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运动时间安排如何影响 IL-6 介导的肿瘤抑制:固定运动量的视角

英文原题:How exercise scheduling affects IL-6-mediated tumor suppression: a fixed exercise volume perspective.

查看英文原题

How exercise scheduling affects IL-6-mediated tumor suppression: a fixed exercise volume perspective.

PubMed 2026/05/11(内容时间) Phys Biol Q4 · IF 1.5(JCR 2025)

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中文摘要

近期关于运动诱导的肿瘤抑制研究表明,在特定时间窗口内运动总时长不受限制时,较高的运动频率可增强肿瘤控制。另一个同样值得探索的方向是,在同一时间范围内总运动时长固定的条件下,增加运动频率所产生的效果。利用IL-6介导的NK 细胞与肿瘤细胞相互作用的数学模型,我们在此探讨在保持总体运动量不变的情况下,运动与休息间隔的不同组合如何影响肿瘤抑制。我们的结果揭示了非单调的肿瘤反应,并且发现诸如最大肿瘤抑制时间和肿瘤抑制持续时间等关键指标随着运动频率的增加而减少。有趣的是,与早期研究中增加运动频率导致肿瘤抑制增强不同,我们在此发现,在固定运动量约束下,频率增加会削弱运动的治疗效果,提示持续时间较长的单次运动在抑制肿瘤方面更为有效。这些发现凸显了在设计基于运动的癌症干预措施时考虑总运动量的重要性。

展开英文摘要原文

Recent investigations into exercise-induced tumor suppression suggest that higher exercise frequency enhances tumor control when the total duration of exercise within a specified time window is not constrained. An equally compelling avenue for exploration is the effect of increased exercise frequency under the condition of a fixed total exercise duration within the same time frame.

Using a mathematical model of IL-6-mediated interactions between natural killer cells and tumor cells, here we explore how different combinations of exercise and rest intervals-while maintaining a constant overall exercise volume-affect tumor suppression.

Our results reveal a nonmonotonic tumor response and key metrics such as the time of maximum tumor suppression and the duration of tumor suppression are found to decrease with increasing exercise frequency. Interestingly, unlike earlier study where increasing exercise frequency leads to increase in tumor suppression, here we find that under fixed exercise volume constraints, increased frequency diminishes therapeutic efficacy of exercise, suggesting exercise bouts with longer duration are more effective in suppressing tumors.

These findings highlight the importance of considering total exercise volume when designing exercise-based cancer interventions.

论文信息

作者
L DorChhuon M、Bagarti T、Kumar N
单位
Department of Physics, University of Massachusetts Boston, Boston, MA 02125, United States of America.United States
期刊
Physical biology2026 May 11
原文标识
PubMed 42049052 · DOI 10.1088/1478-3975/ae65f8