Oxidative Stress and Redox Modulation Potential in Type 1 Diabetes

被引:79
作者
Delmastro, Meghan M. [1 ,2 ]
Piganelli, Jon D. [1 ,2 ,3 ]
机构
[1] Univ Pittsburgh, Sch Med, Childrens Hosp Pittsburgh, Dept Pediat,Div Immunogenet,Diabet Inst, Pittsburgh, PA 15224 USA
[2] Univ Pittsburgh, Sch Med, Dept Immunol, Pittsburgh, PA 15224 USA
[3] UPMC, Childrens Hosp Pittsburgh, Dept Pediat, Rangos Res Ctr, Pittsburgh, PA 15224 USA
来源
CLINICAL & DEVELOPMENTAL IMMUNOLOGY | 2011年
关键词
PANCREATIC BETA-CELLS; NF-KAPPA-B; NECROSIS-FACTOR-ALPHA; ENDOPLASMIC-RETICULUM STRESS; UNFOLDED PROTEIN RESPONSE; ENZYME GENE-EXPRESSION; TCR TRANSGENIC MICE; T-CELLS; HYDROGEN-PEROXIDE; SUPEROXIDE-DISMUTASE;
D O I
10.1155/2011/593863
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Redox reactions are imperative to preserving cellular metabolism yet must be strictly regulated. Imbalances between reactive oxygen species (ROS) and antioxidants can initiate oxidative stress, which without proper resolve, can manifest into disease. In type 1 diabetes (T1D), T-cell-mediated autoimmune destruction of pancreatic beta-cells is secondary to the primary invasion of macrophages and dendritic cells (DCs) into the islets. Macrophages/DCs, however, are activated by intercellular ROS from resident pancreatic phagocytes and intracellular ROS formed after receptor-ligand interactions via redox-dependent transcription factors such as NF-kappa B. Activated macrophages/DCs ferry beta-cell antigens specifically to pancreatic lymph nodes, where they trigger reactive T cells through synapse formation and secretion of proinflammatory cytokines and more ROS. ROS generation, therefore, is pivotal in formulating both innate and adaptive immune responses accountable for islet cell autoimmunity. The importance of ROS/oxidative stress as well as potential for redox modulation in the context of T1D will be discussed.
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页数:15
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