Interferon beta-1b inhibits gelatinase secretion and in vitro migration of human T cells: A possible mechanism for treatment efficacy in multiple sclerosis

被引:271
作者
Leppert, D
Waubant, E
Burk, MR
Oksenberg, JR
Hauser, SL
机构
[1] UNIV CALIF SAN FRANCISCO,DEPT NEUROL,SAN FRANCISCO,CA 94143
[2] UNIV BASEL HOSP,DEPT RES,CH-4031 BASEL,SWITZERLAND
[3] UNIV BASEL HOSP,DEPT NEUROL,CH-4031 BASEL,SWITZERLAND
关键词
D O I
10.1002/ana.410400606
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Treatment with interferon beta-lb has substantial clinical benefit in the demyelinating disease multiple sclerosis, yet the mechanism of action in the disease remains largely unknown. Gelatinase A (matrix metalloproteinase-2, 72-kd gelatinase) and B (matrix metalloproteinase-9, 92-kd gelatinase) are matrix metalloproteinases capable of enzymatic digestion of subendothelial basement membrane constituents. In human T cells, interleukin-2 induces gelatinase secretion and enhances gelatinase-dependent migration across an artificial basement membrane-like layer in vitro. Pretreatment of T cells with interferon beta-lb for 48 hours decreased interleukin-2-induced gelatinase production and secretion as determined by zymography. In parallel to the downregulation of gelatinase secretion, pretreatment with interferon beta-1b inhibited T-cell migration across the basement membrane in vitro by up to 90%, but had only a minor impact on cell locomotion per se. For both gelatinase secretion and T-cell migration, the inhibitory effect mediated by exposure to interferon beta-lb was dose dependent. Fluorescence-activated cell sorter analysis also showed that interferon beta-1b downregulates the interleukin-2 receptor a-chain and lowered the affinity of interleukin-2 to the cell surface by 30%, which may represent an additional mechanism for the observed effects of interferon beta-lb. The dramatic effects of interferon beta-lb on gelatinase expression and migration raise the possibility that its beneficial effects in multiple sclerosis map result from interference with the capacity of activated T cells to traverse the basement membrane and migrate to the central nervous system.
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页码:846 / 852
页数:7
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