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首页> 外文期刊>Annals of the New York Academy of Sciences >Osteogenic Regulation of Vascular Calcification
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Osteogenic Regulation of Vascular Calcification

机译:血管钙化的成骨调节

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摘要

Vascular calcification increasingly afflicts our aging and dys-metabolic population, predisposing patients to cardiovascular mortality and lower extremity amputation. Active osteogenic processes are evident in most histoanatomic variants, including elaboration of BMP2-Msx2 signals required for craniofacial bone formation. We developed an animal model of diet-induced diabetes, dyslipidemia, and vascular calcification. High-fat diets promote vascular calcification in male low-density lipoprotein receptor (LDLR)-deficient mice, with concomitant upreg-ulation of aortic BMP2 and Msx2 gene expression. We wished to test if Msx2 exerts pro-calcific actions during vascular calcification, as it does in craniofacial bone. We studied CMV-Msx2Tg+;LDLR+ transgenic mice (C57Bl/6), a model previously demonstrated to recapitulate features of Msx2 signaling during craniosynostosis. After 16 weeks of fatty diets, vascular calcification was studied in CMV-Msx2Tg+ versus nontransgenic sibs. Only CMV-Msx2Tg+ mice fed high-fat diets exhibited vascular calcium accumulation by alizarin red staining, noted in the tunica media of coronary arteries and the aorta. Gene expression studies revealed that while Msx2 was expressed primarily in adventitial cells, alkaline phos-phatase (ALP) expression and calcification occurred primarily in the tunica media. Msx2 promotes the elaboration of a pro-osteogenic milieu by upregulating expression of Wingless type (Wnt) ligands while down-regulating the canonical antagonist, Dickkopf (Dkk1). Msx2 upregulates aortic Wnt signaling in vivo, revealed by the analysis of TOPGAL+ (Wnt reporter) versus CMV-Msx2Tg+; TOPGAL+ mice. Aortic Msx2 exerts pro-osteogenic signaling in vivo and in vitro, mediated in part via the enhancement of paracrine Wnt signaling. Strategies that selectively inhibit aortic Msx2-Wnt cascades may help diminish the initiation and progression of diabetic vascular disease.
机译:血管钙化越来越多地困扰着我们的老龄化和代谢不良的人群,使患者更容易罹患心血管疾病并导致下肢截肢。在大多数组织解剖学变异中,活跃的成骨过程都很明显,包括详细说明颅面骨形成所需的BMP2-Msx2信号。我们开发了饮食诱发的糖尿病,血脂异常和血管钙化的动物模型。高脂饮食可促进雄性低密度脂蛋白受体(LDLR)缺陷小鼠的血管钙化,并伴随主动脉BMP2和Msx2基因表达的上调。我们希望测试Msx2是否像在颅面骨中一样在血管钙化过程中发挥钙化作用。我们研究了CMV-Msx2Tg +; LDLR +转基因小鼠(C57Bl / 6),该模型先前已证明可在颅突神经增生过程中概括Msx2信号转导的特征。脂肪饮食16周后,研究了CMV-Msx2Tg +与非转基因同胞之间的血管钙化。只有高脂饮食的CMV-Msx2Tg +小鼠通过茜素红染色显示血管钙蓄积,这在冠状动脉和主动脉的中膜介质中可见。基因表达研究表明,虽然Msx2主要在外膜细胞中表达,但碱性磷酸酶(ALP)的表达和钙化主要在中膜介质中发生。 Msx2通过上调Wingless型(Wnt)配体的表达,同时下调经典的拮抗剂Dickkopf(Dkk1),来促进成骨环境的形成。通过TOPGAL +(Wnt报告基因)与CMV-Msx2Tg +的分析发现,Msx2在体内上调了主动脉Wnt信号。 TOPGAL +小鼠。主动脉Msx2在体内和体外发挥促成骨信号,部分通过旁分泌Wnt信号的增强来介导。选择性抑制主动脉Msx2-Wnt级联的策略可能有助于减少糖尿病性血管疾病的发生和发展。

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