首页> 美国卫生研究院文献>British Journal of Experimental Pathology >Parathyroid hormone induces bone resorption in human peripheral blood mononuclear cells.
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Parathyroid hormone induces bone resorption in human peripheral blood mononuclear cells.

机译:甲状旁腺激素诱导人外周血单核细胞中的骨吸收。

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摘要

Osteoclasts are known to derive from a macrophage colony-stimulating factor (M-CSF)-dependent precursor shared with macrophages. Cells capable of forming osteoclasts are present in peripheral blood. We characterized this population by incubating human peripheral blood mononuclear cells (PBMCs) with osteoclast-inductive UMR 106 cells, human macrophage colony stimulating factor (hM-CSF) and parathyroid hormone (PTH) or 1.25(OH)2 vitamin D3 on slices of devitalised cortical bone. We found that PBMCs were capable of substantial bone resorption, to levels comparable to those of haemopoietic tissue. Cells plated at very low densities and screened for the presence or absence of excavations revealed a linear relationship (r = 0.994) between the number of cells plated and the number of excavations formed. The limiting dilution analysis suggested that 1 in every 300-600 plated cells (0.15-0.3% of the PBMC population) had the capacity to resorb bone. The precursor was found in the rapidly adherent fraction, and typically generated very small numbers of excavations, suggesting that it was a relatively mature cell type. Co-cultures of PBMCs with UMR 106 cells would not generate osteoclasts without PTH/1.25(OH)2 vitamin D3, even with M-CSF, indicating that osteoclast-induction by stromal cells is not attributable to hormonal induction of M-CSF in UMR 106 cells, but that PTH induces some other activity, necessary for osteoclast but not macrophage formation, in UMR 106 cells. Osteoclasts did not form if PTH was omitted in the first few days of the culture period. Thus, osteoclasts appear to form not from cells committed to macrophage differentiation, but from a discrete subpopulation of relatively mature bipotential or osteoclast-committed precursors which, in the absence of an osteoclast-inductive stimulus, become irreversibly lost to the osteoclast lineage.
机译:已知破骨细胞源自与巨噬细胞共享的巨噬细胞集落刺激因子(M-CSF)依赖性前体。能够形成破骨细胞的细胞存在于外周血中。我们通过将破骨细胞诱导性UMR 106细胞,人巨噬细胞集落刺激因子(hM-CSF)和甲状旁腺激素(PTH)或1.25(OH)2维生素D3与破骨细胞诱导的人外周血单个核细胞(PBMC)一起孵育来表征该人群皮质骨。我们发现PBMCs能够大量吸收骨质,其水平与造血组织相当。以极低密度铺板的细胞并筛选是否存在挖掘物,发现铺板的细胞数与形成的挖掘物数目之间存在线性关系(r = 0.994)。极限稀释分析表明,每300-600个铺板细胞中有1个(PBMC群体的0.15-0.3%)具有吸收骨的能力。发现该前体存在于快速附着的部分中,通常会产生非常少量的挖掘,表明它是相对成熟的细胞类型。 PBMC与UMR 106细胞的共培养即使没有M-CSF也不会产生没有PTH / 1.25(OH)2维生素D3的破骨细胞,这表明基质细胞诱导破骨细胞并不归因于UMR中激素的M-CSF诱导106细胞,但是PTH会诱导UMR 106细胞中破骨细胞形成但不是巨噬细胞形成所必需的其他活性。如果在培养期的前几天省略PTH,则不会形成破骨细胞。因此,破骨细胞似乎不是由致力于巨噬细胞分化的细胞形成的,而是由相对成熟的双能或破骨细胞组成的前体的离散亚群形成的,在没有破骨细胞诱导性刺激的情况下,破骨细胞会不可逆地丢失于破骨细胞谱系。

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