Fig. 1. Structures of compounds 1–26 from the aerial parts of G. uralensis.Published as part of Hasan, Aobulikasimu, Zhang, Meng, Shang, Zhan-Peng, Yi, Yang, Kuang, Yi, Yu, Rong, Fan, Jing-Jing, Huang, Yu-Xi, Nijat, Dilaram, Qiao, Xue & Ye, Min, 2022, Bioactive prenylated phenolic compounds from the aerial parts of Glycyrrhiza uralensis, pp. 1-9 in Phytochemistry (113284) 201 on page 2, DOI: 10.1016/j.phytochem.2022.113284, http://zenodo.org/record/823685
Secondary metabolites have been obtained from the Glycyrrhiza species (Fabaceae) including G. glabra...
Fig. 1. Structures of 1–4 and proposed biosynthetic pathways for partial PPAPs isolated from H. ural...
Fig. 1. Structures of compounds 1–18.Published as part of Yang, Shuen-Shin, Chen, Yih-Fung, Ko, Horn...
Hasan, Aobulikasimu, Zhang, Meng, Shang, Zhan-Peng, Yi, Yang, Kuang, Yi, Yu, Rong, Fan, Jing-Jing, H...
Fig. 2. Key HMBC and 1H–1H COSY correlations of glycyuralins Q-X (1–8).Published as part of Hasan, A...
Fig. 3. The comparison of experimental and calculated ECD spectra of (1′′R, 2′′S)-1, (1′′S, 2′′R)-1,...
Fig. 4. The docking model and IC50 values of (1''R, 2''S)-1 and (1''S, 2''R)-1 against 3CLpro and PL...
Fig. 5. Bioactivity screening of compounds 1-26 [1a, (1''R, 2''S)-1; 1b, (1''S, 2''R)-1]. Each data ...
Three new phenolic compounds (1-3), together with 16 known compounds (4-19), were isolated from the ...
Fig. 1. Structures of compounds 1-23.Published as part of Huang, Ya-Ping, Zhao, Yuan-Yu, Johnson, Ol...
Fig. 1. Structures of compounds 1–18.Published as part of Shu, Yan, Wang, Jia-Peng, Li, Bing-Xian, G...
A new dihydroflavone glycoside was isolated from the underground parts of Glycyrrhiza uralensis. Its...
One new compound (1) and fifteen known phenolic compounds (2–16) were isolated and identified from t...
Fig. 1. The chemical structures of isolated compounds (21, 22, 31, and 35) from Herniaria polygama.P...
Fig. 1. The chemical structures of compounds 1–14.Published as part of Gao, Suying, Wu, Ping, Xue, J...
Secondary metabolites have been obtained from the Glycyrrhiza species (Fabaceae) including G. glabra...
Fig. 1. Structures of 1–4 and proposed biosynthetic pathways for partial PPAPs isolated from H. ural...
Fig. 1. Structures of compounds 1–18.Published as part of Yang, Shuen-Shin, Chen, Yih-Fung, Ko, Horn...
Hasan, Aobulikasimu, Zhang, Meng, Shang, Zhan-Peng, Yi, Yang, Kuang, Yi, Yu, Rong, Fan, Jing-Jing, H...
Fig. 2. Key HMBC and 1H–1H COSY correlations of glycyuralins Q-X (1–8).Published as part of Hasan, A...
Fig. 3. The comparison of experimental and calculated ECD spectra of (1′′R, 2′′S)-1, (1′′S, 2′′R)-1,...
Fig. 4. The docking model and IC50 values of (1''R, 2''S)-1 and (1''S, 2''R)-1 against 3CLpro and PL...
Fig. 5. Bioactivity screening of compounds 1-26 [1a, (1''R, 2''S)-1; 1b, (1''S, 2''R)-1]. Each data ...
Three new phenolic compounds (1-3), together with 16 known compounds (4-19), were isolated from the ...
Fig. 1. Structures of compounds 1-23.Published as part of Huang, Ya-Ping, Zhao, Yuan-Yu, Johnson, Ol...
Fig. 1. Structures of compounds 1–18.Published as part of Shu, Yan, Wang, Jia-Peng, Li, Bing-Xian, G...
A new dihydroflavone glycoside was isolated from the underground parts of Glycyrrhiza uralensis. Its...
One new compound (1) and fifteen known phenolic compounds (2–16) were isolated and identified from t...
Fig. 1. The chemical structures of isolated compounds (21, 22, 31, and 35) from Herniaria polygama.P...
Fig. 1. The chemical structures of compounds 1–14.Published as part of Gao, Suying, Wu, Ping, Xue, J...
Secondary metabolites have been obtained from the Glycyrrhiza species (Fabaceae) including G. glabra...
Fig. 1. Structures of 1–4 and proposed biosynthetic pathways for partial PPAPs isolated from H. ural...
Fig. 1. Structures of compounds 1–18.Published as part of Yang, Shuen-Shin, Chen, Yih-Fung, Ko, Horn...