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Mechanism of effect of Ginkgolide B on lipopolysaccharide induced microvascular endothelial cells

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Author:
No author available
Journal Title:
Chinese Journal of Pancreatology
Issue:
6
DOI:
10.3760/cma.j.issn.1674-1935.2015.06.007
Key Word:
胰腺炎,急性坏死性;银杏苦内酯类;脂多糖类;微血管;内皮细胞;Pancreatitis,acute necrotizing;Ginkgolides;Lipopolysaccharides;Microvessels;Endothelial cells

Abstract: Objective To investigate the effect of Ginkgolide B (BN52021) on lipopolysaccharide (LPS) induced pancreas microvascular endothelialv (MS1) cells, and to explore its molecular mechanism.Methods The optimal concentration and best time point of LPS inhibing MS1 cell survival and the optimal concentration of BN52021 increasing survival of LPS induced MS1 cells were determined by MTT.The mRNA and protein expression of adenylate cyclase (AC), phospholipase A2 (PLA2), phospholipase Cβ (PLCβ),protein tyrosine kinase (PTK) and G protein coupled receptor kinase (GRK) in platelet activating factor receptor(PAFR) signal pathway in MS1 cells were determined by real-time PCR and Western blot.Results It was showed that 10 μg/ml LPS for 24 h was the optimal concentration and best time point to induce the decrease of MS1 cells.50 mmol/L of BN52021 was the optimal concentration of increacing survival of LPS induced MS1 cells.After LPS induction, AC, GRK, PLA2, PLCβ, PTK mRNA expressions of MS1 cells were 4.02 ±0.14, 2.63 ± 0.03, 3.31 ± 0.12, 2.09 ± 0.08, 1.85 ± 0.07, which were significantly higher than those in control group (P < 0.01).After BN52021 treatment, AC, GRK, PLA2, PLCβ mRNA expressions of LPS induced MS1 cells were 2.35 ±0.13, 1.17 ±0.14, 1.87 ±0.11, 1.65 ±0.10, which were significantly lower than those in LPS induction group (P < 0.01).The expression of PTK mRNA was 1.83 ± 0.13, which was not significantly different from that in LPS induction group.Western blot showed that the levels of protein expression were consistent with those of mRNA expression.Conclusions BN52021 can down-regulate the up-regulated genes expression of AC, GRK, PLA2 and PLCβ in the PAFR signal pathway in LPS induced MS1 cells.

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