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◇ bioRxiv2026-08-31· systems biology

Hormone oscillations preserve cellular responsiveness to future physiological demands

M. Greenwood, J. Drube, C. Hoffmann, P. Li

原始摘要(英文原文)· Original abstract
Living organisms must sense and adapt to physiological demands of varying intensity, requiring cells to remain responsive over time. While continuous changes in hormone concentrations communicate these demands, sustained stimulation desensitizes signaling, protecting cells from overstimulation but potentially blunting future responses. How cells preserve responsiveness remains unclear. Using epinephrine, a major mediator of stress responses, we show that natural ultradian oscillations provide a solution. Oscillatory, but not constant, hormone enabled receptor resensitization when hormone levels fell, preserving alertness to subsequent stress and tunability across intensities. Furthermore, oscillation supported coordinated responses among diverse cell types by more consistently maintaining responsiveness across hormone concentrations and receptor kinetics. Oscillations thus provide a general strategy by which endocrine systems retain protective desensitization while preserving responsiveness to future physiological demands.
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Hormone oscillations preserve cellular responsiveness to future physiological demands — 科研速览 Science Skim