Fig. 3. Application of (A) the PGME method to 7-deoxyiridolactonic acid (6) and (B) modified Mosher's method to 5d and 1b.Published as part of Niwa, Kanji, Yi, Ren, Tanaka, Naonobu, Kitaguchi, Shindai, Tsuji, Daisuke, Kim, Sang-Yong, Tsogtbaatar, Ariuntuya, Bunddulam, Perleidulam, Kawazoe, Kazuyoshi, Kojoma, Mareshige, Damdinjav, Davaadagva, Itoh, Kohji & Kashiwada, Yoshiki, 2020, Linaburiosides A-D, acylated iridoid glucosides from Linaria buriatica, pp. 1-7 in Phytochemistry (112247) 171 on page 3, DOI: 10.1016/j.phytochem.2019.112247, http://zenodo.org/record/829386
Fig. 5. Proposed biosynthetic pathway for 1.Published as part of Wei, Jiang-Chun, Zhang, Xiao-Yu, Ga...
Fig. 3. Most relevant correlations of isoalstrostine A (1) and dehydrorudgeifoline (2) indicated by ...
Fig. 3. Lineweaver-Burk plot of 3, 12, 15 and 18 against α-glucosidase (A); Secondary re-plot of slo...
Fig. 1. Structures of linaburiosides A−D (1–4), iridolinarin C (5), and 7-deoxyiridolactonic acid (6...
Fig. 2. (A) Selected 1H–1H COSY and HMBC correlations and (B) selected NOESY correlations for 7-deox...
Niwa, Kanji, Yi, Ren, Tanaka, Naonobu, Kitaguchi, Shindai, Tsuji, Daisuke, Kim, Sang-Yong, Tsogtbaat...
Recent phytochemical study of several Italian species of Linaria, including rare endemic species, al...
Linaria arcusangeli contains a new bisiridoid, named arcusangeloside, besides the known antirrhinosi...
Fig. 2. Known iridoids (8–13) isolated from the rhizomes of P. kurroa.Published as part of Morikawa,...
Fig. 4. Tautomeric structures of dehydrorudgeifoline (2), including the electron pair movement indic...
The article starts with literature review on secondary metabolites, namely the iridoids contained in...
Fig. 2. Key HMBC and NOESY correlations of 1, 6, 7, 20, 22 and 24.Published as part of Xu, Hong-Tao,...
Fig. 1. Structures of compounds 1–33 isolated from the P. paniculata.Published as part of Xu, Hong-T...
A novel iridoid glucoside 1, together with the known antirrhinoside (2), 5-deoxyantirrhinoside, 5-gl...
In this work, the first phytochemical study on the total polar fraction of Linaria purpurea (L.) Mil...
Fig. 5. Proposed biosynthetic pathway for 1.Published as part of Wei, Jiang-Chun, Zhang, Xiao-Yu, Ga...
Fig. 3. Most relevant correlations of isoalstrostine A (1) and dehydrorudgeifoline (2) indicated by ...
Fig. 3. Lineweaver-Burk plot of 3, 12, 15 and 18 against α-glucosidase (A); Secondary re-plot of slo...
Fig. 1. Structures of linaburiosides A−D (1–4), iridolinarin C (5), and 7-deoxyiridolactonic acid (6...
Fig. 2. (A) Selected 1H–1H COSY and HMBC correlations and (B) selected NOESY correlations for 7-deox...
Niwa, Kanji, Yi, Ren, Tanaka, Naonobu, Kitaguchi, Shindai, Tsuji, Daisuke, Kim, Sang-Yong, Tsogtbaat...
Recent phytochemical study of several Italian species of Linaria, including rare endemic species, al...
Linaria arcusangeli contains a new bisiridoid, named arcusangeloside, besides the known antirrhinosi...
Fig. 2. Known iridoids (8–13) isolated from the rhizomes of P. kurroa.Published as part of Morikawa,...
Fig. 4. Tautomeric structures of dehydrorudgeifoline (2), including the electron pair movement indic...
The article starts with literature review on secondary metabolites, namely the iridoids contained in...
Fig. 2. Key HMBC and NOESY correlations of 1, 6, 7, 20, 22 and 24.Published as part of Xu, Hong-Tao,...
Fig. 1. Structures of compounds 1–33 isolated from the P. paniculata.Published as part of Xu, Hong-T...
A novel iridoid glucoside 1, together with the known antirrhinoside (2), 5-deoxyantirrhinoside, 5-gl...
In this work, the first phytochemical study on the total polar fraction of Linaria purpurea (L.) Mil...
Fig. 5. Proposed biosynthetic pathway for 1.Published as part of Wei, Jiang-Chun, Zhang, Xiao-Yu, Ga...
Fig. 3. Most relevant correlations of isoalstrostine A (1) and dehydrorudgeifoline (2) indicated by ...
Fig. 3. Lineweaver-Burk plot of 3, 12, 15 and 18 against α-glucosidase (A); Secondary re-plot of slo...