Liu, Xueling, Dong, Yuyu, Alizade, Valida, Khutsishvili, Manana, Atha, Daniel, Borris, Robert P., Clark, Benjamin R. (2021): Molecular networking-driven isolation of 8 -Glycosylated biscoumarins from Cruciata articulata. Phytochemistry (112856) 190: 1-8, DOI: 10.1016/j.phytochem.2021.112856, URL: http://dx.doi.org/10.1016/j.phytochem.2021.11285
Fig. 1. Feature-based molecular network for the leaves of M. pteleifolia. (A) Targeted molecular net...
Fig. 2. Structures of compounds 1–5.Published as part of Kakumu, Yuya, Nguyen, Minh Tu Thi & Mitsuna...
Fig. 4. Key NOESY correlations of compounds 1–6.Published as part of Xu, Wei, Bai, Ming, Liu, De-Fen...
Fig. 2. Chemical structures of compounds 1–7.Published as part of Liu, Xueling, Dong, Yuyu, Alizade,...
Fig. 4. Proposed fragmentation pathway of compounds 1 and 4; positive mode.Published as part of Liu,...
Fig. 3. Selected HMBC (solid arrows) and NOESY (dashed arrows) correlations for compounds 1 and 3.Pu...
Fig. 1. Molecular network of Cluster G1. Red: Parent ions of isolated new biscoumarins (1–4); Yellow...
Xu, Wei, Bai, Ming, Liu, De-Feng, Qin, Shu-Yan, Lv, Tian-Ming, Li, Qian, Lin, Bin, Song, Shao-Jiang,...
Liu, Xueling, Wang, Yali, Alizade, Valida, Khutsishvili, Manana, Atha, Daniel, Borris, Robert P., Cl...
Fig. 4. Proposed fragmentation pathway for compound 3; ESI negative mode.Published as part of Liu, X...
Kakumu, Yuya, Nguyen, Minh Tu Thi, Mitsunaga, Tohru (2022): Molecular networking-based discovery of ...
Fig. 1. Chemical structures of compounds 1–7.Published as part of Liu, Xueling, Wang, Yali, Alizade,...
Fig. 2. Molecular network of E. scaber crude extract obtained using GNPS platform and visualized wit...
Fig. 8. The ability to inhibit LPS-induced NO production in BV-2 microglial cell of compounds 1–7.Pu...
Fig. 6. The ORTEP drawing of compounds 1, 2, 4 and 5.Published as part of Xu, Wei, Bai, Ming, Liu, D...
Fig. 1. Feature-based molecular network for the leaves of M. pteleifolia. (A) Targeted molecular net...
Fig. 2. Structures of compounds 1–5.Published as part of Kakumu, Yuya, Nguyen, Minh Tu Thi & Mitsuna...
Fig. 4. Key NOESY correlations of compounds 1–6.Published as part of Xu, Wei, Bai, Ming, Liu, De-Fen...
Fig. 2. Chemical structures of compounds 1–7.Published as part of Liu, Xueling, Dong, Yuyu, Alizade,...
Fig. 4. Proposed fragmentation pathway of compounds 1 and 4; positive mode.Published as part of Liu,...
Fig. 3. Selected HMBC (solid arrows) and NOESY (dashed arrows) correlations for compounds 1 and 3.Pu...
Fig. 1. Molecular network of Cluster G1. Red: Parent ions of isolated new biscoumarins (1–4); Yellow...
Xu, Wei, Bai, Ming, Liu, De-Feng, Qin, Shu-Yan, Lv, Tian-Ming, Li, Qian, Lin, Bin, Song, Shao-Jiang,...
Liu, Xueling, Wang, Yali, Alizade, Valida, Khutsishvili, Manana, Atha, Daniel, Borris, Robert P., Cl...
Fig. 4. Proposed fragmentation pathway for compound 3; ESI negative mode.Published as part of Liu, X...
Kakumu, Yuya, Nguyen, Minh Tu Thi, Mitsunaga, Tohru (2022): Molecular networking-based discovery of ...
Fig. 1. Chemical structures of compounds 1–7.Published as part of Liu, Xueling, Wang, Yali, Alizade,...
Fig. 2. Molecular network of E. scaber crude extract obtained using GNPS platform and visualized wit...
Fig. 8. The ability to inhibit LPS-induced NO production in BV-2 microglial cell of compounds 1–7.Pu...
Fig. 6. The ORTEP drawing of compounds 1, 2, 4 and 5.Published as part of Xu, Wei, Bai, Ming, Liu, D...
Fig. 1. Feature-based molecular network for the leaves of M. pteleifolia. (A) Targeted molecular net...
Fig. 2. Structures of compounds 1–5.Published as part of Kakumu, Yuya, Nguyen, Minh Tu Thi & Mitsuna...
Fig. 4. Key NOESY correlations of compounds 1–6.Published as part of Xu, Wei, Bai, Ming, Liu, De-Fen...