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首页> 外文期刊>Scientific reports. >Substance P modulates bone remodeling properties of murine osteoblasts and osteoclasts
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Substance P modulates bone remodeling properties of murine osteoblasts and osteoclasts

机译:物质p调节鼠骨盆和骨壳细胞的骨重塑性能

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Clinical observations suggest neuronal control of bone remodeling. Sensory nerve fibers innervating bone, bone marrow and periosteum signal via neurotransmitters including substance P (SP). In previous studies we observed impaired biomechanical and structural bone parameters in tachykinin (Tac) 1-deficient mice lacking SP. Here, we aim to specify effects of SP on metabolic parameters of bone marrow macrophage (BMM)/osteoclast cultures and osteoblasts isolated from Tac1-deficient and wildtype (WT) mice. We demonstrated endogenous SP production and secretion in WT bone cells. Absence of SP reduced bone resorption rate, as we found reduced numbers of precursor cells (BMM) and multinucleated osteoclasts and measured reduced cathepsin K activity in Tac1?/? BMM/osteoclast cultures. However, this might partly be compensated by reduced apoptosis rate and increased fusion potential of Tac1?/? precursor cells to enlarged “super” osteoclasts. Contrarily, increased ALP enzyme activity and apoptosis rate during early osteoblast differentiation accelerated osteogenesis and cell death in the absence of SP together with reduced ALP activity of Tac1?/? osteoblasts during late osteogenic differentiation resulting in reduced bone formation at later stages. Therefore, we suggest that absence of SP presumably results in a slight reduction of bone resorption rate but concomitantly in a critical reduction of bone formation and mineralization rate.
机译:临床观察表明骨重塑的神经元控制。感觉神经纤维通过包括物质P(SP)的神经递质接管骨,骨髓和骨膜信号。在先前的研究中,我们观察到缺乏SP的特异肽(TAC)1缺乏小鼠的生物力学和结构骨参数受损。在此,我们的目的是指定SP对从TAC1缺陷和野生型(WT)小鼠中分离的骨髓巨噬细胞(BMM)/骨胶培养物和成骨细胞的代谢参数的影响。我们在WT骨细胞中展示了内源性SP的生产和分泌物。没有SP降低的骨吸收率,因为我们发现了减少的前体细胞(BMM)和多核骨质体,并测量了TAC1中的表达蛋白k活性的减少?/? BMM /骨骨糖培养物。但是,这可能会通过降低的凋亡率和TAC1的融合潜力增加来补偿?/?前体细胞扩大“超级”骨酸溶胶。具体而言,早期成骨细胞分化期间的ALP酶活性和凋亡率加剧了骨质发生和细胞死亡,在没有SP的情况下与TAC1的降低的ALP活性相同?/?在后期成骨分化期间的成骨细胞导致后期骨形成减少。因此,我们表明,没有SP可能导致骨吸收率轻微降低,但同时伴随着骨形成和矿化率的临界降低。

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