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蜂花粉中的多酚:结构、吸收、代谢及生物活性

Polyphenols from Bee Pollen: Structure, Absorption, Metabolism and Biological Activity.

作者信息

Rzepecka-Stojko Anna, Stojko Jerzy, Kurek-Górecka Anna, Górecki Michał, Kabała-Dzik Agata, Kubina Robert, Moździerz Aleksandra, Buszman Ewa

机构信息

Department of Pharmaceutical Chemistry, School of Pharmacy with the Division of Laboratory Medicine, Medical University of Silesia, Jagiellońska 4, Sosnowiec 41-200, Poland.

Department of Hygiene, Bioanalysis and Environmental Studies, School of Pharmacy with the Division of Laboratory Medicine, Medical University of Silesia, Kasztanowa 3A, Sosnowiec 41-200, Poland.

出版信息

Molecules. 2015 Dec 4;20(12):21732-49. doi: 10.3390/molecules201219800.

Abstract

Bee pollen constitutes a natural source of antioxidants such as phenolic acids and flavonoids, which are responsible for its biological activity. Research has indicated the correlation between dietary polyphenols and cardioprotective, hepatoprotective, anti-inflammatory, antibacterial, anticancerogenic, immunostimulating, antianaemic effects, as well as their beneficial influence on osseous tissue. The beneficial effects of bee pollen on health result from the presence of phenolic acids and flavonoids which possess anti-inflammatory properties, phytosterol and linolenic acid which play an anticancerogenic role, and polysaccharides which stimulate immunological activity. Polyphenols are absorbed in the alimentary tract, metabolised by CYP450 enzymes, and excreted with urine and faeces. Flavonoids and phenolic acids are characterised by high antioxidative potential, which is closely related to their chemical structure. The high antioxidant potential of phenolic acids is due to the presence and location of hydroxyl groups, a carboxyl group in the immediate vicinity of ortho-diphenolic substituents, and the ethylene group between the phenyl ring and the carboxyl group. As regards flavonoids, essential structural elements are hydroxyl groups at the C5 and C7 positions in the A ring, and at the C3' and C4' positions in the B ring, and a hydroxyl group at the C3 position in the C ring. Furthermore, both, the double bond between C2 and C3, and a ketone group at the C4 position in the C ring enhance the antioxidative potential of these compounds. Polyphenols have an ideal chemical structure for scavenging free radicals and for creating chelates with metal ions, which makes them effective antioxidants in vivo.

摘要

蜂花粉是酚酸和黄酮类等抗氧化剂的天然来源,这些物质赋予了它生物活性。研究表明,膳食多酚与心脏保护、肝脏保护、抗炎、抗菌、抗癌、免疫刺激、抗贫血作用以及它们对骨组织的有益影响之间存在关联。蜂花粉对健康的有益作用源于酚酸和黄酮类的存在,它们具有抗炎特性;植物甾醇和亚麻酸发挥抗癌作用;多糖则刺激免疫活性。多酚在消化道中被吸收,由细胞色素P450酶代谢,并通过尿液和粪便排出。黄酮类和酚酸具有高抗氧化潜力,这与其化学结构密切相关。酚酸的高抗氧化潜力归因于羟基的存在和位置、邻二酚取代基紧邻的羧基以及苯环与羧基之间的乙烯基。对于黄酮类而言,A环中C5和C7位、B环中C3'和C4'位的羟基以及C环中C3位的羟基是其基本结构元素。此外,C2和C3之间的双键以及C环中C4位的酮基增强了这些化合物的抗氧化潜力。多酚具有清除自由基和与金属离子形成螯合物的理想化学结构,这使其在体内成为有效的抗氧化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e85/6332396/e22742819845/molecules-20-19800-g001.jpg

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