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Galectin-3 Plays an Important Role in Innate Immunity to Gastric Infection by Helicobacter pylori

机译:Galectin-3在幽门螺杆菌对胃感染的天然免疫中起重要作用

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We studied the role of galectin-3 (Gal3) in gastric infection by Helicobacter pylori. We first demonstrated that Gal3 was selectively expressed by gastric surface epithelial cells and abundantly secreted into the surface mucus layer. We next inoculated H. pylori Sydney strain 1 into wild-type (WT) and Gal3-deficient mice using a stomach tube. At 2 weeks postinoculation, the bacterial cells were mostly trapped within the surface mucus layer in WT mice. In sharp contrast, they infiltrated deep into the gastric glands in Gal3-deficient mice. Bacterial loads in the gastric tissues were also much higher in Gal3-deficient mice than in WT mice. At 6 months postinoculation, H. pylori had successfully colonized within the gastric glands of both WT and Gal3-deficient mice, although the bacterial loads were still higher in the latter. Furthermore, large lymphoid clusters mostly consisting of B cells were frequently observed in the gastric submucosa of Gal3-deficient mice. In vitro, peritoneal macrophages from Gal3-deficient mice were inefficient in killing engulfed H. pylori. Furthermore, recombinant Gal3 not only induced rapid aggregation of H. pylori but also exerted a potent bactericidal effect on H. pylori as revealed by propidium iodide uptake and a morphological shift from spiral to coccoid form. However, a minor fraction of bacterial cells, probably transient phase variants of Gal3-binding sugar moieties, escaped killing by Gal3. Collectively, our data demonstrate that Gal3 plays an important role in innate immunity to infection and colonization of H. pylori.
机译:我们研究了半乳糖凝集素3(Gal3)在幽门螺杆菌胃感染中的作用。我们首先证明,Gal3由胃表面上皮细胞选择性表达,并大量分泌到表面粘液层中。接下来,我们使用胃管将幽门螺杆菌悉尼菌株1接种到野生型(WT)和Gal3缺陷型小鼠中。接种后2周,细菌细胞大部分被捕获在WT小鼠的表面粘液层中。与之形成鲜明对比的是,它们渗入了Gal3缺陷小鼠的胃腺深处。 Gal3缺陷型小鼠的胃组织中的细菌负荷也比野生型小鼠高得多。接种后6个月,幽门螺杆菌已成功定植在WT和Gal3缺陷小鼠的胃腺中,尽管后者的细菌载量仍然更高。此外,在Gal3缺陷型小鼠的胃黏膜下层经常观察到主要由B细胞组成的大型淋巴样簇。在体外,来自Gal3缺陷型小鼠的腹膜巨噬细胞不能有效杀死吞噬的幽门螺杆菌。此外,重组Gal3不仅诱导幽门螺杆菌快速聚集,而且还通过碘化丙锭的摄取和从螺旋状到类球体形态的转变揭示了对幽门螺杆菌的有效杀菌作用。但是,一小部分细菌细胞(可能是Gal3结合糖部分的瞬时突变体)逃脱了Gal3的杀伤。总的来说,我们的数据表明,Gal3在感染幽门螺杆菌和定植的先天免疫中起着重要作用。

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