Lathyrane diterpenoids are one of the primary types of secondary metabolites present in the genus Euphorbia and one of the largest groups of diterpenes. They are characterized by having a highly oxygenated tricyclic system of 5, 11 and 3 members. These natural products and some synthetic derivatives have shown numerous interesting biological activities with clinical potential against various diseases, such as cytotoxic activity against cancer cell lines, multi-drug resistance reversal, antiviral properties, anti-inflammatory activity and their capability to induce proliferation or differentiation into neurons of neural progenitor cells. The structure of the lathyrane skeleton could be considered privileged because its framework is able to d...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Six new lathyrane diterpenoids (1–6) and 10 known analogues (7–16), were separated from the seeds of...
Two lathyrane diterpenes (1-2) together with previous ones (3-6) were isolated from Euphorbia lathyr...
One new lathyrane-type diterpenoid, euphlathin A (1), and 11 known analogues (2–12), were isolated f...
The new macrocyclic lathyrane diterpenes latilagascenes A and B (1 and 2), the diacetylated derivati...
The new macrocyclic lathyrane diterpenes latilagascenes A and B (1 and 2), the diacetylated derivati...
Lathyrane-type diterpenes previously have been proven to promote proliferation of neural precursor c...
The macrocyclic lathyrane diterpenes, latilagascenes D-F (1-3) and jolkinol B (4), were isolated fro...
The macrocyclic lathyrane diterpenes, latilagascenes D-F (1-3) and jolkinol B (4), were isolated fro...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Six new lathyrane diterpenoids (1–6) and 10 known analogues (7–16), were separated from the seeds of...
Two lathyrane diterpenes (1-2) together with previous ones (3-6) were isolated from Euphorbia lathyr...
One new lathyrane-type diterpenoid, euphlathin A (1), and 11 known analogues (2–12), were isolated f...
The new macrocyclic lathyrane diterpenes latilagascenes A and B (1 and 2), the diacetylated derivati...
The new macrocyclic lathyrane diterpenes latilagascenes A and B (1 and 2), the diacetylated derivati...
Lathyrane-type diterpenes previously have been proven to promote proliferation of neural precursor c...
The macrocyclic lathyrane diterpenes, latilagascenes D-F (1-3) and jolkinol B (4), were isolated fro...
The macrocyclic lathyrane diterpenes, latilagascenes D-F (1-3) and jolkinol B (4), were isolated fro...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...
Euphorbia diterpenoids possess inhibitory effects of Kv1.3 ion channel, but most of this research ha...