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Cryptococcus gattii Isolates from the British Columbia Cryptococcosis Outbreak Induce Less Protective Inflammation in a Murine Model of Infection than Cryptococcus neoformans▿ †

机译:从不列颠哥伦比亚省隐球菌爆发中分离出的隐球菌gattii与新隐球菌相比,在鼠类感染模型中诱导的保护性炎症更少

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摘要

The fungal pathogen Cryptococcus neoformans causes approximately one million cases of cryptococcosis per year in people with AIDS. In contrast, the related species C. gattii is responsible for a much smaller number of cases, but these often occur in immunocompetent people. In fact, C. gattii has emerged in the last decade as the frequent cause of cryptococcosis in otherwise healthy people in British Columbia. We analyzed the immune responses elicited by three C. gattii strains and one C. neoformans strain in mice as a first step toward understanding why C. gattii is able to cause disease in immunocompetent hosts. The C. gattii strains all induced a less protective inflammatory response in C57BL/6 mice by inhibiting or failing to provoke the migration of neutrophils to sites of infection. The C. gattii strains also failed to elicit the production of protective cytokines, such as tumor necrosis factor alpha, compared to the ability of the C. neoformans strain. Despite these differences, the strain representing the major outbreak genotype from British Columbia showed a virulence equivalent to that of the C. neoformans strain, while two other C. gattii strains had reduced virulence. Taken together, our results indicate that C. gattii strains thrive in immunocompetent hosts by evading or suppressing the protective immune responses that normally limit the progression of disease caused by C. neoformans.
机译:真菌病原体新隐球菌每年在艾滋病患者中引起约一百万例隐球菌病。相比之下,相关物种加迪梭菌(C. gattii)导致的病例要少得多,但这些病例通常发生在有免疫能力的人中。实际上,加迪衣藻在过去十年中已成为不列颠哥伦比亚省其他健康人群的隐球菌病的常见病因。我们分析了三种C. gattii菌株和一种C. neoformans菌株在小鼠中引起的免疫应答,这是了解为什么C. gattii能够在具有免疫能力的宿主中引起疾病​​的第一步。加的梭状芽胞杆菌菌株均通过抑制或未能激发嗜中性粒细胞迁移至感染部位而在C57BL / 6小鼠中诱导了较少的保护性炎症反应。与新孢梭菌菌株的能力相比,加帝梭菌菌株也未能引起保护性细胞因子的产生,例如肿瘤坏死因子α。尽管存在这些差异,但代表不列颠哥伦比亚省主要暴发基因型的菌株仍显示出与新福寿螺菌株相同的毒力,而另外两个加蒂衣藻的毒力却有所降低。两者合计,我们的结果表明,通过逃避或抑制正常情况下限制由新孢梭菌引起的疾病进展的保护性免疫应答,加氏梭菌菌株在具有免疫能力的宿主中壮成长。

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