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Interleukin-1β lipocalin 2 and nitric oxide synthase 2 are mechano-responsive mediators of mouse and human endothelial cell-osteoblast crosstalk

机译:白介素-1β脂质运载蛋白2和一氧化氮合酶2是小鼠和人内皮细胞-成骨细胞串扰的机械响应介质

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摘要

Endothelial cells are spatially close to osteoblasts and regulate osteogenesis. Moreover, they are sensitive to mechanical stimuli, therefore we hypothesized that they are implicated in the regulation of bone metabolism during unloading. Conditioned media from endothelial cells (EC-CM) subjected to simulated microgravity (0.08g and 0.008g) increased osteoblast proliferation and decreased their differentiation compared to unit gravity (1g) EC-CM. Microgravity-EC-CM increased the expression of osteoblast Rankl and subsequent osteoclastogenesis, and induced the osteoblast de-differentiating factor, Lipocalin 2 (Lcn2), whose downregulation recovered osteoblast activity, decreased Rankl expression and reduced osteoclastogenesis. Microgravity-EC-CM enhanced osteoblast NO-Synthase2 (NOS2) and CycloOXygenase2 (COX2) expression. Inhibition of NOS2 or NO signaling reduced osteoblast proliferation and rescued their differentiation. Nuclear translocation of the Lcn2/NOS2 transcription factor, NF-κB, occurred in microgravity-EC-CM-treated osteoblasts and in microgravity-treated endothelial cells, alongside high expression of the NF-κB activator, IL-1β. IL-1β depletion and NF-κB inhibition reduced osteoblast proliferation and rescued differentiation. Lcn2 and NOS2 were incremented in ex vivo calvarias cultured in microgravity-EC-CM, and in vivo tibias and calvarias injected with microgravity-EC-CM. Furthermore, tibias of botulin A toxin-treated and tail-suspended mice, which featured unloading and decreased bone mass, showed higher expression of IL-1β, Lcn2 and Nos2, suggesting their pathophysiologic involvement in endothelial cell-osteoblast crosstalk.
机译:内皮细胞在空间上接近成骨细胞并调节成骨作用。此外,它们对机械刺激敏感,因此我们假设它们与卸载过程中骨代谢的调节有关。与单位重力(1g)EC-CM相比,来自内皮细胞(EC-CM)的条件培养基在模拟微重力(0.08g和0.008g)的作用下增加了成骨细胞的增殖,并降低了它们的分化。微重力EC-CM增加成骨细胞Rankl的表达和随后的破骨细胞形成,并诱导成骨细胞去分化因子Lipocalin 2(Lcn2),其下调恢复成骨细胞活性,降低Rankl表达并减少破骨细胞形成。微重力EC-CM增强了成骨细胞NO-合酶2(NOS2)和环氧合酶2(COX2)的表达。抑制NOS2或NO信号减少成骨细胞的增殖并挽救其分化。 Lcn2 / NOS2转录因子NF-κB的核易位发生在经微重力EC-CM处理的成骨细胞和经微重力处理的内皮细胞中,以及高表达的NF-κB激活因子IL-1β。 IL-1β耗竭和NF-κB抑制作用减少成骨细胞增殖并挽救分化。 Lcn2和NOS2在微重力EC-CM中培养的离体颅骨中增加,而在体内胫骨和颅骨中注射微重力EC-CM则增加。此外,以肉毒杆菌毒素A处理和尾部悬吊的小鼠的胫骨表现出负重且骨量减少,表现出较高的IL-1β,Lcn2和Nos2表达,表明它们的病理生理学参与了内皮细胞-成骨细胞的串扰。

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