EA 4691 "Biomatériaux et Inflammation en site osseux" SFR CAP-Santé (FED 4231), Université Reims Champagne-Ardenne, Reims, France.
Front Immunol. 2018 Apr 4;9:632. doi: 10.3389/fimmu.2018.00632. eCollection 2018.
Osteoclasts (OCs), the bone-resorbing cells, play a key role in skeletal development and adult bone remodeling. They also participate in the pathogenesis of various bone disorders. One of the major technical difficulties in the generation of OCs, when working on human material, is the ability to achieve large differentiation of mature OCs from human peripheral blood mononuclear cells (PBMCs). Access to a standardized source of active OCs is needed to better analyze the roles of human OCs. The aim of this study was to develop a procedure yielding active and mature OCs from fresh human PBMCs. We therefore examined the differentiation of PBMCs to OCs in different cell culture media, using non-stripped and charcoal-stripped sera in the presence of macrophage colony-stimulating factor (M-CSF) and receptor activator of nuclear factor kappa-B ligand (RANKL). We also studied the effects of vitamin D3 in the differentiation level of PBMCs to OCs. Phalloidin-AlexaFluor488/DAPI fluorescent stainings and dentin resorption analyses by scanning electron microscopy were used to identify the number and size of differentiated OCs, number of nuclei per cell and resorption activities of OCs for a 7-14-21-day culture period. This study reports an optimized method for an efficient production of human active OCs from a low seeding density of PBMCs, after a 14-day culture period by using a medium containing fetal bovine charcoal-stripped serum in the presence of M-CSF and RANKL, and in the absence of vitamin D3.
破骨细胞(OCs)是一种骨吸收细胞,在骨骼发育和成人骨重塑中起着关键作用。它们还参与各种骨骼疾病的发病机制。在研究人类材料时,生成破骨细胞的主要技术难点之一是能够从人外周血单核细胞(PBMCs)中大量分化成熟的 OC。需要获得标准化的活性 OC 来源,以更好地分析人类 OC 的作用。本研究旨在开发一种从新鲜人 PBMC 中产生活性和成熟 OC 的方法。因此,我们在存在巨噬细胞集落刺激因子(M-CSF)和核因子 kappa-B 受体激活剂配体(RANKL)的情况下,在无剥脱和碳吸附血清的不同细胞培养基中检查了 PBMC 向 OC 的分化。我们还研究了维生素 D3 对 PBMC 向 OC 分化水平的影响。鬼笔环肽-AlexaFluor488/DAPI 荧光染色和扫描电子显微镜下牙本质吸收分析用于鉴定分化 OC 的数量和大小、细胞内核数和 OC 的吸收活性,培养期为 7-14-21 天。本研究报告了一种优化的方法,可从低接种密度的 PBMC 中在 14 天培养期后高效生产人活性 OC,方法是在含有胎牛碳吸附血清的培养基中使用 M-CSF 和 RANKL,并且不含维生素 D3。