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首页> 外文期刊>Clinical and Experimental Immunology: An Official Journal of the British Society for Immunology >Differential effect of hyperglycaemia on the immune response in an experimental model of diabetes in BALB/cByJ and C57Bl/6J mice: Pfarticipation of oxidative stress
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Differential effect of hyperglycaemia on the immune response in an experimental model of diabetes in BALB/cByJ and C57Bl/6J mice: Pfarticipation of oxidative stress

机译:高血糖对BALB / cByJ和C57Bl / 6J小鼠的糖尿病实验模型免疫反应的差异作用:氧化应激的发作

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Diabetes is associated with an increased risk of death from infectious disease. Hyperglycaemia has been identified as the main factor contributing to the development of diseases associated with diabetes mellitus. However, experimental evidence indicates individual susceptibility to develop complications of diabetes. In this context, the aim of this work was to study the immune response in a streptozotocin-induced type 1 diabetes in two mouse strains: BALB/cByJ and C57Bl/6J. The participation of hyperglycaemia and oxidative stress was also analysed. Diabetic BALB/cByJ mice showed a decrease in both the in-vivo and in-vitro immune responses, whereas diabetic C57Bl/6J mice had higher blood glucose but exhibited no impairment of the immune response. The influence of hyperglycaemia over the immune response was evaluated by preincubation of lymphocytes from normal mice in a high glucose-containing medium. T and B cells from BALB/cByJ mice showed a decrease in cell viability and mitogen-stimulated proliferation and an increase in apoptosis induction. An increase in oxidative stress was implicated in this deleterious effect. These parameters were not affected in the T and B lymphocytes from C57Bl/6J mice. In conclusion, BALB/cByJ mice were sensitive to the deleterious effect of hyperglycaemia, while C57BL/6J were resistant. Although an extrapolation of these results to clinical conditions must be handled with caution, these results highlight the need to contemplate the genetic background to establish models to study the deleterious effect of diabetes in order to understand phenotypical variations that are of clinical importance in the treatment of patients. ? 2012 British Society for Immunology.
机译:糖尿病与感染性疾病死亡风险增加相关。高血糖症已被确定为导致与糖尿病有关的疾病发展的主要因素。但是,实验证据表明,个体易患糖尿病并发症。在这种情况下,这项工作的目的是研究链脲佐菌素诱导的1型糖尿病在两种小鼠品系BALB / cByJ和C57Bl / 6J中的免疫反应。还分析了高血糖和氧化应激的参与。糖尿病BALB / cByJ小鼠体内和体外免疫应答均降低,而糖尿病C57Bl / 6J小鼠血糖较高,但免疫应答无损害。高血糖对免疫应答的影响通过在高葡萄糖培养基中预孵育正常小鼠淋巴细胞来评估。来自BALB / cByJ小鼠的T细胞和B细胞显示出细胞活力的降低和有丝分裂原刺激的增殖以及凋亡诱导的增加。氧化应激的增加与这种有害作用有关。这些参数在来自C57Bl / 6J小鼠的T和B淋巴细胞中不受影响。总之,BALB / cByJ小鼠对高血糖的有害作用敏感,而C57BL / 6J具有抗药性。尽管必须谨慎处理将这些结果推论到临床疾病的情况,但是这些结果强调了需要考虑遗传背景以建立模型来研究糖尿病的有害作用,以了解在治疗糖尿病方面具有临床重要性的表型变异。耐心。 ? 2012年英国免疫学会。

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