August 2026 in “Nature Communications” This study found that early mitochondrial reprogramming, specifically through fatty acid oxidation fueling oxidative phosphorylation, is crucial for initiating differentiation in epidermal stem cells, highlighting a potential therapeutic target for differentiation defects in skin disorders.
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November 2018 in “Nutrients” This study reports that polyphenols from Annurca apples may safely promote hair growth and protect against chemotherapy-induced alopecia without interfering with chemotherapy regimens.
September 2026 in “eLife” This study found that red light exposure may mitigate cellular aging in aged mice by increasing histone acetylation, activating metabolic processes, and altering the expression of senescence-related genes.
This study found that periodic red light exposure in aged mice increased histone acetylation and activated metabolic processes in keratinocytes, mitigating cellular aging through enhanced fatty acid oxidation and altered gene expression related to lipid metabolism.
This study found that periodic red light exposure increased histone acetylation and activated metabolic processes in aged mice, leading to enhanced fatty acid oxidation and the mitigation of cellular aging by influencing gene expression and metabolic regulation.