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古老水果与现代功能性食品石榴(Punica granatum)中的多样植物化学物及其生物活性。

Diverse Phytochemicals and Bioactivities in the Ancient Fruit and Modern Functional Food Pomegranate (Punica granatum).

机构信息

Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Botanical Garden, Shanghai 201602, China.

Shanghai Chenshan Plant Science Research Center, Chinese Academy of Sciences, Shanghai 201602, China.

出版信息

Molecules. 2017 Sep 25;22(10):1606. doi: 10.3390/molecules22101606.

Abstract

Having served as a symbolic fruit since ancient times, pomegranate () has also gained considerable recognition as a functional food in the modern era. A large body of literature has linked pomegranate polyphenols, particularly anthocyanins (ATs) and hydrolyzable tannins (HTs), to the health-promoting activities of pomegranate juice and fruit extracts. However, it remains unclear as to how, and to what extent, the numerous phytochemicals in pomegranate may interact and exert cooperative activities in humans. In this review, we examine the structural and analytical information of the diverse phytochemicals that have been identified in different pomegranate tissues, to establish a knowledge base for characterization of metabolite profiles, discovery of novel phytochemicals, and investigation of phytochemical interactions in pomegranate. We also assess recent findings on the function and molecular mechanism of ATs as well as urolithins, the intestinal microbial derivatives of pomegranate HTs, on human nutrition and health. A better understanding of the structural diversity of pomegranate phytochemicals as well as their bioconversions and bioactivities in humans will facilitate the interrogation of their synergistic/antagonistic interactions and accelerate their applications in dietary-based cancer chemoprevention and treatment in the future.

摘要

自古以来,石榴()一直作为象征性水果,而在现代,它也被广泛认为具有功能性食品的价值。大量文献表明,石榴中的多酚类物质,特别是花色苷(ATs)和可水解单宁(HTs),与石榴汁和提取物的促进健康的活动有关。然而,石榴中众多植物化学物质如何相互作用以及在多大程度上在人体内发挥协同作用仍不清楚。在这篇综述中,我们研究了在不同石榴组织中已鉴定出的各种植物化学物质的结构和分析信息,为代谢物谱的特征描述、新植物化学物质的发现以及石榴中植物化学物质相互作用的研究建立了知识库。我们还评估了花色苷以及石榴可水解单宁的肠道微生物衍生物尿石素在人类营养和健康方面的功能和分子机制的最新发现。更好地了解石榴植物化学物质的结构多样性及其在人体内的生物转化和生物活性,将有助于研究它们的协同/拮抗相互作用,并加速它们在未来基于饮食的癌症化学预防和治疗中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c12a/6151597/dda67a40c83d/molecules-22-01606-g001.jpg

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