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Toll-like receptor 2 induced cytotoxic T-lymphocyte-associated protein 4 regulates Aspergillus-induced regulatory T-cells with pro-inflammatory characteristics

机译:Toll样受体2诱导的细胞毒性T淋巴细胞相关蛋白4调节曲霉菌诱导的具有促炎特性的调节T细胞

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摘要

Patients with cystic fibrosis, chronic obstructive pulmonary disease, severe asthma, pre-existing pulmonary lesions, and severely immunocompromised patients are susceptible to develop infections with the opportunistic pathogenic fungus Aspergillus fumigatus, called aspergillosis. Infections in these patients are associated with persistent pro-inflammatory T-helper (TH)2 and TH17 responses. Regulatory T-cells, natural suppressor cells of the immune system, control pro-inflammatory T-cell responses, but can also contribute to disease by shifting to a pro-inflammatory TH17-like phenotype. Such a shift could play an important role in the detrimental immunopathology that is seen in aspergillosis. Our study demonstrates that Aspergillus fumigatus induces regulatory T-cells with a TH17-like phenotype. We also demonstrate that these regulatory T-cells with a pro-inflammatory TH17-like phenotype can be reprogrammed to their “classical” anti-inflammatory phenotype by activating Toll-like receptor 2 (TLR2), which regulates the induction of cytotoxic T-lymphocyte-associated protein 4 (CTLA4). Similarly, soluble CTLA4 could reverse the pro-inflammatory phenotype of Aspergillus-induced regulatory T-cells. In conclusion, our results suggest a role for regulatory T-cells with a pro-inflammatory TH17-like phenotype in Aspergillus-associated immunopathology, and identifies key players, i.e. TLR2 and CTLA4, involved in this mechanism.
机译:患有囊性纤维化,慢性阻塞性肺疾病,严重哮喘,既往肺损伤和免疫功能低下的患者容易感染机会致病性真菌烟曲霉,称为曲霉病。这些患者中的感染与持续的促炎性T-helper(TH)2和TH17反应有关。调节性T细胞是免疫系统的天然抑制细胞,可控制促炎性T细胞反应,但也可通过转变为促炎性TH17样表型来促进疾病。这种变化可能在曲霉病的有害免疫病理学中起重要作用。我们的研究表明,烟曲霉诱导具有TH17样表型的调节性T细胞。我们还证明,这些具有促炎性TH17样表型的调节性T细胞可以通过激活Toll样受体2(TLR2)来重新编程为其“经典”抗炎表型,后者调节细胞毒性T淋巴细胞的诱导-相关蛋白4(CTLA4)。同样,可溶性CTLA4可以逆转曲霉菌诱导的调节性T细胞的促炎表型。总之,我们的结果表明,具有促炎性TH17样表型的调节性T细胞在曲霉菌相关的免疫病理学中具有重要作用,并确定了参与此机制的关键参与者,即TLR2和CTLA4。

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