首页> 外文期刊>Innate immunity >NOD1/NOD2-mediated recognition of non-typeable Haemophilus influenzae activates innate immunity during otitis media
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NOD1/NOD2-mediated recognition of non-typeable Haemophilus influenzae activates innate immunity during otitis media

机译:NOD1 / NOD2介导的非类型嗜血杆菌的识别激活在中耳炎期间激活先天免疫

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摘要

Pathogen recognition following infection in mammals depends mainly on TLRs and NLRs. Herein, we evaluate the role of NOD1 and NOD2 signaling in the inflammatory responses of the middle ear (ME) mucosa and leukocytes recruitment to infection site during otitis media (OM). OM is a common pediatric disease with prevalent repercussions on hearing health. While many risk factors have been implicated to OM proneness, immunity and the triggering of inflammation are central to OM pathology. We observed that many genes encoding members of the NOD leucine-rich repeat and their downstream adaptor/effector molecules were strongly regulated during the course of OM. When compared to wild type C57BL/6 mice, NOD1- and NOD2-deficient mice were susceptible to prolonged OM infection by non-typeable Haemophilus influenza. NOD1-deficient mice appeared to have reduced macrophage enlistment with a delayed inflammatory response by neutrophils and prolonged mucosal hyperplasia, whereas NOD2 knockouts exhibited an overall reduction in the number of leukocytes recruited to the ME, leading to delayed bacterial clearance. Altogether, these data show that the NODs play a role in the pathogenesis and recovery of OM and reinforce the importance of innate immune signaling in the protective host response.
机译:在哺乳动物感染后病原体识别主要取决于TLRS和NLRS。在此,我们评估NOD1和NOD2信号传导在中耳(ME)粘膜和白细胞募集到中耳炎期间对感染部位的炎症反应中的作用(OM)。 OM是一种常见的儿科疾病,具有对听力健康的普遍影响。虽然许多危险因素涉及全部倾斜,免疫力和炎症的触发是OM病理学的核心。我们观察到,在OM的过程中强烈地调节编码NOD富含亮氨酸的重复和其下游适配器/效应分子的许多基因。与野生型C57BL / 6小鼠相比,NOD1和NOD2缺陷小鼠易于通过非类型嗜血杆菌培养延长OM感染。 Nod1缺陷小鼠出现降低巨噬细胞征兵具有中性粒细胞和延长的粘膜增生,而Nod2敲除表现出对我招募的白细胞数量的总体减少,导致细菌间隙延迟。总之,这些数据表明,点头在OM发病机制和回收中发挥作用,并加强了在保护宿主反应中先天免疫信号的重要性。

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