性丁基过氧化氢。尽管如预期的那样,硫酸盐代谢产物的活性通常不如槲皮素,但它们仍然是有效的抗自由基和还原剂。在DPPH和FCR分析中,槲皮素3'-O-硫酸盐比槲皮素4'-O-硫酸盐更有效。相反,槲皮素-4'-O-硫酸盐是最好的铁还原剂和脂过氧化抑制剂。除最有效的二硫酸盐外,所有物质清除ABTS +•和DMPD的能力均相当。膜模型的量子计算和分子动力学模拟支持自由基清除和脂质过氧化抑制的合理化。这些结果清楚地表明,食物生物活性物质的各个代谢产物在其生物活性方面可能存在显着差异。因此,在评估食品健康益处时,需要对所有与天然化合物有关的生物可利用代谢物进行系统彻底的研究。

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