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Characterization of canine monocyte-derived dendritic cells with phenotypic and functional differentiation

机译:犬单核细胞来源的树突状细胞的表型和功能分化的表征

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For therapeutic purposes, large numbers of dendritic cells (DCs) are essential. In this study, we used 2% autologous canine plasma, granulocyte/macrophage colony-stimulating factor (GM-CSF), fms-like tyrosine kinase 3 ligand (Flt3L), and interleukin 4 (IL-4) in generating monocyte-derived DCs from peripheral blood mononuclear cells of dogs. The plasma enriched the population of CD14-positive monocytes by greatly enhancing the efficiency of monocyte adherence, the proportion of adherent cells increasing from 6.6% with 10% fetal bovine serum to 15.3% with 2% autologous canine plasma. Culturing the adherent monocytes for 6 d with human GM-CSF, canine IL-4, and human Flt3L significantly increased the yield of DCs, more than 90% of which were CD14-negative. Because, in the presence of lipopolysaccharide (LPS), monocytes that were CD14-positive expressed tumor necrosis factor α much more than DCs with low levels of CD14, it is important to decrease the numbers of CD14-positive cells in generating monocyte-derived DCs. With flow cytometry and real-time reverse-transcriptase-mediated polymerase chain reaction assays, we found that in canine immature DCs (iDCs) the expression of DLA class II molecules, CD1a, CD11c, CD40, and CD86 was high and the expression of CD80, CD83, and CD14 either low or negative. During maturation (stimulated by LPS), the expression of CD1a, CD40, CD83, and CD80 was upregulated. However, the expression of DLA class II molecules, CD11c, and CD86 was not increased in mature DCs. Incubating the iDCs with LPS decreased antigen uptake and increased the cells’ immunostimulatory capacity (assessed by the allogeneic mixed-lymphocyte reaction), indicating that LPS accelerates the functional maturation of DCs. This protocol may facilitate the use of DCs in cellular immunotherapy.
机译:为了治疗目的,大量树突状细胞(DC)是必不可少的。在这项研究中,我们使用了2%自体犬血浆,粒细胞/巨噬细胞集落刺激因子(GM-CSF),fms样酪氨酸激酶3配体(Flt3L)和白介素4(IL-4)来生成单核细胞衍生的DC。来自狗的外周血单核细胞。血浆通过极大地提高单核细胞粘附效率来丰富CD14阳性单核细胞,粘附细胞的比例从含10%胎牛血清的6.6%增至含2%自体犬血浆的15.3%。用人GM-CSF,犬IL-4和人Flt3L培养贴壁单核细胞6天,可显着提高DC的产量,其中90%以上的CD14阴性。因为在存在脂多糖(LPS)的情况下,CD14阳性的单核细胞表达的肿瘤坏死因子α远高于CD14含量低的DC,因此在产生单核细胞衍生的DC时减少CD14阳性细胞的数量很重要。 。通过流式细胞仪和实时逆转录酶介导的聚合酶链反应分析,我们发现在犬不成熟DC(iDC)中,DLA II类分子CD1a,CD11c,CD40和CD86的表达较高,而CD80的表达较高,CD83和CD14为低或负。在成熟期间(受LPS刺激),CD1a,CD40,CD83和CD80的表达上调。但是,在成熟的DC中DLA II类分子CD11c和CD86的表达没有增加。将iDC与LPS孵育会降低抗原摄取,并增加细胞的免疫刺激能力(由同种异体混合淋巴细胞反应评估),表明LPS会加速DC的功能成熟。该协议可以促进DC在细胞免疫治疗中的使用。

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