共 50 条
Pancreatic lipase inhibitory constituents from Fructus Psoraleae
被引:0
|作者:
HOU Xu-Dong
[1
]
SONG Li-Lin
[2
,3
]
CAO Yun-Feng
[4
]
WANG Yi-Nan
[3
]
ZHOU Qi
[1
]
FANG Sheng-Quan
[3
]
WU Da-Chang
[1
]
ZANG Shi-Zhu
[1
]
CHEN Lu
[1
]
BAI Yue
[1
]
GE Guang-Bo
[3
]
HOU Jie
[1
]
机构:
[1] College of Basic Medical Sciences, Dalian Medical University
[2] Dalian Institute of Chemical Physics, Chinese Academy of Sciences
[3] Translational Medicine Center, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine & Institute of Interdisciplinary Integrative Medicine Research, Shanghai University of Traditional Chinese Medicine
[4] Dalian Runsheng Kangtai Medical Laboratory Co.Ltd.
关键词:
Pancreatic lipase;
Fructus Psoraleae;
Inhibition potential;
Isobavachalcone;
Bavachalcone;
D O I:
暂无
中图分类号:
R285.5 [中药实验药理];
学科分类号:
摘要:
Pancreatic lipase(PL), a crucial enzyme in the digestive system of mammals, has been proven as a therapeutic target to prevent and treat obesity. The purpose of this study is to evaluate and characterize the PL inhibition activities of the major constituents from Fructus Psoraleae(FP), one of the most frequently used Chinese herbs with lipid-lowering activity. To this end, a total of eleven major constituents isolated from Fructus Psoraleae have been obtained and their inhibition potentials against PL have been assayed by a fluorescence-based assay. Among all tested compounds, isobavachalcone, bavachalcone and corylifol A displayed strong inhibition on PL(IC50< 10 μmol·L-1). Inhibition kinetic analyses demonstrated that isobavachalcone, bavachalcone and corylifol A acted as mixed inhibitors against PL-mediated 4-methylumbelliferyl oleate(4-MUO) hydrolysis, with the Kivalues of 1.61, 3.77 and 10.16μmol·L-1, respectively. Furthermore, docking simulations indicated that two chalcones(isobavachalcone and bavachalcone) could interact with the key residues located in the catalytic cavity of PL via hydrogen binding and hydrophobic interactions. Collectively, these finding provided solid evidence to support that Fructus Psoraleae contained bioactive compounds with lipid-lowering effects via targeting PL, and also suggested that the chalcones in Fructus Psoraleae could be used as ideal leading compounds to develop novel PL inhibitors.
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页码:369 / 378
页数:10
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