Chaga · 2025 · Journal Article
High relevanceLanostane-type triterpenoids from the fungus Inonotus obliquus.
Inonotus obliquus
Key points
- Triterpenoids of the lanostane type are the primary characteristic compounds isolated from Inonotus obliquus
- Phytochemical investigations on the EtOAc extract of the fungus led to the isolation of three new lanostane-type triterpenoids (compounds 1-3 ) and 18 known derivatives
- Their structures were determined from spectroscopic data, including NMR and HR-ESI-MS data, and quantum chemical calculations
- The isolated lanostane-type triterpenoids exhibit a range of structures, characterised by the different C-17 side chains such as a 21, 24-cyclopentanol moiety, a γ-lactone ring, and a tetrahydrofuran ring
- The 13 C chemical shifts variation for both C-21 and C-24 in 21, 24-cyclolanostanes were examined and summarised, offering a useful diagnostic tool to determine the relative configuration of the 21, 24-cyclopentanol moiety in the four types of 21, 24-cyclolanostanes
Metadata-grounded summary
Citation abstract
Triterpenoids of the lanostane type are the primary characteristic compounds isolated from Inonotus obliquus. Phytochemical investigations on the EtOAc extract of the fungus led to the isolation of three new lanostane-type triterpenoids (compounds 1-3 ) and 18 known derivatives. Their structures were determined from spectroscopic data, including NMR and HR-ESI-MS data, and quantum chemical calculations. The isolated lanostane-type triterpenoids exhibit a range of structures, characterised by the different C-17 side chains such as a 21, 24-cyclopentanol moiety, a γ-lactone ring, and a tetrahydrofuran ring. The 13 C chemical shifts variation for both C-21 and C-24 in 21, 24-cyclolanostanes were examined and summarised, offering a useful diagnostic tool to determine the relative configuration of the 21, 24-cyclopentanol moiety in the four types of 21, 24-cyclolanostanes.
Citation
Zhang TH, Zeng WL, Zhu C, Chen DJ, Xiong H, Yang GZ, et al. (2025). Lanostane-type triterpenoids from the fungus Inonotus obliquus. Natural product research https://doi.org/10.1080/14786419.2025.2605555 PMID: 41454641
Open citation