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SUN Biao, AO Yunlin, WANG Dezhi, WANG Junya, YE Wencai, ZHANG Xiaoqi. Chemical constituents of petroleum ether extract from the stems and leaves of Humulus scandens[J]. Journal of China Pharmaceutical University, 2022, 53(2): 178-184. DOI: 10.11665/j.issn.1000-5048.20220207
Citation: SUN Biao, AO Yunlin, WANG Dezhi, WANG Junya, YE Wencai, ZHANG Xiaoqi. Chemical constituents of petroleum ether extract from the stems and leaves of Humulus scandens[J]. Journal of China Pharmaceutical University, 2022, 53(2): 178-184. DOI: 10.11665/j.issn.1000-5048.20220207

Chemical constituents of petroleum ether extract from the stems and leaves of Humulus scandens

Funds: This study was supported by the National Natural Science Foundation of China (No.U1801287, No.82073712), the Science and Technology Planning Project of Guangdong Province (No.2020B1111110004) and the Science and Technology Planning Project of Guangzhou (No.20212210005)
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  • Received Date: August 26, 2021
  • Revised Date: February 28, 2022
  • To study the chemical constituents of petroleum ether extract from the stems and leaves of Humulus scandens (family of Moraceae), fifteen compounds were isolated from the stems and leaves of H.scandens by silica gel, Sephadex LH-20, ODS, and preparative HPLC chromatography.The structures were identified by physicochemical data and spectroscopic method as tectochrysin (1), chrysin (2), 5-hydroxy-3, 4'', 6, 7-tetramethoxyflavone (3), (2S)-5-hydroxy-7, 8-dimethoxyflavanone (4), imperatorin (5), phellopterin (6), ethyl 4-hydroxy-3-(3''-methyl-2''-butenyl)benzoate (7), p-hydroxy-phenylpropionic acid (8), ethyl p-hydroxycinnamate (9), p-hydroxybenzaldehyde (10), anofinic acid (11), 5,6-dehydrokavain (12), physcion (13), olean-12-ene-3,?11-dione (14) and ergosta-4, 6, 8 (14), 22-tetraen-3-one (15), respectively.All compounds were isolated from this plant for the first time.
  • [1]
    . Chin Tradit Patent Med(中成药),2012,34(6):1119-1122.
    [2]
    Xu BL,Jiang JQ. Study on chemical constituents of ethyl acetate fraction of Humulus scandens[J]. Pharm Clin Res(药学与临床研究),2014,22(2):124-127.
    [3]
    Cao L. Chemical constituents from Humulus scandens[J]. Chin J Ethnomed Ethnopharm(中国民族民间医药),2012,21(11):24-25.
    [4]
    Ma FG,Zhang YP. Advances in pharmacological effects and chemical constituents of traditional Chinese medicine Humulus officinalis[J]. World Latest Med Inf(世界最新医学信息文摘),2017,17(14):46-48,52.
    [5]
    Wang X,Qin MJ,Wu G,et al. Chemical constituents of the leaves of Iris songarica[J]. J China Pharm Univ(中国药科大学学报),2006,37(3):222-225.
    [6]
    Shang XY,Li S,Wang SJ,et al. Flavonoids from Bauhinia aurea[J]. Chin Tradit Herbal Drugs(中草药),2009,40(2):196-199.
    [7]
    Xia SL,Cao Y,Li QL,et al. Chemical constituents of Artemisia rupestris[J]. Chin Tradit Herbal Drugs(中草药),2020,51(13):3393-3398.
    [8]
    Kuroyanagi M,Sato M,Ueno A,et al. Flavonoids from Andrographis paniculata[J]. Chem Pharm Bull,1987,35(11):4429-4435.
    [9]
    Thanh PN,Jin WY,Song G,et al. Cytotoxic coumarins from the root of Angelica dahurica[J]. Arch Pharm Res,2004,27(12):1211-1215.
    [10]
    Fu Y,Bai Y,DaWa ZM,et al. Chemical constituents of Incarvillea younghusbandii[J]. Chin J Chin Mater Med(中国中药杂志),2010,35(1):58-62.
    [11]
    Pereda-Miranda R,Bernard CB,Durst T,et al. Methyl 4-hydroxy-3-(3''-methyl-2''-butenyl)benzoate,major insecticidal principle from Piper guanacastensis[J]. J Nat Prod,1997,60(3):282-284.
    [12]
    Guan HJ,Zhang X,Tu FJ,et al. Chemical constituents of Dendrobium candidum[J]. Chin Tradit Herbal Drugs(中草药),2009,40(12):1873-1876.
    [13]
    Zhu H,Zhang Z,Huang WZ,et al. A new diphenylpropanoid from Cassia floribunda[J]. Chin Tradit Herbal Drugs(中草药),2020,51(11):2871-2877.
    [14]
    Li YL,Dai J,Huang WH,et al. Chemical constituents and antiviral activity of Polygala fallax[J]. Chin Tradit Herbal Drugs(中草药),2009,40(3):345-348.
    [15]
    Ando H,Hirai Y,Fujii M,et al. The chemical constituents of fresh Gentian Root[J]. J Nat Med,2007,61(3):269-279.
    [16]
    Roman Junior WA,Gomes DB,Zanchet B,et al. Antiproliferative effects of pinostrobin and 5,6-dehydrokavain isolated from leaves of Alpinia zerumbet[J]. Rev Bras Farmacogn,2017,27(5):592-598.
    [17]
    ShaoL,SunB,WangXW,et al. Chemical constituents of twigs and leaves of Sindechites henryi[J]. J Jinan Univ Nat Sci Med Ed [暨南大学学报(自然科学与医学版)],2021,42(1):26-32.
    [18]
    Qi SH,Wu DG,Ma YB,et al. Chemical constituents of Ailanthus triphysa[J]. Chin Tradit Herbal Drugs(中草药),2003,34(7):590-592.
    [19]
    Fujimoto H,Nakamura E,Okuyama E,et al. Six immunosuppressive features from an ascomycete,Zopfiella longicaudata,found in a screening study monitored by immunomodulatory activity[J]. Chem Pharm Bull(Tokyo),2004,52(8):1005-1008.
    [20]
    WMNHWSalleh,Nafiah MA,Yen KH,et al. Chemical constituents and acetylcholinesterase inhibitory activity of Piper abbreviatum Opiz[J]. Bull Chem Soc Eth,2021,34(3):625-632.
    [21]
    Imran M,Irfan A,Ibrahim M,et al. Carbonic anhydrase and cholinesterase inhibitory activities of isolated flavonoids from Oxalis corniculata L. and their first-principles investigations[J]. Ind Crops Prod,2020,148(1):112285.
    [22]
    Takomthong P,Waiwut P,Yenjai C,et al. Structure-activity analysis and molecular docking studies of coumarins from Toddalia asiatica as multifunctional agents for Alzheimer''s disease[J]. Biomedicines,2020,8(5):107.
    [23]
    Huang Y,Liao XP,Wang HW,et al. Effects of imperatorin on apoptosis and synaptic plasticity in vascular dementia rats[J]. Sci Rep,2021,11(1):8590.
    [24]
    Li LJ,Cai YC,Sun X,et al. Tyrosinase inhibition by p-coumaric acid ethyl ester identified from camellia pollen[J]. Food Sci Nutr,2020,9(1):389-400.
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