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Establishment of experimental autoimmune encephalomyelitis model in mice induced by MOG and its effect on CD4+CD25+ T cells
Authors:LI Jia  WANG Ting-ting  YANG De-jiang  WENG Yi-yun  ZHAGN Xu
Affiliation:Department of Neurology, The First Affiliated Hospital of Wenzhou Medical College, Wenzhou 325000, China. E-mail: zhangxu@mail.wz.zj.cn
Abstract:AIM: To investigate the feasibility of inducing experimental autoimmune encephalomyelitis(EAE)model in C57BL/6 mice by TrxA-extracellular immunoglobulin domain of MOG(MOGIgd-TrxA)fusion protein produced by molecular cloning in our laboratory. Also to investigate the role of CD4+CD25+ T cells in the pathogenesis of EAE. METHODS: (1)The MOGIgd-TrxA fusion protein was induced and produced by molecular cloning and purified by metal chelate affinity chromatography and concentrated through ultrafiltration. The concentration of the protein was measured by Bradford method at last. (2)Animal experiment: C57BL/6 mice(12 mice in each group)were used. The mice in group MOG were immunized with MOGIgd -TrxA fusion protein. The mice in group GPSCH were received emulsion of spinal cord homogenate of guinea pigs(GPSCH), and mice in group TrxA or normal control group(group NC)were received the same volume emulsion of TrxA or saline/adjuvant, respectively. Clinical scores and histopathology were measured to value the models quality. (3)The percentages of CD4+CD25+ regulatory T cells in EAE mice were tested through flow cytometric analysis. RESULTS: (1)The purity of purified MOGIgd -TrxA fusion protein was about 98%, and its concentration was 2.3 g/L. (2)No significant difference between group MOG and group GPSCH in the clinical score was observed(P>0.05). Histologic sections of the brain and spinal cord taken from affected animals in both groups showed pathological change of different level throughout the central nervous system(CNS). (3)Percentages of CD4+CD25+ T cells in group MOG and group GPSCH were(4.71±1.61)%and(1.44±0.65)%,respectively, both of which were significantly lower than those in group NC(9.22±1.24)%and TrxA group(8.97±1.20)%(P<0.01). CONCLUSION: (1)The animal model of EAE in C57BL/6 mice induced by MOGIgd fusion protein produced through molecular cloning in our laboratory is stable and with high incidence. Thus, the author finds a good way to study the immune mechanisms of MS further and to search for the effective treatments as well. (2)The reduction of CD4+CD25+ T cells in EAE mice may have some relationship with the clinic.
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