首页> 外文期刊>Disease models & mechanisms: DMM >Depletion of regulatory T cells leads to an exacerbation of delayed-type hypersensitivity arthritis in C57BL/6 mice that can be counteracted by IL-17 blockade
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Depletion of regulatory T cells leads to an exacerbation of delayed-type hypersensitivity arthritis in C57BL/6 mice that can be counteracted by IL-17 blockade

机译:调节性T细胞的耗竭导致C57BL / 6小鼠的迟发型超敏反应性关节炎加剧,可以通过IL-17阻断作用来抵消

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Rodent models of arthritis have been extensively used in the elucidation of rheumatoid arthritis (RA) pathogenesis and are instrumental in the development of therapeutic strategies. Here we utilise delayed-type hypersensitivity arthritis (DTHA), a model in C57BL/6 mice affecting one paw with synchronised onset, 100% penetrance and low variation. We investigate the role of regulatory T cells (Tregs) in DTHA through selective depletion of Tregs and the role of IL-17 in connection with Treg depletion. Given the relevance of Tregs in RA, and the possibility of developing Treg-directed therapies, this approach could be relevant for advancing the understanding of Tregs in inflammatory arthritis. Selective depletion of Tregs was achieved using a Fox p3-DTR-eGFP mouse, which expresses the diphtheria toxin receptor (DTR) and enhanced green fluorescent protein (eGFP) under control of the F oxp3 gene. Anti-IL-17 monoclonal antibody (mAb) was used for IL-17 blockade. Numbers and activation of Tregs increased in the paw and its draining lymph node in DTHA, and depletion of Tregs resulted in exacerbation of disease as shown by increased paw swelling, increased infiltration of inflammatory cells, increased bone remodelling and increased production of inflammatory mediators, as well as increased production of anti-citrullinated protein antibodies. Anti-IL-17 mAb treatment demonstrated that IL-17 is important for disease severity in both the presence and absence of Tregs, and that IL-17 blockade is able to rescue mice from the exacerbated disease caused by Treg depletion and caused a reduction in RANKL, IL-6 and the number of neutrophils. We show that Tregs are important for the containment of inflammation and bone remodelling in DTHA. To our knowledge, this is the first study using the Fox p3-DTR-eGFP mouse on a C57BL/6 background for Treg depletion in an arthritis model, and we here demonstrate the usefulness of the approach to study the role of Tregs and IL-17 in arthritis.
机译:关节炎的啮齿动物模型已广泛用于阐明类风湿性关节炎(RA)的发病机理,并且在治疗策略的开发中起着重要作用。在这里,我们利用延迟型超敏反应性关节炎(DTHA),该模型在C57BL / 6小鼠中以同步发作,100%穿透性和低变异性影响一只脚掌。我们通过选择性耗竭Tregs来研究DTHA中调节性T细胞(Tregs)的作用以及与Treg耗竭有关的IL-17的作用。鉴于RA中Treg的相关性以及开发Treg定向疗法的可能性,这种方法可能与增进对炎性关节炎中Treg的了解有关。使用Fox p3-DTR-eGFP小鼠实现Treg的选择性消耗,该小鼠在F oxp3基因的控制下表达白喉毒素受体(DTR)和增强的绿色荧光蛋白(eGFP)。抗IL-17单克隆抗体(mAb)被用于IL-17阻断。 DTHA的爪子及其引流淋巴结中Tregs的数量和活化增加,并且Tregs的消耗导致疾病恶化,如爪子肿胀增加,炎性细胞浸润增加,骨骼重塑和炎性介质产生增加所表明的,以及抗瓜氨酸化蛋白抗体的产量增加。抗IL-17 mAb治疗证明,无论有无Treg,IL-17对于疾病严重性都很重要,并且IL-17阻断能够使小鼠摆脱Treg消耗引起的病情加重并导致Treg减少。 RANKL,IL-6和中性粒细胞的数量。我们显示,Treg对于抑制DTHA中的炎症和骨骼重塑非常重要。据我们所知,这是在关节炎模型中首次使用Fox p3-DTR-eGFP小鼠在C57BL / 6背景上进行Treg耗竭的研究,我们在此证明了研究Tregs和IL- 17在关节炎中。

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