High-Intensity Interval Training, but Not Whole-Body Cryostimulation, Affects Bone-Mechanosensing Markers and Induces the Expression of Differentiation Markers in Osteoblasts Cultured with Sera from Overweight-to-Obese Subjects.

IF 3 3区 医学 Q2 HEALTH CARE SCIENCES & SERVICES Journal of Personalized Medicine Pub Date : 2024-09-24 DOI:10.3390/jpm14101015
Marta Gomarasca, Ewa Ziemann, Veronica Sansoni, Marta Flis, Silvia Perego, Joanna Jaworska, Laura Gerosa, Martina Faraldi, Giovanni Lombardi
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Abstract

Background/Objectives: Although there have been some clinical observations made, the mechanistic effects on bone metabolism of whole-body cryostimulation and high-intensity interval training (HIIT), either alone or in combination, are still debated. Here, we have investigated their effects on circulating osteo-immune and bone metabolic markers (osteopontin, osteocalcin, sclerostin, dikkopf-related protein 1, and fibroblast-growth factor 23) and their potential effects on osteoblast differentiation and function, in vitro, by treating SaOS-2 osteoblast-like cells with the sera obtained from the subjects who had undergone the different interventions or untreated control subjects. Methods: Sixty-seven inactive, overweight-to-obese participants (body mass index = 31.9 ± 5.0 kg·m-2, 42 ± 13 years old) were recruited and randomly assigned to one group: control (CTRL, n = 14), training (HIIT, 6 sessions, n = 13), WBC (CRYO, 10 sessions, n = 17) or training combined with WBC (CRYO-HIIT, n = 23). The interventions lasted 14 days. Results: While circulating markers analysis revealed more protective potential against resorption in HIIT than in WBC alone or combined, gene expression from in vitro analysis showed an induction of late bone metabolic markers in the HIIT group. Conclusions: These data suggest a potentially protective effect of HIIT in bone against resorption, while WBC maintains homeostasis by preventing any resorptive phenomena and limiting any anabolic activity even when stimulated by intensive exercise.

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高强度间歇训练(而非全身低温刺激)会影响骨机械感应标志物,并诱导用超重至肥胖者血清培养的成骨细胞表达分化标志物。
背景/目的:虽然已有一些临床观察结果,但全身低温刺激和高强度间歇训练(HIIT)单独或联合使用对骨代谢的机理影响仍存在争议。在此,我们通过用接受过不同干预的受试者或未接受干预的对照受试者的血清处理 SaOS-2 成骨细胞样细胞,在体外研究了它们对循环骨免疫和骨代谢标志物(骨通素、骨钙素、硬骨素、dikkopf 相关蛋白 1 和成纤维细胞生长因子 23)的影响,以及它们对成骨细胞分化和功能的潜在影响。研究方法招募 67 名不运动、超重至肥胖的参与者(体重指数 = 31.9 ± 5.0 kg-m-2,年龄 42 ± 13 岁),并将其随机分配到一组:对照组(CTRL,n = 14)、训练组(HIIT,6 次,n = 13)、WBC 组(CRYO,10 次,n = 17)或训练与 WBC 结合组(CRYO-HIIT,n = 23)。干预措施持续 14 天。结果显示循环标志物分析表明,HIIT 对骨吸收的保护潜力大于单独或联合 WBC,而体外分析的基因表达显示,HIIT 组诱导了晚期骨代谢标志物。结论:这些数据表明,HIIT 对骨吸收具有潜在的保护作用,而白细胞通过防止任何吸收现象和限制任何合成代谢活动来维持体内平衡,即使在高强度运动的刺激下也是如此。
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来源期刊
Journal of Personalized Medicine
Journal of Personalized Medicine Medicine-Medicine (miscellaneous)
CiteScore
4.10
自引率
0.00%
发文量
1878
审稿时长
11 weeks
期刊介绍: Journal of Personalized Medicine (JPM; ISSN 2075-4426) is an international, open access journal aimed at bringing all aspects of personalized medicine to one platform. JPM publishes cutting edge, innovative preclinical and translational scientific research and technologies related to personalized medicine (e.g., pharmacogenomics/proteomics, systems biology). JPM recognizes that personalized medicine—the assessment of genetic, environmental and host factors that cause variability of individuals—is a challenging, transdisciplinary topic that requires discussions from a range of experts. For a comprehensive perspective of personalized medicine, JPM aims to integrate expertise from the molecular and translational sciences, therapeutics and diagnostics, as well as discussions of regulatory, social, ethical and policy aspects. We provide a forum to bring together academic and clinical researchers, biotechnology, diagnostic and pharmaceutical companies, health professionals, regulatory and ethical experts, and government and regulatory authorities.
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