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  1. 教育・研究業績データ
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Membrane Interactions of Phytochemicals as Their Molecular Mechanism Applicable to the Discovery of Drug Leads from Plants

https://asahi-u.repo.nii.ac.jp/records/7261
https://asahi-u.repo.nii.ac.jp/records/7261
d6de9e8a-6679-49b2-9eaa-ce90030d89c3
Item type 朝日大学 教育・研究業績(1)
公開日 2017-10-12
タイトル
タイトル Membrane Interactions of Phytochemicals as Their Molecular Mechanism Applicable to the Discovery of Drug Leads from Plants
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_1843
資源タイプ other
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
業績分類
値 学術雑誌論文
教員氏名 土屋, 博紀

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土屋, 博紀

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発行、発表雑誌等、又は発表学会等の名称
値 Molecules
巻
値 20
掲載ページ
値 pp. 18923-18966
単著、共著の別
値 単著
発行又は発表の年月
日付 2015-10-16
ISSN
値 1420-3049
PubMed番号
値 doi: 10.3390/molecules201018923
概要
値 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.
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