The therapeutic restoration of a cell or organism’s inherent capacity to dynamically adjust its observable characteristics (phenotype) in response to changes in the internal or external environment. This recovery is a measure of biological resilience, allowing tissues to adapt effectively to stress, injury, or metabolic demand. Loss of plasticity is a key feature of biological aging.
Origin
The concept is derived from evolutionary biology and cell biology, where phenotypic plasticity describes the ability of a genotype to produce different phenotypes. Recovery is the goal of longevity interventions to restore this essential, youthful adaptability.
Mechanism
Recovery involves enhancing the responsiveness of cellular signaling networks, particularly those governed by sirtuins, AMPK, and mTOR, which sense nutrient and energy status. By restoring the flexibility of the epigenetic landscape, cells regain the ability to rapidly switch between maintenance, repair, and growth programs as needed. Hormonal and metabolic optimization acts as a powerful signal to the cell, reinforcing the molecular pathways that support this essential adaptive capacity and stress resistance.
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