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芦丁、槲皮素及其糖苷的多方面生物活性。

Multifaceted Biological Activity of Rutin, Quercetin, and Quercetin's Glucosides.

作者信息

Zielińska Danuta, Starowicz Małgorzata, Wronkowska Małgorzata, Zieliński Henryk

机构信息

Department of Chemistry, University of Warmia and Mazury in Olsztyn, Plac Łódzki 4, 10-721 Olsztyn, Poland.

Team of Chemistry and Biodynamics of Food, Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, Trylińskiego 18, 10-683 Olsztyn, Poland.

出版信息

Molecules. 2025 Jun 11;30(12):2555. doi: 10.3390/molecules30122555.

Abstract

In this study, the ranking of the multifaceted activity of rutin (Ru), quercetin (Q), and quercetin's glucosides (Q3G, Q4'G and Q3,4'G) was addressed. The antioxidant potency was determined by electrochemical methods, whereas the ability of these compounds to inhibit angiotensin-converting enzyme (ACE) activity, acetylcholinesterase (AChE) activity, and advanced glycation endproduct (AGE) formation was examined in bovine serum albumin (BSA)/glucose and BSA/methylglyoxal (MGO) model systems to show their importance against hypertension, Alzheimer-type dementia, and diabetic complication, respectively. Then, the relationship between the biological activities of these compounds and their antioxidant potential provided by the cyclic voltammetry (CV) method was evaluated. The ranking of the ACE inhibitory activity was Q > Q3,4'G > Ru > Q3G > Q4'G. The correlation coefficient between ACE enzyme inhibitory activities and antioxidant potentials had a value of r = -0.68, thus clearly indicating the impact of antioxidant potential and chemical structure on ACE inhibitory activity. The ranking of the AChE enzyme inhibitory activity was Q ≈ Q3G ≈ Q4'G ≈ Ru > Q3,4'G, and the correlation between their antioxidant potentials and AChE inhibitory activities (r = -0.77) also indicated the impact of chemical structure. The quercetin glucosides displayed strong inhibitory capacity on AGE formation, as the ranking of anti-AGE activity in the BSA/MGO model system was Q3,4'G ≈ Q4'G ≈ Q3G > Ru ≈ Q > AG. The anti-AGE activity of rutin, quercetin, and quercetin's glucosides was negatively correlated with their IC values for ACE inhibition (r = -0.67) and AChE inhibition (r = -0.81), whereas no correlation was found between their ACE and AChE inhibition activities. These effects of rutin, quercetin, and quercetin's glucosides expand our knowledge of the multifunctional activity of biologically active compounds of plant origin.

摘要

在本研究中,对芦丁(Ru)、槲皮素(Q)及其糖苷(Q3G、Q4'G和Q3,4'G)的多方面活性进行了排名。通过电化学方法测定抗氧化能力,而在牛血清白蛋白(BSA)/葡萄糖和BSA/甲基乙二醛(MGO)模型系统中检测这些化合物抑制血管紧张素转换酶(ACE)活性、乙酰胆碱酯酶(AChE)活性以及晚期糖基化终产物(AGE)形成的能力,以分别显示它们对高血压、阿尔茨海默型痴呆和糖尿病并发症的重要性。然后,评估了这些化合物的生物活性与其通过循环伏安法(CV)提供的抗氧化潜力之间的关系。ACE抑制活性的排名为Q > Q3,4'G > Ru > Q3G > Q4'G。ACE酶抑制活性与抗氧化潜力之间的相关系数r = -0.68,从而清楚地表明抗氧化潜力和化学结构对ACE抑制活性的影响。AChE酶抑制活性的排名为Q ≈ Q3G ≈ Q4'G ≈ Ru > Q3,4'G,它们的抗氧化潜力与AChE抑制活性之间的相关性(r = -0.77)也表明了化学结构的影响。槲皮素糖苷对AGE形成表现出较强的抑制能力,因为在BSA/MGO模型系统中抗AGE活性的排名为Q3,4'G ≈ Q4'G ≈ Q3G > Ru ≈ Q > AG。芦丁、槲皮素及其糖苷的抗AGE活性与它们对ACE抑制(r = -0.67)和AChE抑制(r = -0.81)的IC值呈负相关,而在它们的ACE和AChE抑制活性之间未发现相关性。芦丁、槲皮素及其糖苷的这些作用扩展了我们对植物源生物活性化合物多功能活性的认识。

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