Tsuchiya Hironori
Department of Dental Basic Education, Asahi University School of Dentistry, 1851 Hozumi, Mizuho, Gifu 501-0296, Japan.
Molecules. 2015 Oct 16;20(10):18923-66. doi: 10.3390/molecules201018923.
In addition to interacting with functional proteins such as receptors, ion channels, and enzymes, a variety of drugs mechanistically act on membrane lipids to change the physicochemical properties of biomembranes as reported for anesthetic, adrenergic, cholinergic, non-steroidal anti-inflammatory, analgesic, antitumor, antiplatelet, antimicrobial, and antioxidant drugs. As well as these membrane-acting drugs, bioactive plant components, phytochemicals, with amphiphilic or hydrophobic structures, are presumed to interact with biological membranes and biomimetic membranes prepared with phospholipids and cholesterol, resulting in the modification of membrane fluidity, microviscosity, order, elasticity, and permeability with the potencies being consistent with their pharmacological effects. A novel mechanistic point of view of phytochemicals would lead to a better understanding of their bioactivities, an insight into their medicinal benefits, and a strategic implication for discovering drug leads from plants. This article reviews the membrane interactions of different classes of phytochemicals by highlighting their induced changes in membrane property. The phytochemicals to be reviewed include membrane-interactive flavonoids, terpenoids, stilbenoids, capsaicinoids, phloroglucinols, naphthodianthrones, organosulfur compounds, alkaloids, anthraquinonoids, ginsenosides, pentacyclic triterpene acids, and curcuminoids. The membrane interaction's applicability to the discovery of phytochemical drug leads is also discussed while referring to previous screening and isolating studies.
除了与受体、离子通道和酶等功能性蛋白质相互作用外,多种药物还通过作用于膜脂来改变生物膜的物理化学性质,如麻醉药、肾上腺素能药物、胆碱能药物、非甾体抗炎药、镇痛药、抗肿瘤药、抗血小板药、抗菌药和抗氧化药等。除了这些作用于膜的药物外,具有两亲或疏水结构的生物活性植物成分(植物化学物)被认为可与生物膜以及由磷脂和胆固醇制备的仿生膜相互作用,从而改变膜的流动性、微粘度、有序性、弹性和通透性,其效力与其药理作用一致。从新的机制角度看待植物化学物将有助于更好地理解它们的生物活性,深入了解它们的药用价值,并为从植物中发现药物先导物提供战略启示。本文通过强调不同类植物化学物引起的膜性质变化,综述了它们与膜的相互作用。将综述的植物化学物包括与膜相互作用的黄酮类化合物、萜类化合物、芪类化合物、辣椒素类化合物、间苯三酚类化合物、萘二蒽酮类化合物、有机硫化合物、生物碱、蒽醌类化合物、人参皂苷、五环三萜酸和姜黄素类化合物。在参考以往筛选和分离研究的同时,还讨论了膜相互作用在发现植物化学药物先导物方面的适用性。