Yomogin, Isolated from Artemisia iwayomogi , Inhibits Neuroinflammation Stimulated by Lipopolysaccharide via Regulating MAPK Pathway.
Jin Hee KimIn Gyoung JuNamkwon KimEugene HuhSo-Ri SonJoon Pyo HongYujin ChoiDae-Sik JangMyung Sook OhPublished in: Antioxidants (Basel, Switzerland) (2022)
Neuroinflammation causes various neurological disorders, including depression and neurodegenerative diseases. Therefore, regulation of neuroinflammation is a promising therapeutic strategy for inflammation-related neurological disorders. This study aimed to investigate whether yomogin, isolated from Artemisia iwayomogi, has anti-neuroinflammatory effects. First, we evaluated the effects of yomogin by assessing pro-inflammatory mediators and cytokines in lipopolysaccharide (LPS)-stimulated BV2 microglial cells. The results showed that yomogin inhibited the increase in neuroinflammatory factors, including nitric oxide, inducible nitric oxide synthase, cyclooxygenase-2, interleukin-6, and tumor necrosis factor-α, and suppressed phosphorylation of c-Jun N-terminal kinase, extracellular signal-regulated kinase and p38, which participate in the mitogen-activated protein kinase (MAPK) pathway. To confirm these effects in vivo, we measured the activation of astrocyte and microglia in LPS-injected mouse brains. Results showed that yomogin treatment decreased astrocyte and microglia activations. Collectively, these results suggest that yomogin suppresses neuroinflammation by regulating the MAPK pathway and it could be a potential candidate for inflammation-mediated neurological diseases.
Keyphrases
- inflammatory response
- lps induced
- lipopolysaccharide induced
- nitric oxide synthase
- nitric oxide
- oxidative stress
- signaling pathway
- toll like receptor
- protein kinase
- induced apoptosis
- cerebral ischemia
- pi k akt
- tyrosine kinase
- traumatic brain injury
- rheumatoid arthritis
- depressive symptoms
- cognitive impairment
- transcription factor
- immune response
- combination therapy
- subarachnoid hemorrhage
- blood brain barrier
- sleep quality
- climate change
- anti inflammatory
- cell death
- brain injury
- endoplasmic reticulum stress