首页> 美国卫生研究院文献>PLoS Clinical Trials >Spherical Lactic Acid Bacteria Activate Plasmacytoid Dendritic Cells Immunomodulatory Function via TLR9-Dependent Crosstalk with Myeloid Dendritic Cells
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Spherical Lactic Acid Bacteria Activate Plasmacytoid Dendritic Cells Immunomodulatory Function via TLR9-Dependent Crosstalk with Myeloid Dendritic Cells

机译:球形细菌通过与髓样树突状细胞的TLR9依赖性串扰激活浆细胞样树突状细胞的免疫调节功能。

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摘要

Plasmacytoid dendritic cells (pDC) are a specialized sensor of viral and bacterial nucleic acids and a major producer of IFN-α that promotes host defense by priming both innate and acquired immune responses. Although synthetic Toll-like receptor (TLR) ligands, pathogenic bacteria and viruses activate pDC, there is limited investigation of non-pathogenic microbiota that are in wide industrial dietary use, such as lactic acid bacteria (LAB). In this study, we screened for LAB strains, which induce pDC activation and IFN-α production using murine bone marrow (BM)-derived Flt-3L induced dendritic cell culture. Microbial strains with such activity on pDC were absent in a diversity of bacillary strains, but were observed in certain spherical species (Lactococcus, Leuconostoc, Streptococcus and Pediococcus), which was correlated with their capacity for uptake by pDC. Detailed study of Lactococcus lactis subsp. lactis JCM5805 and JCM20101 revealed that the major type I and type III interferons were induced (IFN-α, -β, and λ). IFN-α induction was TLR9 and MyD88-dependent; a slight impairment was also observed in TLR4-/- cells. While these responses occurred with purified pDC, IFN-α production was synergistic upon co-culture with myeloid dendritic cells (mDC), an interaction that required direct mDC-pDC contact. L. lactis strains also stimulated expression of immunoregulatory receptors on pDC (ICOS-L and PD-L1), and accordingly augmented pDC induction of CD4+CD25+FoxP3+ Treg compared to the Lactobacillus strain. Oral administration of L. lactis JCM5805 induced significant activation of pDC resident in the intestinal draining mesenteric lymph nodes, but not in a remote lymphoid site (spleen). Taken together, certain non-pathogenic spherical LAB in wide dietary use has potent and diverse immunomodulatory effects on pDC potentially relevant to anti-viral immunity and chronic inflammatory disease.
机译:浆细胞样树突状细胞(pDC)是病毒和细菌核酸的专门传感器,并且是IFN-α的主要生产者,它通过引发先天和后天免疫应答来促进宿主防御。尽管合成的Toll样受体(TLR)配体,病原细菌和病毒激活了pDC,但对广泛用于工业饮食的非病原性微生物群(如乳酸菌(LAB))的研究很少。在这项研究中,我们筛选了LAB菌株,该菌株使用鼠骨髓(BM)衍生的Flt-3L诱导的树突状细胞培养物诱导pDC活化和IFN-α产生。在多种细菌菌株中均不存在对pDC具有这种活性的微生物菌株,但在某些球形物种(乳球菌,亮葡菌球菌,链球菌和小球菌)中观察到了微生物菌株,这与它们对pDC的吸收能力有关。乳酸乳球菌亚种的详细研究。乳酸JCM5805和JCM20101揭示了主要的I型和III型干扰素(IFN-α,-β和λ)被诱导。 IFN-α诱导是TLR9和MyD88依赖性的。在TLR4 -/-细胞中也观察到了轻微的损伤。尽管这些反应发生在纯化的pDC上,但与髓样树突状细胞(mDC)共培养时,IFN-α的产生是协同的,这种相互作用需要mDC-pDC直接接触。乳酸乳杆菌菌株还刺激了pDC(ICOS-L和PD-L1)上免疫调节受体的表达,并因此增强了CD4对CD4 + CD25 + FoxP3 的pDC诱导作用+ Treg与乳酸杆菌菌株相比。口服乳酸乳球菌JCM5805诱导肠内引流肠系膜淋巴结中的pDC显着活化,但在远端淋巴样部位(脾脏)则没有。两者合计,在饮食中广泛使用的某些非病原性球形LAB对pDC具有强大而多样的免疫调节作用,可能与抗病毒免疫和慢性炎症性疾病有关。

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