Discovery from Hypericum elatoides and synthesis of hyperelanitriles as α-aminopropionitrile-containing polycyclic polyprenylated acylphloroglucinols.
Jin-Yan XiePengfei LiXi-Tao YanJin-Ming GaoPublished in: Communications chemistry (2024)
The search for lead compounds with anti-neuroinflammatory activity from structurally 'optimized' natural products is a crucial and promising strategy in the quest to discover safe and efficacious agents for treating neurodegenerative diseases. A phytochemical investigation on the aerial portions of Hypericum elatoides led to the isolation of five nitrogenous polycyclic polyprenylated acylphloroglucinols (PPAPs), hyperelanitriles A-D (1-4) and hyperelamine A (5). Their structures were determined by spectroscopic analysis, ECD and NMR calculations, and X-ray crystallography. To the best of our knowledge, compounds 1-4 represent the first examples of acylphloroglucinols featuring an α-aminonitrile moiety, while 5 is a rare enamine-containing PPAP. Further, the synthesis of these naturally occurring PPAP-based nitriles or amines was accomplished. Compound 5 exhibited inhibitory activity against LPS-activated NO production in BV-2 cells, potentially through the suppression of TLR-4/NF-κB signaling. Here we show the isolation, structural elucidation, synthesis, and bioactive evaluation of compounds 1-5.
Keyphrases
- high resolution
- inflammatory response
- lps induced
- induced apoptosis
- healthcare
- signaling pathway
- toll like receptor
- magnetic resonance
- immune response
- lipopolysaccharide induced
- nuclear factor
- molecular docking
- cell cycle arrest
- oxidative stress
- molecular dynamics simulations
- magnetic resonance imaging
- high throughput
- molecular dynamics
- mass spectrometry
- cell death
- computed tomography
- anti inflammatory