Potential α-glucosidase inhibitor from Hylotelephium erythrostictum

被引:21
|
作者
Quan, Yin-Sheng [1 ]
Zhang, Xiao-Yong [2 ]
Yin, Xiu-Mei [1 ]
Wang, Si-Hong [2 ]
Jin, Li-Li [1 ]
机构
[1] Yanbian Univ, Coll Pharm, Yanji 133002, Peoples R China
[2] Yanbian Univ, Anal & Inspect Ctr, Yanji 133002, Peoples R China
基金
中国国家自然科学基金;
关键词
Hylotelephium erythrostictum; 2-(Methoxy)-3-benzofuranone; alpha-Glucosidase inhibitor; In silico molecular docking; Antidiabetic candidate; CHEMICAL-CONSTITUENTS; IN-SILICO; MECHANISM;
D O I
10.1016/j.bmcl.2020.127665
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
In light of the adequate sources for Hylotelephium erythrostictum, its active components have aroused research interest. 2-(3 ',4 '-dihydroxyphenyl)-2,3-dihydro-4,6-dihydroxy-2-(methoxy)3-benzofuranone(1), apigenin(2), diosmetin(3), kaempferol(4), kaempferide(5), rhamnocitrin(6), quercetin(7), and gallic acid(8) were isolated from H. erythrostictum. Rarely occurring naturally, 1 is 2-methoxybenzofuranone type compound against alpha-glucosidase and exhibits a potential inhibitory effect on alpha-glucosidase(IC50 = 1.8 mu M), with a Ki value of 709 nM. In silico molecular docking was performed for the investigation of the inhibition mechanism. H. erythrostictum is a potential source of antidiabetic agent. This information is useful in finding more potent antidiabetic candidates from medicinal plants for the clinical development of therapeutics.
引用
收藏
页数:4
相关论文
共 50 条
  • [31] α-GLUCOSIDASE INHIBITOR ISOLATED FROM Potentilla anserina
    Ya Wang
    Ya-qin Meng
    Dong Wang
    Peng-Fa Wu
    Ai-Hong Zhao
    Yan-Po Si
    Tao Guo
    Chemistry of Natural Compounds, 2020, 56 : 743 - 744
  • [32] α-GLUCOSIDASE INHIBITOR ISOLATED FROM Potentilla anserina
    Wang, Ya
    Meng, Ya-qin
    Wang, Dong
    Wu, Peng-Fa
    Zhao, Ai-Hong
    Si, Yan-Po
    Guo, Tao
    CHEMISTRY OF NATURAL COMPOUNDS, 2020, 56 (04) : 743 - 744
  • [33] Combined in vitro and in silico approach to define alangimarckine from Thunbergia mysorensis leaves as a potential inhibitor of α-glucosidase
    Kokila, N. R.
    Mahesh, B.
    Ramu, Ramith
    Divakara, S. G.
    Mruthunjaya, K.
    Raghav, Neera
    Boreddy Shivanandappa, Thippeswamy
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2025,
  • [34] Pistagremic acid, a glucosidase inhibitor from Pistacia integerrima
    Uddin, Ghias
    Rauf, Abdur
    Al-Othman, Abdulaziz M.
    Collina, Simona
    Arfan, Muhammad
    Ali, Gowhar
    Khan, Inamullah
    FITOTERAPIA, 2012, 83 (08) : 1648 - 1652
  • [35] α-glucosidase inhibitor proteins from Sesbania grandiflora flowers
    Boonmee, Apaporn
    Reynolds, Colin D.
    Sangvanich, Polkit
    PLANTA MEDICA, 2007, 73 (11) : 1197 - 1201
  • [36] A novel α-glucosidase inhibitor polysaccharide from Sargassum fusiforme
    Zhang, Mengqing
    Yang, Ruijin
    Yu, Shuhuai
    Zhao, Wei
    INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY, 2022, 57 (01): : 67 - 77
  • [37] Pycnalin, a New α-Glucosidase Inhibitor from Acer pycnanthum
    Ogawa, Ai
    Miyamae, Yusaku
    Honma, Atsushi
    Koyama, Tomoyuki
    Yazawa, Kazunaga
    Shigemori, Hideyuki
    CHEMICAL & PHARMACEUTICAL BULLETIN, 2011, 59 (05) : 672 - 675
  • [38] Honokiol as an α-glucosidase inhibitor
    Zhu, Hua
    Zhong, Xin
    FRONTIERS IN PHARMACOLOGY, 2024, 15
  • [39] Bioactivity of Polysaccharide from Gracilaria verrucosa as α-Glucosidase Inhibitor
    Saraswaty, Vienna
    Mozef, Tjandrawati
    Risdian, Chandra
    Rasyid, Abdullah
    International Symposium on Applied Chemistry 2015, 2015, 16 : 687 - 693
  • [40] Dibutyl phthalate, an α-glucosidase inhibitor from Streptomyces melanosporofaciens
    Lee, DS
    JOURNAL OF BIOSCIENCE AND BIOENGINEERING, 2000, 89 (03) : 271 - 273