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Heavy Metal Lead Exposure Osteoporotic-like Phenotype in an Animal Model and Depression of Wnt Signaling

机译:重金属铅暴露动物模型中的骨质疏松样表型和Wnt信号的压抑。

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摘要

Background: Exposure to lead (Pb) from environmental and industrial sources remains an overlooked serious public health risk. Elucidating the effect of Pb on bone cell function is therefore critical for understanding its risk associated with diseases of low bone mass.Objectives: We tested the hypothesis that Pb negatively affects bone mass. We also assessed the underlying mechanisms of Pb on bone signaling pathways.Methods: We used a model of low-level Pb exposure in a rodent beginning before conception and continuing over 18 months. We characterized the effect of Pb on bone quality using dual-energy X-ray absorptiometry (DXA), micro-computed tomography, Raman spectroscopy, and histology. We assessed the effect of Pb on bone and adipocyte formation by mineral deposition, lipid droplet formation, and Western blot and RNA analysis.Results: Pb-exposed animals had decreased bone mass that resulted in bones that were more susceptible to fracture. Pb decreased osteoblastic cell number leading to a depression of bone formation. Accompanying this, Pb exposure elevated sclerostin protein levels in the skeleton, and correspondingly reduced levels of β-catenin and Runx2 in stromal precursor cells. Pb also increased skeletal expression of peroxisome proliferator-activated receptor-γ (PPAR-γ). These results indicate a shift in mesenchymal differentiation wherein Pb promoted enhanced adipogenesis and decreased osteoblastogenesis. Substantial differences in bone marrow composition were observed, highlighted by an increase in adipocytes.Conclusions: The disruption Pb has on bone mass and bone homeostasis is principally explained by inhibition of the Wnt/β-catenin pathway, which may provide a molecular basis for novel therapeutic strategies to combat Pb-induced bone pathologies.
机译:背景:从环境和工业来源接触铅(Pb)仍然是被忽视的严重公共卫生风险。因此,阐明铅对骨细胞功能的影响对于理解其与低骨量疾病相关的风险至关重要。目的:我们检验了铅对骨量产生负面影响的假设。我们还评估了Pb在骨骼信号通路中的潜在机制。方法:我们在啮齿动物中使用了低水平Pb暴露模型,该模型始于受孕前并持续18个月以上。我们使用双能X射线吸收法(DXA),计算机断层扫描,拉曼光谱和组织学来表征铅对骨质量的影响。我们通过矿物质沉积,脂质滴形成以及Western印迹和RNA分析评估了Pb对骨骼和脂肪细胞形成的影响。结果:暴露于Pb的动物的骨量减少,导致骨骼更容易骨折。铅减少成骨细胞数量,导致骨形成降低。随之而来的是,Pb暴露会增加骨骼中硬化蛋白的水平,并相应降低基质前体细胞中β-catenin和Runx2的水平。铅还增加了过氧化物酶体增殖物激活受体-γ(PPAR-γ)的骨骼表达。这些结果表明间质分化的转变,其中铅促进增强的脂肪生成和减少的成骨细胞生成。结论:铅对骨量和骨稳态的破坏主要是通过抑制Wnt /β-catenin途径来解释的,这表明Pb对骨质量和骨稳态的破坏可能是其新的分子基础。对抗铅引起的骨病的治疗策略。

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