1.
Synthetic biological approaches, such as site-directed biosynthesis, have contributed to the expansion of the chemical space of natural products, making possible the bios[...]
2017 | Text | English | Faculty and Staff Works |
2.
As part of our ongoing research on bioactive fungal metabolites, two new metabolites were isolated from a fungus of the Stictidaceae (strain MSX62440), dasyscyphins F and[...]
2021 | Text | English | Faculty and Staff Works |
3.
Four new homoisoflavonoids, 7-O-methyl-8-demethoxy-3'-hydroxy-3,9-dihydropunctatin (4), 6-hydroxy-8-demethoxy-4'-O-methyl-3,9-dihydropunctatin (8), 7,4'-O-dimethyl-8-deme[...]
2018 | Text | English | Faculty and Staff Works |
4.
Strategies for natural product dereplication are continually evolving, essentially in lock step with advances in MS and NMR techniques. MADByTE is a new platform designed[...]
2022 | Text | English | Faculty and Staff Works |
5.
A palladium(II) catalyst, in the presence of Selectfluor, enables the efficient and chemoselective transformation of primary amides into nitriles. The amides can be attac[...]
2018 | Text | English | Faculty and Staff Works |
6.
Seven undescribed homoisoflavonoids were identified from the bulbs of Bellevalia longipes Post (Asparagaceae) as well as thirteen known and one natural homoisoflavonoid t[...]
2022 | Text | Faculty and Staff Works |
7.
Six fungal metabolites, of which five were new, including one (1) with a dioxa[4.3.3]propellane ring system, were discovered, identified, and structurally elucidated from[...]
2019 | Text | Faculty and Staff Works |
8.
During our ongoing research on fungal strains from unexplored sources, the reinvestigation of the CHCl3-MeOH extract of the marine-facultative Aspergillus sp. MEXU 27854 [...]
2019 | Text | English | Faculty and Staff Works |
9.
Peptaibols are an intriguing class of fungal metabolites due both to their wide range of reported bioactivities and to the structural variability that can be generated by[...]
2017 | Text | English | Faculty and Staff Works |