高脂肪饮食小鼠与达斡尔地松鼠在自然冬眠前增肥后的骨代谢和蛋白质表达差异

Xuli Gao, Shenyang Shen, Qiaohua Niu, Weilan Miao, Yuting Han, Ziwei Hao, Ning An, Yingyu Yang, Yu Zhang, Han Zhang, Kenneth B Storey, Hui Chang
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摘要

本研究比较了非冬眠动物(小鼠)过量脂肪摄入引起的病理性肥胖与冬眠动物(地松鼠)因冬眠前增肥引起的健康肥胖对骨代谢和形态学的影响。采用高脂饲料建立昆明小鼠病理性肥胖模型(OB组)。以冬眠前自然增肥的达斡尔地松鼠(PRE组)为健康肥胖模型。采用微计算机断层扫描(micro-CT)和三点弯曲试验来测定骨的微观结构和力学性能。Western blots检测骨代谢相关蛋白(runt相关转录因子2 (RunX2)、骨钙素(OCN)、碱性磷酸酶(ALP)、骨保护素(OPG)、核因子-‍κB配体受体激活剂(RANKL)、组织蛋白酶K、基质金属肽酶9 (MMP9)、补片蛋白同源物1 (Ptch1)、磷酸化β‍-‍catenin (P‍-‍β‍-‍catenin)和糖原合成酶激酶3β (GSK-3β))的表达水平。与对照组相比,OB小鼠无明显骨质流失,股骨刚度明显增加。与夏季活动松鼠相比,PRE组松鼠骨形成增强,但力学性能没有变化。在OB小鼠中,western blot结果显示,除RunX2、OPG和Ptch1外,其余蛋白的表达水平均显著升高。除OCN和Ptch1显著降低外,其余蛋白的表达量均显著增加,P‍-‍β‍-‍catenin和OPG的表达量没有变化。综上所述,对于非冬眠小鼠,适度肥胖对骨骼具有一定的保护作用,表现为双向调节,既增加骨质流失,又增加骨形成。对于冬眠前的地松鼠来说,冬眠前获得的健康肥胖对骨骼的微观结构有积极的影响,也增强了骨形成、骨吸收和Wnt信号相关蛋白的表达水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential bone metabolism and protein expression in mice fed a high-fat diet versus Daurian ground squirrels following natural pre-hibernation fattening.

This study compared the effects on bone metabolism and morphology of pathological obesity induced by excessive fat intake in a non-hibernator (mice) versus healthy obesity due to pre-hibernation fattening in a hibernator (ground squirrels). Kunming mice were fed a high-fat diet to provide a model of pathological obesity (OB group). Daurian ground squirrels fattened naturally in their pre-hibernation season (PRE group) were used as a healthy obesity model. Micro-computed tomography (micro-CT) and three-point bending tests were used to determine the microstructure and mechanical properties of bone. Western blots were used to analyze protein expression levels related to bone metabolism (Runt-related transcription factor 2 (RunX2), osteocalcin (OCN), alkaline phosphatase (ALP), osteoprotegerin (OPG), receptor activator of nuclear factor-‍κB ligand (RANKL), cathepsin K, matrix metallopeptidase 9 (MMP9), patched protein homolog 1 (Ptch1), phosphorylated β‍-‍catenin (P‍-‍β‍-‍catenin), and glycogen synthase kinase-3β (GSK-3β)). Compared with controls, there was no obvious bone loss in the OB mice, and the stiffness of the femur was increased significantly. Compared with summer active squirrels, bone formation was enhanced but the mechanical properties did not change in the PRE group squirrels. In OB mice, western blots showed significantly increased expression levels of all proteins except RunX2, OPG, and Ptch1. PRE ground squirrels showed significantly increased expression of most proteins except OCN and Ptch1, which decreased significantly, and P‍-‍β‍-‍catenin and OPG, which did not change. In conclusion, for non-hibernating mice, moderate obesity had a certain protective effect on bones, demonstrating two-way regulation, increasing both bone loss and bone formation. For pre-hibernating ground squirrels, the healthy obesity acquired before hibernation had a positive effect on the microstructure of bones, and also enhanced the expression levels of proteins related to bone formation, bone resorption, and Wnt signaling.

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