Food Science Department, Rutgers University, New Brunswick 08901, USA.
Dairy and Functional Food Research Unit, Eastern Regional Research Center, ARS, USDA, Wyndmoor 19038, USA.
Biomed Res Int. 2019 Oct 16;2019:7010467. doi: 10.1155/2019/7010467. eCollection 2019.
Apigenin is a flavonoid of low toxicity and multiple beneficial bioactivities. Published reviews all focused on the findings using eukaryotic cells, animal models, or epidemiological studies covering the pharmacokinetics, cancer chemoprevention, and drug interactions of apigenin; however, no review is available on the antimicrobial effects of apigenin. Research proves that dietary apigenin passes through the upper gastrointestinal tract and reaches the colon after consumption. For that reason, it is worthwhile to study the potential interactions between apigenin and human gut microbiota. This review summarizes studies on antimicrobial effects of apigenin as well as what has been reported on apigenin and human gut microbiota. Various levels of effectiveness have been reported on apigenin's antibacterial, antifungal, and antiparasitic capability. It has been shown that apigenin or its glycosides are degraded into smaller metabolites by certain gut bacteria which can regulate the human body after absorption. How apigenin contributes to the structural and functional changes in human gut microbiota as well as the bioactivities of apigenin bacterial metabolites are worth further investigation.
芹菜素是一种低毒性、具有多种有益生物活性的类黄酮。已发表的综述均聚焦于使用真核细胞、动物模型或涵盖芹菜素药代动力学、癌症化学预防和药物相互作用的流行病学研究的发现;然而,尚无关于芹菜素抗菌作用的综述。研究证明,膳食中的芹菜素在食用后经过上消化道到达结肠。因此,研究芹菜素与人肠道微生物群之间的潜在相互作用是值得的。本综述总结了芹菜素的抗菌作用的研究,以及已报道的关于芹菜素和人肠道微生物群的研究。已报道芹菜素有不同程度的抗细菌、抗真菌和抗寄生虫能力。研究表明,某些肠道细菌可将芹菜素或其糖苷降解为较小的代谢物,这些代谢物在吸收后可被人体调节。芹菜素如何导致人肠道微生物群的结构和功能变化以及芹菜素细菌代谢物的生物活性值得进一步研究。