New Monoterpenoids and Polyketides from the Deep-Sea Sediment-Derived Fungus Aspergillus sydowii MCCC 3A00324.
Siwen NiuLonghe YangTingting ChenBihong HongShengxiang PeiZongze ShaoGaiyun ZhangPublished in: Marine drugs (2020)
Chemical study of the secondary metabolites of a deep-sea-derived fungus Aspergillus sydowii MCCC 3A00324 led to the isolation of eleven compounds (1-11), including one novel (1) and one new (2) osmane-related monoterpenoids and two undescribed polyketides (3 and 4). The structures of the metabolites were determined by comprehensive analyses of the NMR and HRESIMS spectra, in association with quantum chemical calculations of the 13C NMR, ECD, and specific rotation data for the configurational assignment. Compound 1 possessed a novel monoterpenoid skeleton, biogenetically probably derived from the osmane-type monoperpenoid after the cyclopentane ring cleavage and oxidation reactions. Additionally, compound 3 was the first example of the α-pyrone derivatives bearing two phenyl units at C-3 and C-5, respectively. The anti-inflammatory activities of 1-11 were tested. As a result, compound 6 showed potent inhibitory nitric oxide production in lipopolysaccharide (LPS)-activated BV-2 microglia cells with an inhibition rate of 94.4% at the concentration of 10 µM. In addition, a plausible biosynthetic pathway for 1 and 2 was also proposed.
Keyphrases
- anti inflammatory
- inflammatory response
- high resolution
- nitric oxide
- magnetic resonance
- lps induced
- ms ms
- molecular dynamics
- density functional theory
- induced apoptosis
- solid state
- lipopolysaccharide induced
- hydrogen peroxide
- cell cycle arrest
- toll like receptor
- molecular dynamics simulations
- electronic health record
- oxidative stress
- neuropathic pain
- big data
- spinal cord injury
- cell death
- cell proliferation
- quantum dots
- structure activity relationship
- visible light