Mucin-Related Molecular Responses of Bronchial Epithelial Cells in Rats Infected with the Nematode Nippostrongylus brasiliensis.

ISRN Parasitology Pub Date : 2013-03-16 eCollection Date: 2013-01-01 DOI:10.5402/2013/804585
Koichi Soga, Minoru Yamada, Yuji Naito, Toshikazu Yoshikawa, Naoki Arizono
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引用次数: 1

Abstract

Although mucins are essential for the protection of internal epithelial surfaces, molecular responses involving mucin production and secretion in response to various infectious agents in the airway have not been fully elucidated. The present study analysed airway goblet cell mucins in rats infected with the nematode Nippostrongylus brasiliensis, which migrates to the lungs shortly after infection. Goblet cell hyperplasia occurred in the bronchial epithelium 3-10 days after infection. The high iron diamine-alcian blue staining combined with neuraminidase treatment showed that sialomucin is the major mucin in hyperplastic goblet cells. Immunohistochemical studies demonstrated that goblet cell mucins were immunoreactive with both the major airway mucin core peptide, Muc5AC, and the major intestinal mucin core peptide Muc2. Reverse transcription real-time PCR studies demonstrated upregulation of gene transcription levels of Muc5AC, Muc2, the sialyltransferase St3gal4, and the resistin-like molecule beta (Retnlb) in the lungs. These results showed that nematode infection induces airway epithelial responses characterised by the production of sialomucin with Muc5AC and Muc2 core peptides. These mucins, as well as Retnlb, might have important roles in the protection of mucosa from migrating nematodes in the airway.

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巴西尼波圆线虫感染大鼠支气管上皮细胞黏液相关分子反应
尽管黏液蛋白对保护内部上皮表面至关重要,但在气道内对各种感染因子的反应中,涉及黏液蛋白产生和分泌的分子反应尚未完全阐明。本研究分析了感染巴西尼波圆线虫(Nippostrongylus brasiliensis)的大鼠气道杯状细胞粘蛋白,这种线虫在感染后不久就会迁移到肺部。感染后3 ~ 10 d支气管上皮出现杯状细胞增生。高铁二胺-阿利新蓝染色联合神经氨酸酶处理表明,唾液黏液蛋白是增生性杯状细胞的主要黏液蛋白。免疫组织化学研究表明,杯状细胞粘蛋白与主要气道粘蛋白核心肽Muc5AC和主要肠粘蛋白核心肽Muc2均有免疫反应。反转录实时PCR研究表明,肺中Muc5AC、Muc2、唾液转移酶St3gal4和抵抗素样分子β (Retnlb)的基因转录水平上调。这些结果表明,线虫感染诱导气道上皮反应,其特征是产生含有Muc5AC和Muc2核心肽的唾液粘液蛋白。这些粘蛋白以及retlb可能在保护气道粘膜免受迁移线虫侵害方面发挥重要作用。
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