Department of Surgery, University of Calgary, Calgary, AB T2N 4N1, Canada.
McCaig Institute for Bone & Joint Health Research, University of Calgary, Calgary, AB T2N 4N1, Canada.
Int J Mol Sci. 2022 Sep 1;23(17):9949. doi: 10.3390/ijms23179949.
Human evolution required adaptation to the boundary conditions of Earth, including 1 g gravity. The bipedal mobility of in that gravitational field causes ground reaction force (GRF) loading of their lower extremities, influencing the integrity of the tissues of those extremities. However, humans usually experience such loading during the day and then a period of relative unloading at night. Many studies have indicated that loading of tissues and cells of the musculoskeletal (MSK) system can inhibit their responses to biological mediators such as cytokines and growth factors. Such findings raise the possibility that humans use such cycles of acute conditioning and deconditioning of the cells and tissues of the MSK system to elaborate critical mediators and responsiveness in parallel with these cycles, particularly involving GRF loading. However, humans also experience circadian rhythms with the levels of a number of mediators influenced by day/night cycles, as well as various levels of biological clocks. Thus, if responsiveness to MSK-generated mediators also occurs during the unloaded part of the daily cycle, that response must be integrated with circadian variations as well. Furthermore, it is also possible that responsiveness to circadian rhythm mediators may be regulated by MSK tissue loading. This review will examine evidence for the above scenario and postulate how interactions could be both regulated and studied, and how extension of the acute cycles biased towards deconditioning could lead to loss of tissue integrity.
人类进化需要适应地球的边界条件,包括 1g 的重力。在这种重力场中,的双足移动性会对其下肢产生地面反作用力(GRF)负荷,影响这些肢体组织的完整性。然而,人类通常在白天承受这种负荷,然后在晚上经历一段时间的相对卸载。许多研究表明,骨骼肌肉(MSK)系统的组织和细胞的负荷会抑制它们对细胞因子和生长因子等生物介质的反应。这些发现提出了一种可能性,即人类可能利用 MSK 系统的细胞和组织的这种急性适应和去适应循环,来精心设计关键介质和反应性,与这些循环并行,特别是涉及到 GRF 负荷。然而,人类也经历昼夜节律,许多介质的水平受昼夜周期的影响,以及各种生物钟的水平。因此,如果对 MSK 产生的介质的反应性也发生在每日循环的未加载部分,那么该反应性也必须与昼夜变化相整合。此外,对生物钟节律介质的反应性也可能受到 MSK 组织负荷的调节。这篇综述将检查上述情况的证据,并推测如何对这些相互作用进行调节和研究,以及如何延长偏向去适应的急性循环,导致组织完整性的丧失。