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S-Layer Protein Mediates the Stimulatory Effect of Lactobacillus helveticus MIMLh5 on Innate Immunity

机译:S层蛋白介导瑞士乳杆菌MIMLh5对先天免疫的刺激作用。

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The ability to positively affect host health through the modulation of the immune response is a feature of increasing importance in measuring the probiotic potential of a bacterial strain. However, the identities of the bacterial cell components involved in cross talk with immune cells remain elusive. In this study, we characterized the dairy strain Lactobacillus helveticus MIMLh5 and its surface-layer protein (SlpA) using in vitro and ex vivo analyses. We found that MIMLh5 and SlpA exert anti-inflammatory effects by reducing the activation of NF-κB on the intestinal epithelial Caco-2 cell line. On the contrary, MIMLh5 and SlpA act as stimulators of the innate immune system by triggering the expression of proinflammatory factors tumor necrosis factor alpha and COX-2 in the human macrophage cell line U937 via recognition through Toll-like receptor 2. In the same experiments, SlpA protein did not affect the expression of the anti-inflammatory cytokine interleukin-10. A similar response was observed following stimulation of macrophages isolated from mouse bone marrow or the peritoneal cavity. These results suggest that SlpA plays a major role in mediating bacterial immune-stimulating activity, which could help to induce the host's defenses against and responses toward infections. This study supports the concept that the viability of bacterial cells is not always essential to exert immunomodulatory effects, thus permitting the development of safer therapies for the treatment of specific diseases according to a paraprobiotic intervention.
机译:通过调节免疫应答来积极影响宿主健康的能力是在测量细菌菌株的益生菌潜力中日益重要的特征。然而,与免疫细胞发生串扰的细菌细胞成分的身份仍然难以捉摸。在这项研究中,我们使用体外和离体分析表征了乳杆菌瑞士乳杆菌MIMLh5及其表面层蛋白(SlpA)。我们发现MIMLh5和SlpA通过减少肠上皮Caco-2细胞系上NF-κB的激活发挥抗炎作用。相反,MIMLh5和SlpA通过通过Toll样受体2的识别触发人巨噬细胞U937中促炎因子肿瘤坏死因子α和COX-2的表达,从而起到先天免疫系统的刺激作用。在同一实验中SlpA蛋白不影响抗炎细胞因子白介素10的表达。刺激从小鼠骨髓或腹膜腔分离的巨噬细胞后,观察到类似的反应。这些结果表明,SlpA在介导细菌免疫刺激活性中起主要作用,这可能有助于诱导宿主对感染的防御和反应。这项研究支持细菌细胞的活力并不总是发挥免疫调节作用必不可少的概念,因此允许根据副益生菌干预开发更安全的疗法来治疗特定疾病。

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