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首页> 外文期刊>Thorax: The Journal of the British Thoracic Society >Respiratory syncytial virus infection of airway epithelial cells, in vivo and in vitro, supports pulmonary antibody responses by inducing expression of the B cell differentiation factor BAFF
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Respiratory syncytial virus infection of airway epithelial cells, in vivo and in vitro, supports pulmonary antibody responses by inducing expression of the B cell differentiation factor BAFF

机译:呼吸道合胞病毒在呼吸道上皮细胞体内和体外的感染通过诱导B细胞分化因子BAFF的表达来支持肺部抗体应答

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摘要

Background: The mechanisms regulating antibody expression within the human lung during airway infection are largely unknown. In this study, our objectives were to determine if infection with respiratory syncytial virus (RSV) upregulates expression of the B cell differentiation factors A proliferation inducing ligand (APRIL) and B cell activating factor of the TNF family (BAFF), if this is a common feature of viral airway infection, and how this is regulated in human airway epithelial cells. Methods: We measured BAFF and APRIL protein expression in bronchoalveolar lavage (BAL) fluid from infants with severe RSV disease, and healthy control children, and in nasopharyngeal aspirates from preschool children with other single respiratory viral infections. We also measured mRNA expression in bronchial brushings from RSV-infected infants, and in RSV-infected paediatric primary airway epithelial cell cultures ( pAEC). Beas-2B cell cultures were used to examine mechanisms regulating BAFF expression. Results: BAFF protein and mRNA were elevated (in marked contrast with APRIL) in BAL and bronchial brushings, respectively, from RSV-infected infants. BAFF protein was also found in upper airway secretions from children with human metapneumovirus, H1N1, bocavirus, rhinovirus, RSV and Mycoplasma pneumoniae infection. BAFF mRNA and protein were expressed following in vitro RSV infection of both pAEC and Beas- 2B cultures, with mRNA expression peaking 12-h postinfection. BAFF induction was blocked by addition of a neutralising anti-interferon-β antibody or palivizumab. Conclusions: BAFF, produced through an interferon-β- dependant process, is a consistent feature of airway infection, and suggests a role for the airway epithelia in supporting protective antibody and B cell responses in the lung.
机译:背景:在气道感染过程中调节人肺内抗体表达的机制尚不清楚。在这项研究中,我们的目标是确定呼吸道合胞病毒(RSV)的感染是否上调TNF家族的B细胞分化因子A增殖诱导配体(APRIL)和B细胞激活因子(BAFF)的表达。病毒气道感染的常见特征,以及在人气道上皮细胞中如何进行调节。方法:我们测量了来自严重RSV疾病婴儿和健康对照儿童的支气管肺泡灌洗液(BAL)以及来自其他单次呼吸道病毒感染的学龄前儿童鼻咽抽吸物中BAFF和APRIL蛋白的表达。我们还测量了RSV感染婴儿的支气管刷牙以及RSV感染小儿主要气道上皮细胞培养物(pAEC)中的mRNA表达。 Beas-2B细胞培养用于检查调节BAFF表达的机制。结果:感染RSV的婴儿的BAL和支气管刷中BAFF蛋白和mRNA分别升高(与APRIL形成鲜明对比)。在患有人类偏肺病毒,H1N1,博卡病毒,鼻病毒,RSV和肺炎支原体感染的儿童的上呼吸道分泌物中也发现了BAFF蛋白。在pAEC和Beas-2B培养物的体外RSV感染后,表达BAFF mRNA和蛋白,mRNA表达在感染后12小时达到峰值。通过添加中和性抗干扰素-β抗体或帕利珠单抗来阻断BAFF的诱导。结论:通过干扰素-β依赖性过程产生的BAFF是气道感染的一致特征,并暗示了气道上皮在支持肺中保护性抗体和B细胞反应中的作用。

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