Annurca Apple Polyphenols Ignite Keratin Production in Hair Follicles by Inhibiting the Pentose Phosphate Pathway and Amino Acid Oxidation

磷酸戊糖途径 生物化学 化学 角蛋白 多酚 米诺地尔 谷氨酰胺分解 新陈代谢 糖酵解 生物 抗氧化剂 内科学 医学 古生物学
作者
Nadia Badolati,Eduardo Sommella,Gennaro Riccio,Emanuela Salviati,Dimitri Heintz,Sara Bottone,Emery Di Cicco,Monica Dentice,Gian Carlo Tenore,Pietro Campiglia,Mariano Stornaiuolo,Ettore Novellino
出处
期刊:Nutrients [Multidisciplinary Digital Publishing Institute]
卷期号:10 (10): 1406-1406 被引量:24
标识
DOI:10.3390/nu10101406
摘要

Patterned hair loss (PHL) affects around 50% of the adult population worldwide. The negative impact that this condition exerts on people's life quality has boosted the appearance of over-the-counter products endowed with hair-promoting activity. Nutraceuticals enriched in polyphenols have been recently shown to promote hair growth and counteract PHL. Malus pumila Miller cv. Annurca is an apple native to Southern Italy presenting one of the highest contents of Procyanidin B2. We have recently shown that oral consumption of Annurca polyphenolic extracts (AAE) stimulates hair growth, hair number, hair weight and keratin content in healthy human subjects. Despite its activity, the analysis of the molecular mechanism behind its hair promoting effect is still partially unclear. In this work we performed an unprecedented metabolite analysis of hair follicles (HFs) in mice topically treated with AAE. The metabolomic profile, based on a high-resolution mass spectrometry approach, revealed that AAE re-programs murine HF metabolism. AAE acts by inhibiting several NADPH dependent reactions. Glutaminolysis, pentose phosphate pathway, glutathione, citrulline and nucleotide synthesis are all halted in vivo by the treatment of HFs with AAE. On the contrary, mitochondrial respiration, β-oxidation and keratin production are stimulated by the treatment with AAE. The metabolic shift induced by AAE spares amino acids from being oxidized, ultimately keeping them available for keratin biosynthesis.
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