Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Sciences, Northwest University, Ministry of Education, 229# North Taibai Road, Xi'an, 710069, People's Republic of China.
Department of Aerospace Physiology, Key Laboratory of Aerospace Medicine of Ministry of Education, Air Force Medical University, Xi'an, 710032, China.
J Comp Physiol B. 2023 Jun;193(3):329-350. doi: 10.1007/s00360-023-01482-9. Epub 2023 Mar 29.
Loss of bone mass can occur in mammals after prolonged disuse but the situation for hibernators that are in a state of torpor for many months of the year is not yet fully understood. The present study assesses the bone remodeling mechanisms present in Daurian ground squirrels (Spermophilus dauricus) during hibernation as compared with a model of hindlimb disuse. Differences in microstructure, mechanical properties, bone remodeling-related proteins (Runx2, OCN, ALP, RANKL, CTK and MMP-9) and key proteins of Wnt/β-catenin signaling pathway (GSK-3β and phospho-β-catenin) were evaluated in ground squirrels under 3 conditions: summer active (SA) vs. hibernation (HIB) vs. hindlimb unloaded (HLU). The results indicated that the body weight in HLU ground squirrels was lower than the SA group, and the middle tibia diameter in the HLU group was lower than that in SA and HIB groups. The thickness of cortical and trabecular bone in femurs from HLU ground squirrels was lower than in SA and HIB groups. Most parameters of the tibia in the HLU group were lower than those in SA and HIB groups, which indicated cortical bone loss in ground squirrels. Moreover, our data showed that the changes in microscopic parameters in the femur were more obvious than those in the tibia in HLU and HIB ground squirrels. The levels of Runx2 and ALP were lower in HLU ground squirrels than SA and HIB groups. The protein levels of OCN were unchanged in the three groups, but the protein levels of ALP were lower in the HLU group than in SA and HIB groups. RANKL, CTK and MMP-9 protein levels were significantly decreased in tibia of HLU ground squirrels as compared with SA and HIB groups. In addition, the protein expression levels of RANKL, CTK and MMP-9 showed no statistical difference between SA and HIB ground squirrels. Thus, the mechanisms involved in the balance between bone formation and resorption in hibernating and hindlimb unloading ground squirrels may be different. The present study showed that in femur, the Wnt signaling pathway was inhibited, the protein level of GSK-3β was increased, and the protein expression of phospho-β-catenin was decreased in the HIB group as compared with the SA group, which indicates that the Wnt signaling pathway has a great influence on the femur of the HIB group. In conclusion, the natural anti-osteoporosis properties of Daurian ground squirrels are seasonal. The squirrels do not experience bone loss when they are inactive for a long time during hibernation, but the mechanisms of anti-osteoporosis did not work in HLU summer active squirrels.
哺乳动物在长时间不活动后会出现骨量流失,但对于每年有多个月处于休眠状态的冬眠动物,其情况尚不完全清楚。本研究评估了达乌尔黄鼠(Spermophilus dauricus)在冬眠期间与后肢去负荷模型相比的骨重塑机制。在 3 种情况下评估了黄鼠体内的微观结构、力学性能、与骨重塑相关的蛋白(Runx2、OCN、ALP、RANKL、CTK 和 MMP-9)和 Wnt/β-catenin 信号通路的关键蛋白(GSK-3β 和磷酸化-β-catenin):夏季活跃(SA)、冬眠(HIB)和后肢去负荷(HLU)。结果表明,HLU 组黄鼠的体重低于 SA 组,HLU 组胫骨中段直径低于 SA 和 HIB 组。HLU 组股骨皮质和松质骨的厚度均低于 SA 和 HIB 组。HLU 组胫骨的大多数参数均低于 SA 和 HIB 组,表明黄鼠皮质骨丢失。此外,我们的数据表明,HLU 和 HIB 组黄鼠股骨的微观参数变化比胫骨更明显。HLU 组黄鼠的 Runx2 和 ALP 水平低于 SA 和 HIB 组。三组 OCN 蛋白水平无变化,但 HLU 组 ALP 蛋白水平低于 SA 和 HIB 组。HLU 组胫骨 RANKL、CTK 和 MMP-9 蛋白水平明显低于 SA 和 HIB 组。此外,SA 和 HIB 组黄鼠的 RANKL、CTK 和 MMP-9 蛋白表达水平无统计学差异。因此,冬眠和后肢去负荷黄鼠骨形成和骨吸收平衡的机制可能不同。本研究表明,在股骨中,与 SA 组相比,HIB 组 Wnt 信号通路被抑制,GSK-3β 蛋白水平升高,磷酸化-β-catenin 蛋白表达降低,表明 Wnt 信号通路对 HIB 组股骨有很大影响。总之,达乌尔黄鼠的天然抗骨质疏松特性具有季节性。当它们在冬眠期间长时间不活动时,不会出现骨丢失,但在 HLU 夏季活跃的松鼠中,抗骨质疏松的机制不起作用。