Fig. 4. Structures of compound 2 and daucovirgolide G (9).Published as part of Sirignano, Carmina, Hammami, Saoussen, Mokni, Ridha El, Blagborough, Andrew M., Luciano, Paolo, Rigano, Daniela & Scafati, Orazio Taglialatela, 2021, Polyoxygenated germacranes from Daucus carota and their antimalarial transmission blocking activity, pp. 1-7 in Phytochemistry (112632) 183 on page 5, DOI: 10.1016/j.phytochem.2020.112632, http://zenodo.org/record/829165
Malaria, as a major global health problem, continues to affect a large number of people each year, e...
peer reviewedMalaria is a parasitic disease endemic to tropical and subtropical regions responsible ...
Fig. 1. Structures of compounds 1–10.Published as part of Zhao, Yan-rong, Zou, Guo-an & Aisa, Haji A...
Fig. 1. Chemical structures of compounds isolated from D. carota.Published as part of Sirignano, Car...
Sirignano, Carmina, Hammami, Saoussen, Mokni, Ridha El, Blagborough, Andrew M., Luciano, Paolo, Riga...
Fig. 3. In vitro P. berghei ookinete development assays with metabolites from D. carota assessed at ...
Fig. 2. Left: COSY (red) and HMBC (arrows) correlations of 4; right: ROESY correlations of 4. (For i...
Repeated chromatographic purifications of aerial parts of the Tunisian plant Daucus virgatus led to ...
Phytochemical investigation of the aerial parts of the Tunisian plant Daucus virgatus led to the iso...
Fig. 1. Structures of the compounds 1–7.Published as part of Bai, Ming, Chen, Jing-Jie, Xu, Wei, Don...
Fig. 1. Structures of compounds 1–18.Published as part of Yang, Shuen-Shin, Chen, Yih-Fung, Ko, Horn...
Fig. 5. Summary of the structure activity relationships of eudesmane sesquiterpenoids for antimalari...
Fig. 2. The key HMBC and COSY (bold line) correlations of compounds 1–6.Published as part of Wongsom...
Fig. 1. Structures of isolated compounds (1–24) from U. dulcis.Published as part of Pailee, Phanruet...
Fig. 1. The chemical constituents from the leaves (1–8) and twigs for Mitrephora tomentosa (9–12).Pu...
Malaria, as a major global health problem, continues to affect a large number of people each year, e...
peer reviewedMalaria is a parasitic disease endemic to tropical and subtropical regions responsible ...
Fig. 1. Structures of compounds 1–10.Published as part of Zhao, Yan-rong, Zou, Guo-an & Aisa, Haji A...
Fig. 1. Chemical structures of compounds isolated from D. carota.Published as part of Sirignano, Car...
Sirignano, Carmina, Hammami, Saoussen, Mokni, Ridha El, Blagborough, Andrew M., Luciano, Paolo, Riga...
Fig. 3. In vitro P. berghei ookinete development assays with metabolites from D. carota assessed at ...
Fig. 2. Left: COSY (red) and HMBC (arrows) correlations of 4; right: ROESY correlations of 4. (For i...
Repeated chromatographic purifications of aerial parts of the Tunisian plant Daucus virgatus led to ...
Phytochemical investigation of the aerial parts of the Tunisian plant Daucus virgatus led to the iso...
Fig. 1. Structures of the compounds 1–7.Published as part of Bai, Ming, Chen, Jing-Jie, Xu, Wei, Don...
Fig. 1. Structures of compounds 1–18.Published as part of Yang, Shuen-Shin, Chen, Yih-Fung, Ko, Horn...
Fig. 5. Summary of the structure activity relationships of eudesmane sesquiterpenoids for antimalari...
Fig. 2. The key HMBC and COSY (bold line) correlations of compounds 1–6.Published as part of Wongsom...
Fig. 1. Structures of isolated compounds (1–24) from U. dulcis.Published as part of Pailee, Phanruet...
Fig. 1. The chemical constituents from the leaves (1–8) and twigs for Mitrephora tomentosa (9–12).Pu...
Malaria, as a major global health problem, continues to affect a large number of people each year, e...
peer reviewedMalaria is a parasitic disease endemic to tropical and subtropical regions responsible ...
Fig. 1. Structures of compounds 1–10.Published as part of Zhao, Yan-rong, Zou, Guo-an & Aisa, Haji A...