[No authors listed]
Apolipoprotein M (ApoM) is a type of apolipoprotein. It is well known that highâdensity lipoprotein (HDL) decreases inflammatory responses via the apoMâsphingosineâ1âphosphate (S1P) pathway. The present study further investigated the importance of ApoM in the inhibitory effects of HDL on inflammation. Mice with an apoM gene deficiency (apoMâ/â) were employed to investigate the effects of ApoM on the expression of interleukinâ1β (ILâ1β), monocyte chemotactic proteinâ1 (MCPâ1), S1P receptorâ1 (S1PR1) and 3βâhydroxysterol Îâ24âreductase (DHCR24), as compared with in wildâtype mice (apoM+/+). Furthermore, cell culture experiments were performed using a permanent human hybrid endothelial cell line (EA.hy926). Cells were cultured in the presence of recombinant human apoM (recâapoM) or were induced to overexpress apoM (apoMTg); subsequently, cells were treated with tumor necrosis factorâα (TNFâα), in order to investigate the effects of ApoM on ILâ1β and MCPâ1. The results demonstrated that the mRNA expression levels of ILâ1β and MCPâ1 were significantly higher in the liver following administration of lipopolysaccharide in apoMâ/â mice compared with in apoM+/+ mice. In cell culture experiments, when cells were preâcultured with recâapoM or were engineered to overexpress apoM (apoMTg), they exhibited decreased expression levels of ILâ1β and MCPâ1 following TNFâα treatment compared with in normal apoMâexpressing cells (apoMTgN). Furthermore, the mRNA expression levels of ILâ1β and MCPâ1 were significantly elevated following addition of the S1PR1 inhibitor W146, but not by the scavenger receptor class B type I inhibitor, block lipid transportâ1 (BLTâ1), in apoMTg cells prior to TNFâα treatment. Conversely, there were no differences in these inflammatory biomarkers under the same conditions in apoMTgN cells. The mRNA expression levels of DHCR24 were significantly reduced by the addition of BLTâ1 prior to TNFâα treatment in apoMTg cells; however, there was no difference in the expression of this inflammatory biomarker in apoMTgN cells. In conclusion, ApoM displayed inhibitory effects against the inflammatory response in vivo and in vitro; these effects may be induced via the S1PR1 and DHCR24 pathways.
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