Lignanolides with Antioxidant Activity from the Stems of Dracaena angustifolia

  • Ting Zhao ,
  • Xuhua Nong ,
  • Jiali Wang ,
  • Kuanyu Xu ,
  • Minmin Tang ,
  • Jiling Yi ,
  • Changri Han ,
  • Guangying Chen
Expand
  • a Key Laboratory of Tropical Medicinal Plant Chemistry of Hainan Province, College of Chemistry and Chemical Enginneeering, Hainan Normal University, Haikou 571158
    b Key Laboratory of Tropical Medicinal Resource Chemistry of Ministry of Education, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou 571158
    c Coconut Research Institute of Chinese Academy of Tropical Agricultural Sciences, Wenchang, Hainan 571339
    d Key Laboratory of Medicinal and Edible Plants Resources of Hainan Province, Hainan Vocational |University of Science and Technology, Haikou 571126
†The authors contributed equally to this work

Received date: 2022-12-08

  Revised date: 2023-03-17

  Online published: 2023-04-10

Supported by

The National Natural Science Foundation of China(41866005); The National Natural Science Foundation of China(41606100); The Key Science and Technology Program of Hainan Province(ZDKJ202008); The Innovation Platform for Academicians of Hainan Province(YSPTZX202030); The Hainan Provincial Natural Science Foundation(221RC1054)

Abstract

A new lignanolide given a trivial name angudracanolide A (1), together with three known lignans 2~4 and three known phenylpropanoids 5~7, was isolated from the stems of Dracaena angustifolia. The complete structure of new compound was elucidated by analysis of spectroscopic data and quantum chemistry calculations. Compounds 1~4 showed obvious antioxidant activity with IC50 values of 15, 19, 25, 30 mmol/L, respectively by comparing the standard trolox with a IC50 value of 45 mmol/L.

Cite this article

Ting Zhao , Xuhua Nong , Jiali Wang , Kuanyu Xu , Minmin Tang , Jiling Yi , Changri Han , Guangying Chen . Lignanolides with Antioxidant Activity from the Stems of Dracaena angustifolia[J]. Chinese Journal of Organic Chemistry, 2023 , 43(8) : 2968 -2972 . DOI: 10.6023/cjoc202212010

References

[1]
Huang, H. C.; Lin, M. K.; Hwang, S. Y.; Hwang, T. L.; Kuo, Y. H.; Chang, C. I.; Ou, C. Y.; Kuo, Y. H. Molecules 2013, 18, 8752.
[2]
Zhao, T.; Nong, X. H.; Zhang, B.; Tang, M. M.; Huang, D. Y.; Wang, J. L.; Xiao, J. L.; Chen, G. Y. Phytochem. Lett. 2020, 36, 115.
[3]
Yu, X. H.; Li, P. P.; Geng, Y. Y.; Huang, Y. J.; Hua, Y. Chem. Ind. Forest Prod. 2017, 37, 149. (in Chinese)
[3]
( 余小红, 李盼盼, 耿圆圆, 黄艳杰, 华燕, 林产化学与工业, 2017, 37, 149.)
[4]
Tan, S. B.; Guo, T.; Tang, X. F, Song, T. T.; Wang, Y. Chem. Nat. Compd. 2018, 54, 869.
[5]
Zhao, C. C.; Shao, J. H.; Li, X. China J. Chin. Mater. Med. 2009, 34, 2197. (in Chinese)
[5]
( 赵春超, 邵建华, 李铣, 中国中药杂志, 2009, 34, 2197.)
[6]
Sun, Y. H.; Ling, Y.; Ren, M. R.; Zhou, X. G.; Wang, J. Y.; Ma, Y. L. Chin. Tradit. Herbal Drugs 2010, 41, 1418. (in Chinese)
[6]
( 孙勇慧, 凌勇, 任美荣, 周学刚, 王佳瑜, 马英丽, 中草药, 2010, 41, 1418.)
[7]
Ou, Y. W.; Luo, Y. F.; Cheng, S. J.; Zhang, Y. K.; Tang, C. Y.; Tang, D. F.; Tang, M.; Xiao, S.; He, Y. T.; Xiong, G. H.; Li, S. X. Chin. Tradit. Herbal Drugs 2018, 49, 3208. (in Chinese)
[7]
( 欧阳文, 罗懿钒, 程思佳, 张云坤, 唐纯玉, 唐代风, 唐敏, 肖珊, 贺玉婷, 熊广华, 李顺祥, 中草药, 2018, 49, 3208.)
[8]
Cheng, Z. Y.; Zhou, L.; Liu, S. F.; Bai, M.; Song, S. J.; Huang, X. X. J. Shenyang Pharm. Univ. 2015, 32, 844. (in Chinese)
[8]
( 程卓阳, 周乐, 刘思帆, 白明, 宋少江, 黄肖霄, 沈阳药科大学学报, 2015, 32, 844.)
[9]
Sun, K.; Li, X.; Li, W.; Wang, J. H.; Liu, J. M.; Sha, Y. Chem. Pharm. Bull. 2004, 52, 1483.
[10]
Nicola?s, G.; María, M. Z.; Ariel, M. S. J. Org. Chem. 2015, 80, 12526.
[11]
Mustafa, O.; Reese, R. N.; Artemio, Z. T. J.; Joseph, C. S.; Miller, A. R. J. Agric. Food Chem. 2006, 54, 1151.
[12]
Cai, J.; Nong, X. H.; Wang, B.; Zeng, W. N.; Huang, G. L.; Zhang, Z. Y.; Zheng, C. J. Chin. J. Org. Chem. 2021, 41, 2905. (in Chinese)
[12]
( 蔡瑾, 农旭华, 王斌, 曾尾女, 黄国雷, 张子怡, 郑彩娟, 有机化学, 2021, 41, 2905.)
Outlines

/