Scientific Study
Access to over 2,900 scientific references, studies and publications. This section is constantly updated with studies that have been published in scientific journals.
Products: Almonds
Notice: Undefined variable: post in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-studies.php on line 744
Notice: Trying to get property 'ID' of non-object in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-studies.php on line 744
β-Ionone Attenuates Dexamethasone-Induced Suppression of Collagen and Hyaluronic Acid Synthesis in Human Dermal Fibroblasts
Authors: Choi, D., Kang, W., Park, S., Son, B., & Park, T.
- Journals: Biomolecules
- Pages: 619
- Volume: 11(5)
- Year: 2021
Notice: Undefined variable: post in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-articles.php on line 247
Notice: Trying to get property 'ID' of non-object in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-articles.php on line 247
Stress is a major contributing factor of skin aging, which is clinically characterized by wrinkles, loss of elasticity, and dryness. In particular, glucocorticoids are generally considered key hormones for promoting stress-induced skin aging through binding to glucocorticoid receptors (GRs). In this work, we aimed to investigate whether β-ionone (a compound occurring in various foods such as carrots and almonds) attenuates dexamethasone-induced suppression of collagen and hyaluronic acid synthesis in human dermal fibroblasts, and to explore the mechanisms involved. We found that β-ionone promoted collagen production dose-dependently and increased mRNA expression levels, including collagen type I α 1 chain (COL1A1) and COL1A2 in dexamethasone-treated human dermal fibroblasts. It also raised hyaluronic acid synthase mRNA expression and hyaluronic acid levels. Notably, β-ionone inhibited cortisol binding to GR, subsequent dexamethasone-induced GR signaling, and the expression of several GR target genes. Our results reveal the strong potential of β-ionone for preventing stress-induced skin aging and suggest that its effects are related to the inhibition of GR signaling in human dermal fibroblasts.
https://doi.org/10.3390/biom11050619
https://doi.org/10.3390/biom11050619