The Lack of Natural IgM Increases Susceptibility and Impairs Anti-Vi Polysaccharide IgG Responses in a Mouse Model of Typhoid.

Akhil S Alugupalli, Matthew P Cravens, Justin A Walker, Dania Gulandijany, Gregory S Dickinson, Genevieve Lewis, Gudrun F Debes, Dieter M Schifferli, Andreas J Bäumler, Kishore R Alugupalli
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Abstract

Circulating IgM present in the body prior to any apparent Ag exposure is referred to as natural IgM. Natural IgM provides protective immunity against a variety of pathogens. Salmonella enterica serovar Typhi (S. Typhi) is the causative agent of typhoid fever in humans. Because mice are not permissive to S. Typhi infection, we employed a murine model of typhoid using S. enterica serovar Typhimurium expressing the Vi polysaccharide (ViPS) of S. Typhi (S. Typhimurium strain RC60) to evaluate the role of natural IgM in pathogenesis. We found that natural mouse IgM binds to S. Typhi and S. Typhimurium. The severity of S. Typhimurium infection in mice is dependent on presence of the natural resistance-associated macrophage protein 1 (Nramp1) allele; therefore, we infected mice deficient in secreted form of IgM (sIgM) on either a Nramp1-resistant (129S) or -susceptible (C57BL/6J) background. We found that the lack of natural IgM results in a significantly increased susceptibility and an exaggerated liver pathology regardless of the route of infection or the Nramp1 allele. Reconstitution of sIgM-/- mice with normal mouse serum or purified polyclonal IgM restored the resistance to that of sIgM+/+ mice. Furthermore, immunization of sIgM-/- mice with heat-killed S. Typhi induced a significantly reduced anti-ViPS IgG and complement-dependent bactericidal activity against S. Typhi in vitro, compared with that of sIgM+/+ mice. These findings indicate that natural IgM is an important factor in reducing the typhoid severity and inducing an optimal anti-ViPS IgG response to vaccination.

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缺乏天然IgM增加伤寒小鼠模型的易感性并损害抗多糖IgG反应。
在任何明显的银暴露之前存在于体内的循环IgM被称为天然IgM。天然IgM提供对多种病原体的保护性免疫。伤寒沙门氏菌(S. Typhi)是人类伤寒的病原体。由于小鼠不允许伤寒沙门氏菌感染,我们使用表达伤寒沙门氏菌(伤寒沙门氏菌菌株RC60) Vi多糖(ViPS)的肠炎沙门氏菌血清鼠伤寒模型来评估天然IgM在发病机制中的作用。我们发现天然小鼠IgM与伤寒沙门氏菌和鼠伤寒沙门氏菌结合。鼠伤寒沙门氏菌感染小鼠的严重程度取决于天然耐药相关巨噬细胞蛋白1 (Nramp1)等位基因的存在;因此,我们在nramp1耐药(129S)或易感(C57BL/6J)背景下感染缺乏分泌型IgM (sIgM)的小鼠。我们发现,无论感染途径或Nramp1等位基因如何,缺乏天然IgM都会导致易感性显著增加和肝脏病理夸大。用正常小鼠血清或纯化的多克隆IgM重建sIgM-/-小鼠,恢复sIgM+/+小鼠的耐药性。此外,与sIgM+/+小鼠相比,sIgM-/-小鼠热杀伤寒沙门氏菌免疫诱导体外抗vips IgG和补体依赖性杀菌活性显著降低。这些研究结果表明,天然IgM是降低伤寒严重程度和诱导疫苗接种最佳抗vips IgG反应的重要因素。
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