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首页> 外文期刊>Bone Reports >PI3K activation increases SDF-1 production and number of osteoclast precursors, and enhances SDF-1-mediated osteoclast precursor migration
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PI3K activation increases SDF-1 production and number of osteoclast precursors, and enhances SDF-1-mediated osteoclast precursor migration

机译:PI3K激活可增加SDF-1的产量和破骨细胞前体的数量,并增强SDF-1介导的破骨细胞前体的迁移

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Our previous studies showed that in a mouse model in which PI3K-AKT activation was increased (YF mice), osteoclast numbers and levels of SDF-1, a chemokine, were augmented. The purpose of this study was to delineate the role of PI3K activation in regulating SDF-1 production and examine whether SDF-1 can stimulate differentiation and/or migration of osteoclast precursors. Using flow cytometric analysis, we demonstrated that compared to wild type mice, bone marrow of YF mice had increased numbers of CXCL12 abundant reticular (CAR) cells, that are a major cell type responsible for producing SDF-1. At the molecular level, transcription factor specificity protein 1 (Sp1) induced an increased transcription of SDF-1 that was dependent on PI3K/AKT activation. YF mice also contained an increased number of osteoclast precursors, in which expression of CXCR4, a major receptor for SDF-1, was increased. SDF-1 did not induce differentiation of osteoclast precursors into mature osteoclasts; compared to cells derived from WT mice, cells obtained from YF mice were more responsive toSDF-1. In conclusion, we demonstrate that PI3K activation resulted in increased SDF-1, increased the number of osteoclast precursors, and enhanced osteoclast precursor migration in response to SDF-1.
机译:我们以前的研究表明,在PI3K-AKT激活增加的小鼠模型(YF小鼠)中,破骨细胞数量和趋化因子SDF-1的水平增加。这项研究的目的是描述PI3K激活在调节SDF-1产生中的作用,并研究SDF-1是否可以刺激破骨细胞前体的分化和/或迁移。使用流式细胞仪分析,我们证明了与野生型小鼠相比,YF小鼠的骨髓中CXCL12丰富的网状(CAR)细胞数量增加,这是负责产生SDF-1的主要细胞类型。在分子水平上,转录因子特异性蛋白1(Sp1)诱导依赖于PI3K / AKT激活的SDF-1转录增加。 YF小鼠还包含增加数量的破骨细胞前体,其中SDF-1的主要受体CXCR4的表达增加。 SDF-1不会诱导破骨细胞前体分化为成熟的破骨细胞。与从WT小鼠衍生的细胞相比,从YF小鼠获得的细胞对SDF-1的反应更强。总之,我们证明PI3K激活导致增加的SDF-1,增加的破骨细胞前体数量和增强的破骨细胞前体迁移以响应SDF-1。

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