Biologically Active Compounds from Hops and Prospects for Their Use
- PMID: 33401815
- DOI: 10.1111/1541-4337.12201
Biologically Active Compounds from Hops and Prospects for Their Use
Abstract
Although female cones of the hop plant (Humulus lupulus) are known primarily as raw material supplying characteristic bitterness and aroma to beer, their equally significant health-promoting effects have been known to mankind for several thousand years and hop is a plant traditionally utilized in folk medicine. This paper summarizes the scientific knowledge on the effects of all 3 major groups of secondary metabolites of hops; polyphenols, essential oils, and resins. Because of their chemical diversity, it is no coincidence that these compounds exhibit a wide range of pharmacologically important properties. In addition to antioxidant, anti-inflammatory, and anticancer-related properties, particular attention is being paid to prenylflavonoids that occur almost exclusively in hops and are considered to be some of the most active phytoestrogens known. Hop oils and resins are well known for their sedative and other neuropharmacological properties, but in addition, these compounds exhibit antibacterial and antifungal effects. Recently, alpha bitter acids have been shown to block the development of a number of complex lifestyle diseases that are referred to by the collective name "metabolic syndrome." Information presented in this review confirms the significant potential for the use of hops in the pharmaceutical industry and provides an understanding of beer as a natural drink that, although moderately consumed, may become a source of many health-promoting compounds.
Keywords: biologically active compounds; bitter acids; essential oils; hops; polyphenols.
© 2016 Institute of Food Technologists®.
References
-
- Abourashed EA, Koetter U, Brattstrom A. 2004. In vitro binding experiments with a valerian, hops and their fixed combination extract (Ze91019) to selected central nervous system receptors. Phytomedicine 11(7-8):633-8.
-
- Adams TB, Gavin CL, McGowen MM, Waddell WJ, Cohen SM, Feron VJ, Marnett LJ, Munro IC, Portoghese PS, Rietjens IMCM, Smith RL. 2011. The FEMA GRAS assessment of aliphatic and aromatic terpene hydrocarbons used as flavor ingredients. Food Chem Toxicol 49(10):2471-94.
-
- Ades EW, Candal FJ, Swerlick RA, George VG, Summers S, Bosse DC, Lawley TJ. 1992. Hmec-1-establishment of an immortalized human microvascular endothelial-cell line. J Invest Dermatol 99(6):683-90.
-
- Akazawa H, Kohno H, Tokuda H, Suzuki N, Yasukawa K, Kimura Y, Manosroi A, Manosroi J, Akihisa T. 2012. Anti-inflammatory and anti-tumor-promoting effects of 5-deprenyllupulonol C and other compounds from hop (Humulus lupulus L.). Chem Biodiv 9(6):1045-54.
-
- Alia M, Ramos S, Mateos R, Granado-Serrano AB, Bravo L, Goya L. 2006. Quercetin protects human hepatoma HepG2 against oxidative stress induced by tert-butyl hydroperoxide. Toxicol Appl Pharm 212(2):110-8.
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