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首页> 外文期刊>Journal of Immunological Methods >Methods of in vitro macrophage maturation confer variable inflammatory responses in association with altered expression of cell surface dectin-1.
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Methods of in vitro macrophage maturation confer variable inflammatory responses in association with altered expression of cell surface dectin-1.

机译:体外巨噬细胞成熟的方法赋予可变的炎症反应与细胞表面dectin-1表达改变有关。

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Macrophage differentiation and polarization occur in vivo under the influence of the localized cytokine milieu. In vitro studies frequently rely on cellular differentiation in culture; hence, unrecognized variables could have a large influence on the observed cellular phenotype. We measured macrophage in vitro responses to fungal ligands (Aspergillus germ tubes and zymosan), focusing on the degree to which culture conditions impact stimulatory responses through the C-type lectin receptor, dectin-1, which is involved in both MyD88-dependent and MyD88-independent signaling in response to fungal beta1,3 glucan. Results show that macrophages harvested from different murine anatomic sites exhibit varying degrees of MyD88-dependence, with bone marrow-derived macrophages (BMDM) cultured in L929 conditioned medium (L929 CM) exhibiting the largest degree of MyD88-independence. After differentiation in recombinant MCSF (rMCSF), MyD88(-/-) macrophages have decreased surface expression of dectin-1 compared to wildtype macrophages; however, culture in L929CM results in higher, and equivalent expression of dectin-1 on both MyD88(-/-) and wild type BMDM. In addition to MCSF, L929CM contains high amounts of VEGF, MCP-1, KC, and MIG, and low amounts of FGF-beta, Eotaxin, IL-10, IL-9, and IL-12. Thus, methods of in vitro maturation dictate variable inflammatory responses by MyD88(-/-) macrophages in association with altered expression of cell surface dectin-1. L929 conditioned medium is a suboptimal alternative to rMCSF for in vitro studies. As MyD88(-/-) BMDM exhibit low surface expression of dectin-1 after in vitro culture in rMCSF, differences in dectin-1 dependent, MyD88-independent signaling may account for some of the phenotypes currently ascribed to MyD88-deficiency alone.
机译:在局部细胞因子环境的影响下,体内发生巨噬细胞分化和极化。体外研究通常依赖于培养中的细胞分化。因此,无法识别的变量可能对观察到的细胞表型有很大的影响。我们测量了巨噬细胞对真菌配体(曲霉胚芽管和酵母聚糖)的体外反应,重点研究了培养条件通过C型凝集素受体dectin-1(与MyD88依赖型和MyD88都有关系)影响刺激反应的程度真菌β1,3葡聚糖响应的非独立信号。结果显示,从不同鼠类解剖部位采集的巨噬细胞表现出不同程度的MyD88依赖性,而在L929条件培养基(L929 CM)中培养的骨髓衍生巨噬细胞(BMDM)表现出最大程度的MyD88独立性。在重组MCSF(rMCSF)中分化后,与野生型巨噬细胞相比,MyD88(-/-)巨噬细胞的dectin-1表面表达降低了。但是,L929CM中的培养会导致MyD88(-/-)和野生型BMDM上dectin-1的表达更高且相等。除了MCSF,L929CM还包含大量的VEGF,MCP-1,KC和MIG,以及少量的FGF-β,嗜酸性粒细胞趋化因子,IL-10,IL-9和IL-12。因此,体外成熟方法指示MyD88(-/-)巨噬细胞与细胞表面dectin-1表达改变相关的可变炎症反应。对于体外研究,L929条件培养基是rMCSF的次优替代品。由于MyD88(-/-)BMDM在rMCSF中进行体外培养后显示出低表达的dectin-1,因此dectin-1依赖性,MyD88无关的信号传导差异可能解释了目前仅归因于MyD88缺乏的某些表型。

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