Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Xuedong, Wan"'
Autor:
Xuedong Wan, Yuanyuan Fang, Minjing Qin, Qitong Zheng, Qiao Yang, Mengyun Peng, Min Hao, Kuilong Wang, Ruihua Zhao, Yiqing Shi, Xin Han, Xia’nan Sang, Gang Cao
Publikováno v:
Frontiers in Pharmacology, Vol 15 (2024)
BackgroundHepatic fibrosis and its associated consequences continue to pose a substantial global health challenge. Developing novel approaches to hepatic fibrosis management and prevention is critically necessary. Radix Paeoniae Alba (RPA) is widely
Externí odkaz:
https://doaj.org/article/6b39b8fe5ce647ac9a58657074d4e776
Autor:
Xia’nan Sang, Jialiang Ying, Xuedong Wan, Xin Han, Qiyuan Shan, Qiang Lyu, Qiao Yang, Kuilong Wang, Min Hao, Erlong Liu, Gang Cao
Publikováno v:
Frontiers in Pharmacology, Vol 13 (2022)
Allergic asthma is a common respiratory inflammation disease. The crude Radix Paeoniae Alba (RPA) and its processed products have been used frequently as antipyretic and anti-inflammatory agents in traditional medicine. To evaluate the effect of hone
Externí odkaz:
https://doaj.org/article/a257cd9376b94bd1bf9102bcd139a950
Autor:
Xia'nan Sang, Xuedong Wan, Han Zhang, Jialiang Ying, Lu Wang, Qiao Yang, Qiyuan Shan, Min Hao, Minjing Qin, Qitong Zheng, Quan Chen, Xin Han, Gang Cao
Publikováno v:
Journal of ethnopharmacology. 301
Radix Paeoniae Alba (RPA), a traditional Chinese medicine, has been used frequently in the treatment of asthma. Previous studies demonstrated the dichloromethane fraction of Stir-Frying RPA (FDCM) enhanced the effect of anti-allergic asthma compared
Autor:
Xia'nan, Sang, Jialiang, Ying, Xuedong, Wan, Xin, Han, Qiyuan, Shan, Qiang, Lyu, Qiao, Yang, Kuilong, Wang, Min, Hao, Erlong, Liu, Gang, Cao
Publikováno v:
Frontiers in Pharmacology. 13
Allergic asthma is a common respiratory inflammation disease. The crude Radix Paeoniae Alba (RPA) and its processed products have been used frequently as antipyretic and anti-inflammatory agents in traditional medicine. To evaluate the effect of hone
Publikováno v:
Current Microbiology. 75:450-455
In Escherichia coli, the DnaK/DnaJ chaperone can control the stability and activity of σ32, which is the key factor in heat shock response. Heterologous expression of eukaryotic molecular chaperones protects E. coli from heat stress. Here, we show t
Publikováno v:
Current microbiology. 75(4)
In Escherichia coli, the DnaK/DnaJ chaperone can control the stability and activity of σ