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Caloric Restriction and the Adipokine Leptin alter the SDF-1 signaling axis in Bone Marrow and in Bone Marrow Derived Mesenchymal Stem Cells

机译:热量限制和脂肪因子瘦素改变骨髓和骨髓来源的间充质干细胞中的SDF-1信号轴

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摘要

Growing evidence suggests that the chemokine stromal cell-derived factor-1 (SDF-1) is essential in regulating bone marrow (BM) derived mesenchymal stromal/stem cell (BMSC) survival, and differentiation to either a pro-osteogenic, or pro-adipogenic fate. This study investigates the effects of caloric restriction (CR) and leptin on the SDF-1/CXCR4 axis in bone and BM tissues in the context of age-associated bone loss. For in vivo studies, we collected bone, BM cells and BM interstitial fluid from 12 and 20 month-old C57Bl6 mice fed ad-libitum (AL), and 20 month-old mice on long-term CR with, or without, intraperitoneal injection of leptin for 10 days (10mg/kg). To mimic conditions of CR in vitro, 18 month murine BMSCs were treated with 1) control (Ctrl): normal proliferation medium, 2) Nutrient Restriction (NR): low glucose, low serum medium, or 3) NR+leptin: NR medium + 100 ng/ml Leptin for 6-48 h. In BMSCs both protein and mRNA expression of SDF-1 and CXCR4 were increased by CR and CR + leptin. In contrast, the alternate SDF-1 receptor CXCR7 was decreased, suggesting a nutrient signaling mediated change in SDF-1 axis signaling in BMSCs. However, in bone SDF-1, CXCR4 and 7 gene expression increase with age and this is reversed with CR, while addition of leptin returns this to the “aged” level. Histologically bone formation was lower in the calorically restricted mice and BM adipogenesis increased, both effects were reversed with the 10 day leptin treatment. This suggests that in bone CR and leptin alter the nutrient signaling pathways in different ways to affect the local action of the osteogenic cytokine SDF-1. Studies focusing on the molecular interaction between nutrient signaling by CR, leptin and SDF-1 axis may help to address age-related musculoskeletal changes.
机译:越来越多的证据表明,趋化因子基质细胞衍生因子1(SDF-1)在调节骨髓(BM)衍生的间充质基质/干细胞(BMSC)存活以及分化为促成骨或促成骨细胞中至关重要。成脂命运。这项研究调查了与年龄相关的骨质流失的背景下,热量限制(CR)和瘦素对骨骼和BM组织中SDF-1 / CXCR4轴的影响。为了进行体内研究,我们从接受自由喂养(AL)的12和20个月大的C57Bl6小鼠以及接受或不接受腹膜内注射的长期CR的20个月大的小鼠中收集了骨,BM细胞和BM间隙液瘦素10天(10mg / kg)。为了模拟体外CR的条件,用1)对照(Ctrl):正常增殖培养基,2)营养限制(NR):低葡萄糖,低血清培养基,或3)NR +瘦素:NR培养基处理18个月的鼠BMSC。 + 100 ng / ml瘦素持续6-48小时。在骨髓间充质干细胞中,SDF-1和CXCR4的蛋白质和mRNA表达均通过CR和CR +瘦素增加。相反,备用SDF-1受体CXCR7减少,表明营养信号介导的BMSCs中SDF-1轴信号的变化。然而,在骨SDF-1中,CXCR4和7基因表达随年龄增长而增加,而CR则逆转,而添加瘦素可使其恢复至“衰老”水平。组织学上,在热量受限的小鼠中骨形成较低,而BM脂肪形成增加,这两种作用在10天的瘦素治疗中均被逆转。这表明在骨骼中,CR和瘦素以不同的方式改变营养信号传导途径,从而影响成骨细胞因子SDF-1的局部作用。专注于CR,瘦素和SDF-1轴营养信号之间的分子相互作用的研究可能有助于解决与年龄有关的肌肉骨骼变化。

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