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Osteoblast-Specific Overexpression of Human WNT16 Increases Both Cortical and Trabecular Bone Mass and Structure in Mice

机译:人WNT16的成骨细胞特异性过表达增加小鼠的皮质和小梁骨质量和结构

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摘要

Previous genome-wide association studies have identified common variants in genes associated with bone mineral density (BMD) and risk of fracture. Recently, we identified single nucleotide polymorphisms (SNPs) in Wingless-type mouse mammary tumor virus integration site (WNT)16 that were associated with peak BMD in premenopausal women. To further identify the role of Wnt16 in bone mass regulation, we created transgenic (TG) mice overexpressing human WNT16 in osteoblasts. We compared bone phenotypes, serum biochemistry, gene expression, and dynamic bone histomorphometry between TG and wild-type (WT) mice. Compared with WT mice, WNT16-TG mice exhibited significantly higher whole-body areal BMD and bone mineral content (BMC) at 6 and 12 weeks of age in both male and female. Microcomputer tomography analysis of trabecular bone at distal femur revealed 3-fold (male) and 14-fold (female) higher bone volume/tissue volume (BV/TV), and significantly higher trabecular number and trabecular thickness but lower trabecular separation in TG mice compared with WT littermates in both sexes. The cortical bone at femur midshaft also displayed significantly greater bone area/total area and cortical thickness in the TG mice in both sexes. Serum biochemistry analysis showed that male TG mice had higher serum alkaline phosphatase, osteocalcin, osteoprotegerin (OPG), OPG to receptor activator of NF-kB ligand (tumor necrosis family ligand superfamily, number 11; RANKL) ratio as compared with WT mice. Also, lower carboxy-terminal collagen cross-link (CTX) to tartrate-resistant acid phosphatase 5, isoform b (TRAPc5b) ratio was observed in TG mice compared with WT littermates in both male and female. Histomorphometry data demonstrated that both male and female TG mice had significantly higher cortical and trabecular mineralizing surface/bone surface and bone formation rate compared with sex-matched WT mice. Gene expression analysis demonstrated higher expression of Alp, OC, Opg, and Opg to Rankl ratio in bone tissue in the TG mice compared with WT littermates. Our data indicate that WNT16 is critical for positive regulation of both cortical and trabecular bone mass and structure and that this molecule might be targeted for therapeutic interventions to treat osteoporosis.
机译:先前的全基因组关联研究已经确定了与骨矿物质密度(BMD)和骨折风险相关的常见基因变异。最近,我们在绝经前妇女中发现了Wingless型小鼠乳腺肿瘤病毒整合位点(WNT)16中的单核苷酸多态性(SNP),该位点与BMD峰值有关。为了进一步确定Wnt16在骨量调节中的作用,我们创建了在成骨细胞中过表达人WNT16的转基因(TG)小鼠。我们比较了TG和野生型(WT)小鼠之间的骨表型,血清生化,基因表达和动态骨组织形态学。与WT小鼠相比,WNT16-TG小鼠在雄性和雌性中在6周和12周龄时均表现出明显较高的全身BMD和骨矿物质含量(BMC)。股骨远端小梁骨的计算机断层扫描分析显示,TG小鼠的骨体积/组织体积(BV / TV)高3倍(雄性)和14倍(雌性),并且小梁数目和小梁厚度明显更高,但小梁分离度更低与WT同窝幼仔相比。在两性的TG小鼠中,股骨中轴处的皮质骨还显示出明显更大的骨面积/总面积和皮质厚度。血清生化分析显示,与野生型WT小鼠相比,雄性TG小鼠的血清碱性磷酸酶,骨钙素,骨保护素(OPG),OPG与NF-kB配体(肿瘤坏死家族配体超家族,第11号; RANKL)受体激活剂的比率更高。同样,在雄性和雌性小鼠中,与野生型同窝小鼠相比,在TG小鼠中观察到较低的羧基端胶原交联键(CTX)与抗酒石酸酸性磷酸酶5的同工型b(TRAPc5b)比率。组织形态计量学数据表明,与性别匹配的WT小鼠相比,雄性和雌性TG小鼠均具有明显更高的皮质和小梁矿化表面/骨表面和骨形成速率。基因表达分析表明,与野生同窝小鼠相比,TG小鼠骨骼组织中Alp,OC,Opg和Opg与Rankl的比率更高。我们的数据表明,WNT16对于积极调节皮质和小梁的骨质量和结构至关重要,并且该分子可能被靶向用于治疗骨质疏松症的治疗性干预。

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