1.Tibetan medicine Twelve Flavors Yishou San alleviated lipopolysaccharide-induced acute lung injury through inhibiting neutrophil infiltration
Wenling RONG ; Yaxuan LI ; Yanfei HONG ; Jiaqi CUI ; Jing FENG ; Zhulang CHU ; Guiying PENG ; Qingjia REN ; Qinghong DU
China Modern Doctor 2024;62(33):56-63,124
Objective To explore the immune mechanism of Tibetan medicine Twelve Flavors Yishou San in intervening with acute lung injury.Methods Construct a lipopolysaccharide(LPS)-induced acute lung injury rat model and treated it with Twelve Flavors Yishou San.The intervention effect of Twelve Flavors Yishou San on LPS induced acute lung injury was determined through lung pathological sections and blood gas analysis.Enzyme linked immunosorbent assay(ELISA)was used to detect the expression of pro-inflammatory cytokine tumor necrosis factor-α(TNF-α)and anti-inflammatory cytokine interleukin(IL)-10 in rat's bronchoalveolar lavage fluid.Flow cytometry was used to detect changes in immune cells in rat's bronchoalveolar lavage fluid,lungs,spleen and peripheral blood.Results LPS successfully induced an acute lung injury model in rats,and Twelve Flavors Yishou San could alleviate the exudation of inflammatory cells,elevated oxygen partial pressure in LPS induced acute lung injury to varying degrees.The ELISA results of rat bronchoalveolar lavage fluid showed that compared with normal control group,the TNF-α level in the bronchoalveolar lavage fluid of rats with acute lung injury was increased and the IL-10 level was decreased,while the Twelve Flavors Yishou San could alleviate this effect.The results of flow cytometry showed that Twelve Flavors Yishou San could significantly reduce neutrophil infiltration in rat bronchoalveolar lavage fluid,but had no significant effect on macrophages and adaptive immune response.Conclusion Twelve Flavors Yishou San can alleviate LPS induced acute lung injury by inhibiting neutrophil infiltration,providing an important experimental basis for fully understanding the therapeutic mechanism of Twelve Flavors Yishou San.
2. Effect of erythrocytes, plasma proteins, and lysosomes on systemic exposure to tetrandrine and fangchinoline
Peiwei LIAO ; Wenxin WANG ; Chuan LI ; Peiwei LIAO ; Wenxin WANG ; Nannan TIAN ; Xueshan ZENG ; Lingling REN ; Yaxuan ZHU ; Weiwei JIA ; Chuan LI
Chinese Journal of Clinical Pharmacology and Therapeutics 2022;27(12):1414-1424
AlM: The Chinese medicinal herb Hanfangji is dried roots of Stephania tetrandra S. Moore (Family, Menispermaceae). Tetrandrine and fangchinoline are two major constituents of Hanfangji and these bisbenzyltetrahydroisoquinoline alkaloids possess anti - cancer and other pharmacological activities. To facilitate further pharmacodynamic investigation of these compounds, a pharmacokinetic investigation was performed in rats and in vitro. METHODS: Pharmacokinetics of tetrandrine and fangchinoline were characterized in rats p.o. or i.v. dosing an aqueous extract of Hanfangji or the individual compound. Unbound levels of systemic exposure to these two alkaloids were assessed using in vitro studies of plasma protein binding, blood-plasma partition, and lysosomal trapping. All the study samples were analyzed by liquid chromatography/mass spectrometry.RESULTS: We found two pharmacokinetic features of tetrandrine and fangchinoline. First, the two compounds had blood levels of systemic exposure substantially higher than the respective plasma levels of systemic exposure. Second, the two compounds exhibited significantly higher systemic exposure levels after p.o. dosing an aqueous extract of Hanfangji than the respective exposure levels after p.o. dosing the individual compound, at the same compound dose levels and under the same conditions for analytical measurement and the same conditions for animal study. Unbound fractions of tetrandrine and fangchinoline in rat plasma were 2%-5% and the concentrations of the alkaloids in rat erythrocytes were 5-times higher than those in rat plasma. Lysosomal inhibitor could block their trapping in lysosomes and significantly reduce their concentrations in HEK-293 cells. CONCLUSlON: The following pharmacokinetic aspects should be noted in pharmacodynamic investigation of tetrandrine and fangchinoline: extensive binding with plasma proteins, extensive binding with erythrocytes, and trapping by lysosomes of tissue cells substantially reduce the levels of unbound tetrandrine and fangchinoline in the systemic circulation.
3.Analysis of the Current Status of China's Adaptation Guidelines
Ling WANG ; Yaxuan REN ; Xufei LUO ; Di ZHU ; Zhewei LI ; Ye WANG ; Bingyi WANG ; Huayu ZHANG ; Shu YANG ; Yaolong CHEN
Medical Journal of Peking Union Medical College Hospital 2024;15(1):192-201