Sanesi Lorenzo, Storlino Giuseppina, Dicarlo Manuela, Oranger Angela, Zerlotin Roberta, Pignataro Patrizia, Suriano Clelia, Guida Gabriella, Grano Maria, Colaianni Graziana, Colucci Silvia Concetta
Department of Translational Biomedicine and Neuroscience, University of Bari, Bari, Italy.
Department of Precision and Regenerative Medicine and Ionian Area, University of Bari, Bari, Italy.
NPJ Microgravity. 2023 Jan 19;9(1):4. doi: 10.1038/s41526-023-00251-w.
The identification of biomarkers and countermeasures to prevent the adverse effects on the musculoskeletal system caused by the absence of mechanical loading is the main goal of space biomedical research studies. In this study, we analyzed over 4 weeks of unloading, the modulation in the expression of key proteins in Vastus lateralis, Gastrocnemius and cortical bone in parallel with the modulation of irisin serum levels and its precursor FNDC5 in skeletal muscle of hind limb unloaded (HU) mice. Here we report that Atrogin-1 was up-regulated as early as 1- and 2-week of unloading, whereas Murf-1 at 2- and 3-weeks, along with a marked modulation in the expression of myosin heavy chain isoforms during unloading. Since HU mice showed reduced irisin serum levels at 4-weeks, as well as FNDC5 decrease at 3- and 4-weeks, we treated HU mice with recombinant irisin for 4 weeks, showing that unloading-dependent decline of myosin heavy chain isoforms, MyHCIIα and MyHCIIx, and the anti-apoptotic factor Bcl2, were prevented. In parallel, irisin treatment inhibited the increase of the senescence marker p53, and the pro-apoptotic factor Bax. Overall, these results suggest that the myokine irisin could be a possible therapy to counteract the musculoskeletal impairment caused by unloading.
识别生物标志物和应对措施,以预防因缺乏机械负荷而对肌肉骨骼系统产生的不利影响,是空间生物医学研究的主要目标。在本研究中,我们分析了超过4周的去负荷情况,观察了后肢去负荷(HU)小鼠股外侧肌、腓肠肌和皮质骨中关键蛋白表达的调节情况,同时观察了鸢尾素血清水平及其前体FNDC5在骨骼肌中的调节情况。在此我们报告,Atrogin-1早在去负荷1周和2周时就上调,而Murf-1在2周和3周时上调,同时在去负荷期间肌球蛋白重链亚型的表达也有显著调节。由于HU小鼠在4周时鸢尾素血清水平降低,以及在3周和4周时FNDC5减少,我们用重组鸢尾素处理HU小鼠4周,结果显示去负荷依赖性的肌球蛋白重链亚型MyHCIIα和MyHCIIx以及抗凋亡因子Bcl2的下降得到了预防。同时,鸢尾素处理抑制了衰老标志物p53和促凋亡因子Bax的增加。总体而言,这些结果表明,肌动蛋白鸢尾素可能是一种对抗去负荷引起的肌肉骨骼损伤的潜在疗法。