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Disruption of the intestinal barrier exacerbates experimental autoimmune pancreatitis by promoting the translocation ofStaphylococcus sciuriinto the pancreas

失调 自身免疫性胰腺炎 涎腺炎 自身免疫性疾病 免疫学 化学 胰腺 生物 医学 抗体 肠道菌群 内分泌学 内科学 唾液腺
作者
Tomoe Yoshikawa,Kosuke Minaga,Akane Hara,Ikue Sekai,Masayuki Kurimoto,Yasuhiro Masuta,Yasuo Otsuka,Ryutaro Takada,Ken Kamata,Ah-Mee Park,Shiki Takamura,Masatoshi Kudo,Tomohiro Watanabe
出处
期刊:International Immunology [Oxford University Press]
卷期号:34 (12): 621-634 被引量:19
标识
DOI:10.1093/intimm/dxac039
摘要

Autoimmune pancreatitis (AIP) and IgG4-related disease (IgG4-RD) are new disease entities characterized by enhanced IgG4 antibody responses and involvement of multiple organs, including the pancreas and salivary glands. Although the immunopathogenesis of AIP and IgG4-RD is poorly understood, we previously reported that intestinal dysbiosis mediates experimental AIP through the activation of IFN-α- and IL-33-producing plasmacytoid dendritic cells (pDCs). Because intestinal dysbiosis is linked to intestinal barrier dysfunction, we explored whether the latter affects the development of AIP and autoimmune sialadenitis in MRL/MpJ mice treated with repeated injections of polyinosinic-polycytidylic acid [poly (I:C)]. Epithelial barrier disruption was induced by the administration of dextran sodium sulfate (DSS) in the drinking water. Mice co-treated with poly (I:C) and DSS, but not those treated with either agent alone, developed severe AIP, but not autoimmune sialadenitis, which was accompanied by the increased accumulation of IFN-α- and IL-33-producing pDCs. Sequencing of 16S ribosomal RNA revealed that Staphylococcus sciuri translocation from the gut to the pancreas was preferentially observed in mice with severe AIP co-treated with DSS and poly (I:C). The degree of experimental AIP, but not of autoimmune sialadenitis, was greater in germ-free mice mono-colonized with S. sciuri and treated with poly (I:C) than in germ-free mice treated with poly (I:C) alone, which was accompanied by the increased accumulation of IFN-α- and IL-33-producing pDCs. Taken together, these data suggest that intestinal barrier dysfunction exacerbates AIP through the activation of pDCs and translocation of S. sciuri into the pancreas.
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