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Circling behavior developed in Dmp1 null mice is due to bone defects in the vestibular apparatus

机译:Dmp1 null小鼠中出现的盘旋行为是由于前庭装置中的骨缺损

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With age, there is a progressive loss of body balance function. Yet, the potential influence of osteoporosis on body balance is largely unknown. Dentin matrix protein 1 (DMP1) is highly expressed in bone and required for phosphate homeostasis and mineralization. Dmp1 null mice display striking defects in bone structure. In this study we reported circling behavior and hyper reaction to touching in Dmp1 null mice. Our histology, tartrate resistant acid phosphatase (TRAP) staining and μCT data showed dramatic changes, such as an expansion of poorly mineralized matrices, in the Dmp1 null porous bony structure in the vestibular apparatus. The targeted re-expression of DMP1 in the Dmp1 null bone fully rescued not only the bone phenotype, but also circling behavior and hyper reaction. Furthermore, X-gal stain and DMP1 immunohistochemistry assay showed that DMP1 was not expressed in neuron cells or balance related cells in the inner ear, suggesting that a defect in the bony labyrinth of the internal ear is indirectly responsible for the circling behavior and/or hyper reaction to touching. Finally, discovery of DMP1 lacZ signal in pericyte-like cells may suggest a new function of DMP1 in angiogenesis.
机译:随着年龄的增长,身体平衡功能逐渐丧失。然而,骨质疏松症对身体平衡的潜在影响在很大程度上尚不清楚。牙本质基质蛋白1(DMP1)在骨骼中高度表达,是磷酸盐体内稳态和矿化所必需的。 Dmp1空小鼠显示出明显的骨骼结构缺陷。在这项研究中,我们报道了Dmp1 null小鼠的盘旋行为和对触摸的过度反应。我们的组织学,抗酒石酸酸性磷酸酶(TRAP)染色和μCT数据显示,前庭装置Dmp1无效多孔骨结构中发生了显着变化,例如矿化度差的基质膨胀。 Dmp1空骨中DMP1的靶向重新表达不仅可以完全挽救骨表型,还可以挽救周围的行为和过度反应。此外,X-gal染色和DMP1免疫组织化学分析表明,DMP1在内耳的神经元细胞或平衡相关细胞中未表达,表明内耳的骨迷路缺损是造成循环行为和/或间接原因的原因。对触摸的反应过度。最后,在周细胞样细胞中发现DMP1 lacZ信号可能表明DMP1在血管生成中具有新功能。

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