留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Nortriterpenoids from the fruit stalk of Schisandra chinensis (Turcz.) Baill.

Yan Liu Xiaohui Rong Yuanhang Chang Juan Pan Wei Guan Haixue Kuang Bingyou Yang

Yan Liu, Xiaohui Rong, Yuanhang Chang, Juan Pan, Wei Guan, Haixue Kuang, Bingyou Yang. Nortriterpenoids from the fruit stalk of Schisandra chinensis (Turcz.) Baill.[J]. Frigid Zone Medicine, 2022, 2(2): 103-108. doi: 10.2478/fzm-2022-0014
Citation: Yan Liu, Xiaohui Rong, Yuanhang Chang, Juan Pan, Wei Guan, Haixue Kuang, Bingyou Yang. Nortriterpenoids from the fruit stalk of Schisandra chinensis (Turcz.) Baill.[J]. Frigid Zone Medicine, 2022, 2(2): 103-108. doi: 10.2478/fzm-2022-0014

Nortriterpenoids from the fruit stalk of Schisandra chinensis (Turcz.) Baill.

doi: 10.2478/fzm-2022-0014
More Information
  • Figure  1.  Structures of compounds 1-12 from Schisandra chinensis

    Figure  2.  Key HMBC, 1H-1H COSY and ROESY of compounds 1-2

    S1.  1H-NMR spectrum of compound 1

    S2.  13C-NMR spectrum of compound 1

    S3.  DEPT 135 spectrum of compound 1

    S4.  HSQC spectrum of compound 1

    S5.  1H-1H COSY spectrum of compound 1

    S6.  HMBC spectrum of compound 1

    S7.  ROESY spectrum of compound 1

    S8.  HR-ESI-MS spectrum of compound 1

    S9.  IR spectrum of compound 1

    S10.  UV spectrum of compound 1

    S11.  CD spectrum of compound 1

    S12.  1H-NMR spectrum of compound 2

    S13.  13C-NMR spectrum of compound 2

    S14.  DEPT 135 spectrum of compound 2

    S15.  HSQC spectrum of compound 2

    S16.  1H-1H COSY spectrum of compound 2

    S17.  HMBC spectrum of compound 2

    S18.  ROESY spectrum of compound 2

    S19.  HR-ESI-MS spectrum of compound 2

    S20.  IR spectrum of compound 2

    S21.  UV spectrum of compound 2

    Table  1.   1H-NMR (400 MHz) and 13C-NMR (100 MHz) spectroscopic data for 1 (δ in ppm, J in Hz) in C5D5N

    No δC δH(J in Hz)
    1 87.1 4.42 (1H, s)
    2 73.0 4.72 (1H, s)
    3 176.6
    4 85.3
    5 60.5 2.44 (1H, dd, J=4.6, 12.2)
    6 22.1 1.36-1.42 (2H, m)
    7 24.9 1.95 (2H, m)
    8 54.5 2.65(1H, m)
    9 82.8
    10 99.3
    11 43.8 2.13 (1H, o)
    1.75 (1H, dd, J=8.4, 12.6)
    12 50.9 2.70 (1H, o)
    13 50.7
    14 85.5 4.75 (1H, dd, J=6.0, 8.0)
    15 173.5
    16 46.3 2.85 (2H, o)
    17 121.9
    19 42.5 2.82 (1H, ABd, J=15.6)
    2.37 (1H, ABd, J=15.6)
    20 36.5 3.52 (1H, m)
    21 16.3 1.31 (3H, d, J=6.8)
    22 114.3 5.59 (1H, d, J=9.8)
    23 148.2
    24 138.5 6.98 (1H, s)
    25 129.6
    26 170.8 6.98
    27 10.4 1.83 (3H, s)
    28 19.0 1.14 (3H, s)
    29 22.2 1.03 (3H, s)
    30 28.8 1.24 (3H, s)
    下载: 导出CSV

    Table  2.   1H-NMR (400 MHz) and 13C-NMR (100 MHz) spectroscopic data for 2 (δ in ppm, J in Hz) in C5D5N

    No δC δH(J in Hz)
    1 108.7
    2 43.5 3.04(1H, ABd, J=17.8)
    3.13 (1H, ABd, J=17.8)
    3 173.4
    4 84.2
    5 58.9 2.64 (1H, m)
    6 36.4 2.26 (2H, m)
    7 68.4 4.60 (1H, m)
    8 60.2 2.93 (1H, d, J=9.8)
    9 81.7
    10 97.0
    11 42.4 1.73 (1H, m)
    2.08 (1H, m)
    12 31.2 1.59 (1H, m)
    1.84 (1H, m)
    13 50.2
    14 209.8
    15 99.1
    16 45.0 2.88 (1H, o)
    17 220.4
    18 26.0 0.93 (3H, s)
    19 40.7 2.61 (1H, ABd, 16.3)
    2.83 (1H, ABd, 16.3)
    20 44.6 2.75 (1H, dq, J=7.0, 12, 0)
    21 14.9 1.05 (3H, d, J=7.0)
    22 40.3 2.88 (1H, m)
    23 75.1 5.30 (1H, br. s)
    24 73.3 5.22 (1H, d, J=1.8)
    25 76.7
    26 177.7
    27 17.6 1.71 (3H, s)
    29 25.1 1.39 (3H, s)
    30 29.5 1.26 (3H, s)
    下载: 导出CSV

    Table  3.   Cytotoxic activities of compounds 1-12 against MGC-803 cell lines

    Drugs IC50(µmol/L)
    compound 1 46.38 ± 3.92
    compound 2 ﹥50
    compound 3 ﹥50
    compound 4 ﹥50
    compound 5 ﹥50
    compound 6 9.01 ± 3.72
    compound 7 11.77 ± 2.61
    compound 8 2.74 ± 0.58
    compound 9 ﹥50
    compound 10 20.17 ± 3.12
    compound 11 40.85 ± 3.65
    compound 12 ﹥50
    cisplatin 3.79 ± 0.51
    IC50 was defined as the concentration that resulted in a 50% decrease in cell number, and the values were within the 0–1 000 μg/mL range. Results are presented as mean ± SD (N = 3 independent replicates).
    Cisplatin was used as a positive control.
    下载: 导出CSV

    S1.   13C-NMR (100 MHz) spectroscopic data for compounds 3-12.

    No. 3 4 5 6 7 8 9 10 11 12
    1 109.0 108.7 108.8 108.2 81.6 81.7 81.4 79.8 79.5 87.3
    2 43.1 43.6 43.1 44.0 35.1 35.5 35.4 35.9 35.4 73.7
    3 173.7 173.6 173.4 173.2 175.2 174.6 175.5 176.0 175.5 177.2
    4 84.6 84.1 84.6 83.8 84.0 83.9 83.8 84.6 84.2 85.8
    5 58.0 58.9 58.3 58.5 58.2 58.3 58.4 62.4 62.2 58.7
    6 37.0 36.3 36.6 23.6 36.6 36.9 36.4 24.3 23.9 29.3
    7 69.9 68.2 68.8 135.2 68.0 68.8 67.8 27.6 27.2 25.8
    8 59.6 60.2 60.5 138.0 60.6 59.7 60.2 56.9 56.6 57.6
    9 83.6 81.6 81.7 82.0 81.5 79.7 81.5 83.1 82.6 70.6
    10 97.5 97.0 97.4 96.4 95.9 96.1 95.7 99.0 98.4 100.6
    11 43.4 42.4 41.5 39.6 41.0 42.9 41.8 39.1 38.6 38.0
    12 32.8 31.2 30.4 31.4 30.3 32.5 31.0 26.3 25.8 34.6
    13 50.4 50.2 49.9 50.6 49.8 50.4 50.2 27.0 26.5 93.0
    14 215.1 209.9 209.5 198.8 45.6 53.7 45.0 216.8 216.5 53.4
    15 101.2 98.8 98.1 99.3 98.3 101.1 99.1 99.9 99.4 81.9
    16 53.7 45.1 45.8 45.6 209.1 214.7 209.5 31.4 30.9 30.7
    17 220.0 220.4 221.6 220.3 221.6 221.9 220.4 35.6 35.2 53.0
    18 28.0 26.0 26.0 26.4 25.9 28.0 26.0 29.2 28.8 24.0
    19 40.2 40.6 40.8 40.7 42.6 41.8 42.6 71.6 70.9 49.8
    20 46.3 44.8 33.2 44.6 41.2 46.1 40.2 33.3 31.8 35.9
    21 15.6 15.0 12.4 14.9 12.4 15.6 14.8 20.0 19.5 12.0
    22 46.3 40.3 41.2 40.3 33.2 46.3 44.6 76.0 78.9 87.0
    23 80.1 75.5 75.0 74.9 74.6 83.6 73.2 84.0 79.1 81.2
    24 151.3 69.4 71.7 72.6 75.6 151.4 75.0 149.2 34.0 147.1
    25 131.5 42.1 42.2 77.0 76.9 131.5 76.7 130.8 34.8 130.4
    26 174.6 178.0 177.8 177.7 177.2 175.9 177.5 175.7 181.4 174.4
    27 10.8 8.0 7.9 18.1 17.5 10.9 17.5 11.2 16.6 10.8
    29 25.4 25.0 25.4 24.7 27.8 27.9 27.8 22.4 22.0 24.3
    30 30.0 29.4 29.8 29.0 21.0 21.0 20.9 29.0 28.6 30.1
    OAC - - - - - - - - - 169.9
    - - - - - - - - - - 21.6
    下载: 导出CSV
  • [1] Szopa A, Ekiert R, Ekiert H. Current knowledge of Schisandra chinensis (Turcz. ) Baill. (Chinese magnolia vine) as a medicinal plant species: a review on the bioactive components, pharmacological properties, analytical and biotechnological studie. Phytochem Rev, 2017; 16: 195-218.
    [2] Jin M H, Liu R J. Analysis of content of the Schisandra chinensis Baill fruit, rattan and fruit handles. J Med Sci, 2005; 1: 28-30.
    [3] Jin Y P, Yan S, Liu J X, et al. Reseach progress on nortriterpenoids in plants of Schisandraceae and their pharmacological activities. Zhong Cao Yao, 2014; 45(11): 1643-1650.
    [4] Yan B C, Hu K, Sun H D, et al. Recent advances in the synthesis of isodon diterpenoids and schinortriterpenoids. Chinese J Org Chem, 2018; 38: 2259-2280. doi: 10.6023/cjoc201806002
    [5] Luo X, Shi Y M, Luo R H, et al. Schilancitrilactones A-C: three unique nortriterpenoids from Schisandra lancifolia. Org Lett, 2012; 14(5): 1286-1289. doi: 10.1021/ol300099e
    [6] Huang S X, Yang L B, Xiao W L, et al. Wuweizidilactones A-F: Novel highly oxygenated nortriterpenoids with unusual skeletons isolated from Schisandra chinensis. Chem Eur J, 2007; 13(17): 4816-4822. doi: 10.1002/chem.200700346
    [7] Shi Y M, Hu K, Pescitelli G, et al. Schinortriterpenoids with identical configuration but distinct ECD spectra generated by nondegenerate exciton coupling. Org Lett, 2018; 20(6): 1500-1504. doi: 10.1021/acs.orglett.8b00149
    [8] Xiao W L, Huang S X, Zhang L, et al. Nortriterpenoids from Schisandra lancifolia. J Nat Prod, 2006; 69(2): 650-653.
    [9] Huang S X, Han Q B, Lei C, et al. Isolation and characterization of miscellaneous terpenoids of Schisandra chinensis. Cheminform, 2008; 64(64): 4260-4267.
    [10] Huang S X, Li R T, Liu J P, et al. Isolation and characterization of biogenetically related highly oxygenated nortriterpenoids from Schisandra chinensis. Cheminform, 2007; 9(11): 2079-2082.
    [11] Xue Y B, Zhang Y L, Yang J H, et al. Nortriterpenoids and lignans from the fruit of Schisandra chinensis. Chem Pharm Bull, 2010; 58(12): 1606-1611. doi: 10.1248/cpb.58.1606
    [12] Li R T, Xiang W, Li S H, et al. Lancifodilactones B-E, new nortriterpenes from Schisandra lancifolia. J Nat Prod, 2004; 67(1): 94-97. doi: 10.1021/np030339+
    [13] Shi Y M, Wang X B, Li X N, et al. Lancolides, antiplatelet aggregation nortriterpenoids with tricyclo[6.3. 0.02, 11] undecane-bridged system from Schisandra lancifolia. Org Lett, 2013; 15(19): 5068-5071. doi: 10.1021/ol402414z
    [14] Cheng Y B, Liao T C, Lo Y W, et al. Nortriterpene lactones from the fruits of Schisandra arisanensis. J Nat Prod, 2010; 73(7): 1228-1233. doi: 10.1021/np100048h
  • 加载中
图(23) / 表(4)
计量
  • 文章访问数:  246
  • HTML全文浏览量:  132
  • PDF下载量:  6
  • 被引次数: 0
出版历程
  • 收稿日期:  2020-12-22
  • 录用日期:  2021-10-12

目录

    /

    返回文章
    返回