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首页> 外文期刊>Frontiers in Immunology >Bovine Polymorphonuclear Neutrophils Cast Neutrophil Extracellular Traps against the Abortive Parasite Neospora caninum
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Bovine Polymorphonuclear Neutrophils Cast Neutrophil Extracellular Traps against the Abortive Parasite Neospora caninum

机译:牛多形核中性粒细胞将中性粒细胞胞外诱捕物对流产性寄生虫犬新孢子虫

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Neospora caninum represents a relevant apicomplexan parasite causing severe reproductive disorders in cattle worldwide. Neutrophil extracellular trap (NET) generation was recently described as an efficient defense mechanism of polymorphonuclear neutrophils (PMN) acting against different parasites. In vitro interactions of bovine PMN with N. caninum were analyzed at different ratios and time spans. Extracellular DNA staining was used to illustrate the typical molecules of NETs [i.e., histones (H3), neutrophil elastase (NE), myeloperoxidase (MPO), pentraxin] via antibody-based immunofluorescence analyses. Functional inhibitor treatments were applied to reveal the role of several enzymes [NADPH oxidase (NOX), NE, MPO, PAD4], ATP-dependent P2Y2 receptor, store-operated Ca~(++)entry (SOCE), CD11b receptor, ERK1/2- and p38 MAPK-mediated signaling pathway in tachyzoite-triggered NETosis. N. caninum tachyzoites triggered NETosis in a time- and dose-dependent manner. Scanning electron microscopy analyses revealed NET structures being released by bovine PMN and entrapping tachyzoites. N. caninum -induced NET formation was found not to be NOX-, NE-, MPO-, PAD4-, ERK1/2-, and p38 MAP kinase-dependent process since inhibition of these enzymes led to a slight decrease of NET formation. CD11b was also identified as a neutrophil receptor being involved in NETosis. Furthermore, N. caninum -triggered NETosis depends on Ca~(++)influx as well as neutrophil metabolism since both the inhibition of SOCE and of P2Y2-mediated ATP uptake diminished NET formation. Host cell invasion assays indicated that PMN-derived NETosis hampered tachyzoites from active host cell invasion, thereby inhibiting further intracellular replication. NET formation represents an early and effective mechanism of response of the innate immune system, which might reduce initial infection rates during the acute phase of cattle neosporosis.
机译:犬新孢子虫代表一种相关的apicomplexan寄生虫,在世界范围内引起严重的生殖疾病。最近,嗜中性粒细胞胞外陷阱(NET)的产生被描述为一种针对不同寄生虫的多形核中性粒细胞(PMN)的有效防御机制。牛PMN与犬新孢子虫的体外相互作用以不同的比例和时间跨度进行了分析。细胞外DNA染色用于通过基于抗体的免疫荧光分析来说明NETs的典型分子[即组蛋白(H3),嗜中性粒细胞弹性蛋白酶(NE),髓过氧化物酶(MPO),戊traxin]。应用功能抑制剂处理以揭示几种酶的作用[NADPH氧化酶(NOX),NE,MPO,PAD4],ATP依赖的P2Y2受体,存储操作的Ca〜(++)条目(SOCE),CD11b受体,ERK1速殖子触发的NETosis中的/ 2和p38 MAPK介导的信号通路。犬新孢子虫速殖子以时间和剂量依赖性方式触发NETosis。扫描电子显微镜分析显示,牛PMN释放了NET结构并截留了速殖子。发现犬新孢子虫诱导的NET形成不是NOX-,NE-,MPO-,PAD4-,ERK1 / 2-和p38 MAP激酶依赖性过程,因为抑制这些酶导致NET形成的轻微降低。 CD11b也被鉴定为参与NETosis的嗜中性粒细胞受体。此外,由于对SOCE的抑制和对P2Y2介导的ATP摄取的抑制都减少了NET的形成,因此由犬新孢子虫触发的NETosis取决于Ca〜(++)的流入以及中性粒细胞的代谢。宿主细胞入侵试验表明,PMN衍生的NETosis阻碍了速殖子从活跃的宿主细胞入侵,从而抑制了进一步的细胞内复制。 NET的形成代表了先天免疫系统应答的早期有效机制,这可能会降低牛新孢子虫病急性期的初始感染率。

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