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Enhanced antiinflammatory capacity of a Lactobacillus plantarum mutant synthesizing modified teichoic acids

机译:合成修饰的硫磷酸的植物乳杆菌突变体的抗炎能力增强

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Teichoic acids (TAs), and especially lipoteichoic acids (LTAs), are one of the main immunostimulatory components of pathogenic Gram-positive bacteria. Their contribution to the immunomodulatory properties of commensal bacteria and especially of lactic acid bacteria has not yet been investigated in detail. To evaluate the role of TAs in the interaction between lactic acid bacteria and the immune system, we analyzed the antiinflammatory properties of a mutant of Lactobacillus plantarum NCIMB8826 affected in the TA biosynthesis pathway both in vitro (mononuclear cells stimulation) and in vivo (murine model of colitis). This Dlt~- mutant was found to incorporate much less D-Ala in its TAs than the WT strain. This defect significantly impacted the immunomodulation reactions induced by the bacterium, as shown by a dramatically reduced secretion of proinf lammatory cytokines by peripheral blood mono-nuclear cells and monocytes stimulated by the Dlt~- mutant as compared with the parental strain. Concomitantly, a significant increase in IL-10 production was stimulated by the Dlt~- mutant in comparison with the WT strain. Moreover, the proinflammatory capacity of L. plantarum-purified LTA was found to be Toll-like receptor 2-dependent. Consistent with the in vitro results, the Dlt~-mutant was significantly more protective in a murine colitis model than its WT counterpart. The results indicated that composition of LTA within the whole-cell context of L. plantarum can modulate proinflammatory or antiinflammatory immune responses.
机译:Teichoic酸(TAs),尤其是脂磷壁酸(LTAs)是致病性革兰氏阳性细菌的主要免疫刺激成分之一。它们对共生细菌尤其是乳酸菌的免疫调节特性的贡献尚未得到详细研究。为了评估TA在乳酸菌和免疫系统之间的相互作用中的作用,我们分析了在体外(单核细胞刺激)和体内(鼠模型)TA生物合成途径中受影响的植物乳杆菌NCIMB8826突变体的抗炎特性。结肠炎)。发现该Dlt1-突变体在其TA中掺入的D-Ala比WT菌株少得多。这种缺陷显着影响了细菌诱导的免疫调节反应,与亲代菌株相比,由Dlt-突变体刺激的外周血单核细胞和单核细胞分泌的前炎症细胞因子显着减少表明了这一缺陷。同时,与WT菌株相比,Dlt1-突变体刺激了IL-10产生的显着增加。此外,发现植物乳杆菌纯化的LTA的促炎能力是Toll样受体2依赖性的。与体外结果一致,在小鼠结肠炎模型中,Dlt_突变体的保护性明显强于野生型。结果表明,植物乳杆菌全细胞范围内的LTA组成可以调节促炎或抗炎免疫反应。

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