低温通过霍夫分叉消除了人类细胞昼夜节律
Yaoyao Xiao1, Yuko Sainoo1, Takayuki Nishimura1
1Faculty of Design, Kyushu University, Fukuoka, Japan.
NPJ systems biology and applications
|December 1, 2025
概括
暴露在寒冷中会通过降低振荡幅度来破坏人体细胞的昼夜节律,在重新加热时会恢复振荡幅度. 温度周期可以通过共振增强节奏幅度,这表明在维持细胞时钟稳定性方面存在潜在的进化优势.
科学领域:
- 时间生物学 时间生物学
- 细胞生理学 细胞生理学
- 生物物理学的生物物理.
背景情况:
- 循环时钟调节了人类每天的生物过程.
- 已知低温会扰乱其他生物体的昼夜节律.
- 寒冷对人类昼夜节律的影响尚不清楚.
研究的目的:
- 在培养细胞中研究寒冷暴露对人类昼夜节律的影响.
- 探索温度周期和昼夜时钟动态之间的关系.
- 模拟这些温度依赖的昼夜反应的理论基础.
主要方法:
- 利用培养的人体细胞来评估昼夜节律的破坏.
- 应用冷暴露和回暖协议来观察振荡幅度的变化.
- 研究了24小时的温度周期及其对昼夜节律共振的影响.
- 采用数学建模来分析昼夜时钟动态和霍夫分叉.
主要成果:
- 暴露在寒冷中,通过减少振荡幅度,在培养的人类细胞中取消了昼夜节律.
- 重温恢复了昼夜节律的振荡幅度.
- 循环节律幅度通过共振增强了24小时的温度周期.
- 观测到了霍夫分叉动态,并通过数学模型得到证实.
- 人类毛囊细胞对温度变化的敏感性较低.
结论:
- 暴露于寒冷会显著影响人类细胞的昼夜节律.
- 温度周期可以通过共振影响昼夜时钟功能.
- 霍夫分叉为理解这些依赖温度的昼夜动态提供了一个理论框架.
- 像毛囊这样的细胞类型中的不同温度敏感性可能表明进化适应.
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