Fig. 5. Forrestline F reduced LPS-induced the pro-inflammatory cytokines release and the expression of iNOS and COX-2 in RAW 264.7 cells. (A)The chemical structure of forrestline F. (B) Cell viability rate of RAW264.7 cells treated with concentration gradient of forrestline F (0–100 μM) in the presence or absence of LPS (0.5 μg/mL) for 24 h. (C) The NO inhibition curve of forrestline F, with an IC50 of 9.57 ± 1.34 μM. (D–F) Effects of forrestline F on productions of inflammatory cytokines (IL-1β, TNF-α and IL-6) in LPS-activated RAW264.7 cells. (G–I) The protein expression of iNOS and COX-2 was determined by western blotting. The values are presented as mean ± SD of three independent experiments, n = 3. ###p <0.001, vs. the control group; *...
Fig. 6. Cell viability of different concentrations of compounds 1–5 acting on MDCK cells.Published a...
Fig. 5. Effect of compounds 1–23 (20 μM) on LPS-induced NO production, using dexamethasone (Dex) as ...
Irisflorentin, a naturally occurring isoflavone, is an abundant active constituent in Rhizoma Belamc...
Fig. 6. Forrestline F reduced LPS-induced inflammatory activity through the NF-κB/MAPK pathways and ...
Fig. 7. Forrestline F decreased LPS-induced ROS generation and mitochondrial membrane potential loss...
Fig. 8. Forrestline F suppressed LPSinduced inflammatory activity through Nrf2 pathways and promoted...
Fig. 4. Effect of compounds 1–15 on LPS-induced production of NO. Dexamethasone (Dex) was used as th...
Fig. 1. Structures of 1–15 from D. forrestii var. viride.Published as part of Song, Zhuorui, Gao, Ch...
Song, Zhuorui, Gao, Chengfeng, Jiang, Qinghua, Xu, Jinyu, Xiong, Liangliang, Liu, Kexin, Sun, Dejuan...
Fig. 3. Selected NOESY correlations of compounds 1–6.Published as part of Song, Zhuorui, Gao, Chengf...
Fig. 2. Key HMBC correlations of compounds 1–6.Published as part of Song, Zhuorui, Gao, Chengfeng, J...
Fig. 6. Compound 14 reduced LPS-induced pro-inflammatory cytokines release. (A) The NO inhibition cu...
Fig. 10. Compounds 1–8 inhibited the activation of PI3K/AKT signaling pathways in LPS-induced RAW 26...
Fig. 9. Effects of Compounds 1–8 on the NO production and the expression of iNOS and COX-2 proteins....
Fig. 7. Compound 14 reduced LPS-induced inflammatory factors production and inhibited NF-κB nuclear ...
Fig. 6. Cell viability of different concentrations of compounds 1–5 acting on MDCK cells.Published a...
Fig. 5. Effect of compounds 1–23 (20 μM) on LPS-induced NO production, using dexamethasone (Dex) as ...
Irisflorentin, a naturally occurring isoflavone, is an abundant active constituent in Rhizoma Belamc...
Fig. 6. Forrestline F reduced LPS-induced inflammatory activity through the NF-κB/MAPK pathways and ...
Fig. 7. Forrestline F decreased LPS-induced ROS generation and mitochondrial membrane potential loss...
Fig. 8. Forrestline F suppressed LPSinduced inflammatory activity through Nrf2 pathways and promoted...
Fig. 4. Effect of compounds 1–15 on LPS-induced production of NO. Dexamethasone (Dex) was used as th...
Fig. 1. Structures of 1–15 from D. forrestii var. viride.Published as part of Song, Zhuorui, Gao, Ch...
Song, Zhuorui, Gao, Chengfeng, Jiang, Qinghua, Xu, Jinyu, Xiong, Liangliang, Liu, Kexin, Sun, Dejuan...
Fig. 3. Selected NOESY correlations of compounds 1–6.Published as part of Song, Zhuorui, Gao, Chengf...
Fig. 2. Key HMBC correlations of compounds 1–6.Published as part of Song, Zhuorui, Gao, Chengfeng, J...
Fig. 6. Compound 14 reduced LPS-induced pro-inflammatory cytokines release. (A) The NO inhibition cu...
Fig. 10. Compounds 1–8 inhibited the activation of PI3K/AKT signaling pathways in LPS-induced RAW 26...
Fig. 9. Effects of Compounds 1–8 on the NO production and the expression of iNOS and COX-2 proteins....
Fig. 7. Compound 14 reduced LPS-induced inflammatory factors production and inhibited NF-κB nuclear ...
Fig. 6. Cell viability of different concentrations of compounds 1–5 acting on MDCK cells.Published a...
Fig. 5. Effect of compounds 1–23 (20 μM) on LPS-induced NO production, using dexamethasone (Dex) as ...
Irisflorentin, a naturally occurring isoflavone, is an abundant active constituent in Rhizoma Belamc...