Role of Macrophage Migration Inhibitory Factor in Hepatic Stellate Cells Activation

ZHU Yong-jun, HU Xiao-lin, MEN Ruo-ting, YANG Li

Abstract

To investigate the role of macrophage migration inhibitory factor (MIF) in activation of primary hepatic stellate cells(HSC), and to explore the blocking effect of specific antisense oligonucleotides (ASONs) targeting MIF on the activation of primary HSCs. Methods Rat primary HSC were isolated from SD rats by in situ perfusion of collagenase and pronase and single-step Nycodenz density gradient centrifugation, and then cultured and activated. The expression of α-smooth muscle actin (α-SMA), the marker of HSC activation, was assessed by RT-PCR and immunocytochemistry (ICC). The expression of MIF was detected by RT-PCR, enzyme-linked immuno sorbent assay (ELISA), immunofluorescence (IF) or ICC. Completely activated primary HSC were transfected with MIF-specific antisense oligonucleotide (MIF-ASONs), mis-sense oligonucleotides of MIF, or blank liposome (negative-control). Results Quiescent HSC expressed very low level of MIF, while MIF gene and protein expression increased significantly during the process of HSC activation. Positive correlation was found between the expression of α-SMA and MIF (r=0.944, P<0.01). Compared with the control, activated primary HSC transfected with MIF-ASONs showed lower MIF and α-SMA expressions at gene and protein profiles (P<0.05). Conclusion The expression of MIF was up-regulated in the process of HSC activation. Activation in culture of primarily isolated rat HSC could be inhibited by MIF-ASONs, suggesting at least in part that, MIF might be a novel and important factor involved in HSC activation and hepatic fibrosis.

 

Keywords: Liver fibrosis, Hepatic stellate cells, Ma crophage migration inhibitory factor, α-smooth muscle actin, Antisense oli gonucleotides

 

Full Text:

PDF


References


Safadi R. Friedman SL. Hepatic fibrosis—role of hepatic stellate cell activation. MedGenMed,2002;4(3) ;27.

Saile B. Matthes N. Knittel T. et al. Transforming growth factor p and tumor necrosis factor a inhibit both apoptosis and proliferation of activated rat hepatic stellate cells. Hepatology. 1999;30(1):196-202.

Foo NP. Lin SH. Lee YH. et al. a-Lipoic acid inhibits liver fibrosis through the attenuation of ROS-triggered signaling in hepatic stellate cells activated by PDGF and TGF-(3. Toxicology .2011 ;282( 1): 39-46.

Bennett B. Bloom BR. Studies on the migration inhibitory factor associated with delayed-type hypersensitivity; cytodynamics and specificity. Transplantation. 1967;5(4) ;996- 1000.

Sivaram G. Tiwari SK. Bardia A, et al. Macrophage migration inhibitory factor. Toll-like receptor 4, and CD14 polymorphisms with altered expression levels in patients with ulcerative colitis. Hum Immunol.2012; 73(2):201-205.

Wong BLW, Zhu SL. Huang XR. Et al. Essential role for macrophage migration inhibitory factor in gastritis induced by Helicobacter pylori. Am J Pathol.2009; 174(4) ; 1319-1328.

Liu XJ. Yang L. Luo F. et al. Association of differentially expressed genes with activation of mouse hepatic stellate cells by high-density cDNA mircoarray. World J Gastroenterol, 2004;10(11):1600-1607.

Sato Y. Murase K. Kato J. et al. Resolution of liver cirrhosis using vitamin A-coupled liposomes to deliver siRNA against a collagen-specific chaperone. Nat Biotechnol. 2008; 26 ( 4 ): 431- 442.

Svegliati-Baroni G, Saccomanno S, Goor H, et al. Involvement of reactive oxygen species and nitric oxide radicals in activation and proliferation of rat hepatic stellate cells. Liver,2008;21( 1): 1-12.

Reeves HL, Friedman SL. Activation of hepatic stellate cells-a key issue in liver fibrosis. Front Biosci,2002;7(4):808-826. Zheng YX. Yang M. Rong TT, el al. CD74 and macrophage migration inhibitory factor as therapeutic targets in gastric cancer. World J Gastroenterol,2012; 18( 18);2253-2261.

Zhao YM. Wang L, Dai Z. et al. Validity of plasma macrophage migration inhibitory factor for diagnosis and prognosis of hepatocellular carcinoma. Int J Cancer, 2011; 129 (10):2463-2472.


Refbacks

  • There are currently no refbacks.