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Distinct CD4+-T-Cell Responses to Live and Heat-Inactivated Aspergillus fumigatus Conidia

机译:对活的和热灭活的烟曲霉分生孢子的不同CD4 + -T细胞反应

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Aspergillus fumigatus is an important fungal pathogen that causes invasive pulmonary disease in immunocompromised hosts. Respiratory exposure to A. fumigatus spores also causes allergic bronchopulmonary aspergillosis, a Th2 CD4+-T-cell-mediated disease that accompanies asthma. The microbial factors that influence the differentiation of A. fumigatus-specific CD4+ T lymphocytes into Th1 versus Th2 cells remain incompletely defined. We therefore examined CD4+-T-cell responses of immunologically intact mice to intratracheal challenge with live or heat-inactivated A. fumigatus spores. Live but not heat-inactivated fungal spores resulted in recruitment of gamma interferon (IFN-γ)-producing, fungus-specific CD4+ T cells to lung airways, achieving A. fumigatus-specific frequencies exceeding 5% of total CD4+ T cells. While heat-inactivated spores did not induce detectable levels of IFN-γ-producing, A. fumigatus-specific CD4+ T cells in the airways, they did prime CD4+ T-cell responses in draining lymph nodes that produced greater amounts of interleukin 4 (IL-4) and IL-13 than T cells responding to live conidia. While immunization with live fungal spores induced antibody responses, we found a marked decrease in isotype-switched, A. fumigatus-specific antibodies in sera of mice following immunization with heat-inactivated spores. Our studies demonstrate that robust Th1 T-cell and humoral responses are restricted to challenge with fungal spores that have the potential to germinate and cause invasive infection. How the adaptive immune system distinguishes between metabolically active and inactive fungal spores remains an important question.
机译:烟曲霉是一种重要的真菌病原体,可在免疫受损的宿主中引起侵袭性肺部疾病。呼吸暴露于 A。烟孢还引起过敏性支气管肺曲霉病,这是一种伴随哮喘的Th2 CD4 + -T细胞介导的疾病。影响 A分化的微生物因素。相对于Th2细胞,进入Th1细胞的烟熏特异性CD4 + T淋巴细胞的定义仍不完全。因此,我们检查了免疫完整的小鼠对活的或热灭活的 A气管内攻击的CD4 + -T细胞反应。烟熏孢子。活的但不是热灭活的真菌孢子导致产生γ-干扰素(IFN-γ)的真菌特异性CD4 + T细胞募集到肺气道,从而达到 A。烟特异性频率超过CD4 + T细胞总数的5%。虽然热灭活的孢子不能诱导可检测水平的产生IFN-γ的 A。呼吸道中的烟熏特异性CD4 + T细胞,它们确实在引流淋巴结中引发了CD4 + T细胞反应,产生了大量白介素4( IL-4)和IL-13比T细胞对活分生孢子有反应。当用活的真菌孢子免疫诱导抗体反应时,我们发现同型转换的 A明显减少。热灭活的孢子免疫后,小鼠血清中的烟特异性抗体。我们的研究表明,强大的Th1 T细胞和体液反应仅限于真菌孢子的攻击,而真菌孢子可能会发芽并引起侵袭性感染。适应性免疫系统如何区分代谢活性真菌孢子和非活性真菌孢子仍然是一个重要的问题。

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