Systemic administration of IL-18 promotes diabetes development in young nonobese diabetic mice

被引:67
作者
Oikawa, Y
Shimada, A
Kasuga, A
Morimoto, J
Osaki, T
Tahara, H
Miyazaki, T
Tashiro, F
Yamato, E
Miyazaki, J
Saruta, T
机构
[1] Osaka Univ, Grad Sch Med, Course Adv Med, Area Mol Therapeut,Div Stem Cell Regulat Res, Osaka, Japan
[2] Osaka Univ, Grad Sch Med, Dept Mol Med, Osaka, Japan
[3] Univ Tokyo, Inst Med Sci, Dept Surg, Tokyo, Japan
[4] Tokyo Denryoku Hosp, Dept Internal Med, Tokyo, Japan
[5] Keio Univ, Sch Med, Dept Internal Med, Div Endocrinol & Metab,Shinjuku Ku, Tokyo 1608582, Japan
关键词
D O I
10.4049/jimmunol.171.11.5865
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 [免疫学];
摘要
IL-18 is now identified as a pleiotropic cytokine that acts as a cofactor for both Th1 and Th2 cell development. Type 1 diabetes is considered a Th1-type autoimmune disease, and to date, the suppressive effect of exogenous IL-18 on the development of diabetes has been reported in 10-wk-old nonobese diabetic (NOD) mice. In the present study we administered exogenous IL-18 systemically in 4-wk-old NOD mice using i.m. injection of the IL-18 expression plasmid DNA (pCAGGS-IL-18) with electroporation. Contrary to previous reports, the incidence of diabetes development was significantly increased in NOD mice injected with pCAGGS-IL-18 compared with that in control mice. Systemic and pancreatic cytokine profiles deviated to a Th1-dominant state, and the the frequency of glutamic acid decarboxylase-reactive IFN-gamma-producing CD4(+) cells was also high in the IL-18 group. Moreover, it was suggested that the promoting effect of IL-18 might be associated with increased peripheral IL-12, CD86, and pancreatic IFN-inducible protein-10 mRNA expression levels. In conclusion, we demonstrate here that IL-18 plays a promoting role as an enhancer of Th1-type immune responses in diabetes development early in the spontaneous disease process, which may contribute to elucidating the pathogenesis of type 1 diabetes.
引用
收藏
页码:5865 / 5875
页数:11
相关论文
共 81 条
[1]
Gene transfer into muscle by electroporation in vivo [J].
Aihara, H ;
Miyazaki, J .
NATURE BIOTECHNOLOGY, 1998, 16 (09) :867-870
[2]
Aberrant macrophage cytokine production is a conserved feature among autoimmune-prone mouse strains -: Elevated interleukin (IL)-12 and an imbalance in tumor necrosis factor-α and IL-10 define a unique cytokine profile in macrophages from young nonobese diabetic mice [J].
Alleva, DG ;
Pavlovich, RP ;
Grant, C ;
Kaser, SB ;
Beller, DI .
DIABETES, 2000, 49 (07) :1106-1115
[3]
INSULITIS AND DIABETES IN NOD MICE REDUCED BY PROPHYLACTIC INSULIN THERAPY [J].
ATKINSON, MA ;
MACLAREN, NK ;
LUCHETTA, R .
DIABETES, 1990, 39 (08) :933-937
[4]
INSULIN-DEPENDENT DIABETES-MELLITUS AS AN AUTOIMMUNE-DISEASE [J].
BACH, JF .
ENDOCRINE REVIEWS, 1994, 15 (04) :516-542
[5]
The paradoxical effects of interleukin 10 in the immunoregulation of autoimmune diabetes [J].
Balasa, B ;
Sarvetnick, N .
JOURNAL OF AUTOIMMUNITY, 1996, 9 (02) :283-286
[6]
Insulin B-chain reactive CD4+ regulatory T-cells induced by oral insulin treatment protect from type 1 diabetes by blocking the cytokine secretion and pancreatic infiltration of diabetogenic effector T-cells [J].
Bergerot, I ;
Arreaza, GA ;
Cameron, MJ ;
Burdick, MD ;
Strieter, RM ;
Chensue, SW ;
Chakrabarti, S ;
Delovitch, TL .
DIABETES, 1999, 48 (09) :1720-1729
[7]
T-CELL-MEDIATED INHIBITION OF THE TRANSFER OF AUTOIMMUNE DIABETES IN NOD MICE [J].
BOITARD, C ;
YASUNAMI, R ;
DARDENNE, M ;
BACH, JF .
JOURNAL OF EXPERIMENTAL MEDICINE, 1989, 169 (05) :1669-1680
[8]
Prevention of autoimmune destruction of syngeneic islet grafts in spontaneously diabetic nonobese diabetic mice by a combination of a vitamin D3 analog and cyclosporine [J].
Casteels, K ;
Waer, M ;
Laureys, J ;
Valckx, D ;
Depovere, J ;
Bouillon, R ;
Mathieu, C .
TRANSPLANTATION, 1998, 65 (09) :1225-1232
[9]
Protection of nonobese diabetic mice from diabetes by intranasal or subcutaneous administration of insulin peptide B-(9-23) [J].
Daniel, D ;
Wegmann, DR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (02) :956-960
[10]
Use of plasmid DNA for direct gene transfer and immunization [J].
Davis, HL ;
Michel, ML ;
Whalen, RG .
DNA VACCINES: A NEW ERA IN VACCINOLOGY, 1995, 772 :21-29