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Phenotypic research on senile osteoporosis caused by SIRT6 deficiency

机译:SIRT6缺乏引起的老年性骨质疏松症的表型研究

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Osteoporosis is a serious public bone metabolic disease. However, the mechanisms underlying bone loss combined with ageing, which is known as senile osteoporosis, remains unknown. Here we show the detailed phenotype of this disease caused by SIRT6 knock out (KO) in mice. To the best of our knowledge, this is the first study to reveal that SIRT6 is expressed in both bone marrow stroma cells and bone-related cells in both mouse and human models, which suggests that SIRT6 is an important regulator in bone metabolism. SIRT6-KO mice exhibit a significant decrease in body weight and remarkable dwarfism. The skeleton of the SIRT6-KO mouse is deficient in cartilage and mineralized bone tissue. Moreover, the osteocalcin concentration in blood is lower, which suggests that bone mass is markedly lost. Besides, the tartrate-resistant acid phosphatase 5b (TRAP5b) concentration is much higher, which suggests that bone resorption is overactive. Both trabecular and cortical bones exhibit severe osteopenia, and the bone mineral density is decreased. Moreover, double-labelling analysis shows that bone formation is much slower. To determine whether SIRT6 directly regulates bone metabolism, we cultured primary bone marrow stromal cells for osteogenesis and osteoclastogenesis separately to avoid indirect interference in vivo responses such as inflammation. Taken together, these results show that SIRT6 can directly regulate osteoblast proliferation and differentiation, resulting in attenuation in mineralization. Furthermore, SIRT6 can directly regulate osteoclast differentiation and results in a higher number of small osteoclasts, which may be related to overactive bone resorption.
机译:骨质疏松症是一种严重的公共骨代谢疾病。但是,骨质流失与衰老相结合的机制(称为老年性骨质疏松症)仍然未知。在这里,我们显示了由SIRT6敲除(KO)在小鼠中引起的这种疾病的详细表型。据我们所知,这是第一项揭示SIRT6在小鼠和人类模型中均在骨髓基质细胞和骨相关细胞中表达的研究,这表明SIRT6是骨代谢的重要调节剂。 SIRT6-KO小鼠的体重显着降低,并且侏儒症明显。 SIRT6-KO小鼠的骨骼缺乏软骨和矿化的骨组织。此外,血液中的骨钙素浓度较低,这表明骨量明显丢失。此外,抗酒石酸酸性磷酸酶5b(TRAP5b)的浓度更高,这表明骨吸收过度活跃。小梁和皮质骨均表现出严重的骨质减少,并且骨矿物质密度降低。此外,双标签分析显示骨骼形成要慢得多。为了确定SIRT6是否直接调节骨代谢,我们分别培养了原代骨髓基质细胞用于成骨和破骨细胞形成,以避免间接干扰诸如炎症的体内反应。综上所述,这些结果表明SIRT6可以直接调节成骨细胞的增殖和分化,从而导致矿化作用减弱。此外,SIRT6可以直接调节破骨细胞的分化并导致更多的小破骨细胞,这可能与骨吸收过度活跃有关。

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