Hejazi Pegah, Mury Pauline, Thorin Éric, Lettre Guillaume
Montreal Heart Institute, Montreal, Quebec, Canada.
Department of Medicine, Faculty of Medicine, Université de Montréal, Montreal, Quebec, Canada.
Physiol Rep. 2025 Sep;13(17):e70537. doi: 10.14814/phy2.70537.
Physical activity (PA) is a fundamental aspect of preventive medicine, offering profound benefits for cardiovascular health and overall well-being. Despite its widespread benefits, the molecular mechanisms underlying PA-induced improvements in microvascular functions remain poorly understood. The skin microvasculature is uniquely affected by exercise-induced shear stress, especially during thermoregulation. We assigned 20 mice to either a sedentary group or a 1-month voluntary exercise program involving running wheels. We assessed endothelial function in mesenteric arteries and found no significant difference between groups, consistent with prior reports of minimal vascular effects from short-term PA in young healthy mice. Post-intervention, we collected skin biopsies from 12 mice for single-cell transcriptomic analyses. The differential expression analysis showed a significant difference in the expression of the Zbtb16 gene in vascular endothelial cells (vECs), with higher levels in the physically active group. Additionally, Gene Set Enrichment Analysis (GSEA) with nominally differentially expressed genes in vECs highlighted the suppression of pathways related to oxidative stress, cell proliferation, and metabolism in the exercise group. This suggests an exercise-triggered transition towards improved metabolic efficiency and enhanced homeostasis in vECs. These results begin to reveal transcriptomic differences in vECs of the skin microvasculature between physically active and sedentary mice.
体育活动(PA)是预防医学的一个基本方面,对心血管健康和整体幸福感有着深远的益处。尽管其益处广泛,但PA诱导微血管功能改善的分子机制仍知之甚少。皮肤微血管尤其受到运动诱导的剪切应力的影响,特别是在体温调节过程中。我们将20只小鼠分为久坐组或为期1个月的涉及跑步轮的自愿运动组。我们评估了肠系膜动脉的内皮功能,发现两组之间没有显著差异,这与之前关于短期PA对年轻健康小鼠血管影响最小的报道一致。干预后,我们从12只小鼠身上采集皮肤活检样本进行单细胞转录组分析。差异表达分析显示血管内皮细胞(vECs)中Zbtb16基因的表达存在显著差异,运动组中的水平更高。此外,对vECs中名义上差异表达基因进行的基因集富集分析(GSEA)突出显示运动组中与氧化应激、细胞增殖和代谢相关的通路受到抑制。这表明运动触发了vECs向提高代谢效率和增强内稳态的转变。这些结果开始揭示运动小鼠和久坐小鼠皮肤微血管vECs中的转录组差异。