Effects of golden tomato extract on skin appearance—outlook into gene expression in cultured dermal fibroblasts and on trans‐epidermal water loss and skin barrier in human subjects

Scope Two experiments were performed to test the effects of rich tomato extract (Golden Tomato Extract, GTE) on human skin. In one experiment, the effects of this extract on gene expression in cultured human dermal fibroblasts were examined. In a second experiment, human subjects consumed the extrac...

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Bibliographic Details
Published inJournal of cosmetic dermatology Vol. 21; no. 7; pp. 3022 - 3030
Main Authors Tarshish, Elizabeth, Hermoni, Karin, Sharoni, Yoav, Wertz, Philip W., Dayan, Nava
Format Journal Article
LanguageEnglish
Published England 01.07.2022
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Summary:Scope Two experiments were performed to test the effects of rich tomato extract (Golden Tomato Extract, GTE) on human skin. In one experiment, the effects of this extract on gene expression in cultured human dermal fibroblasts were examined. In a second experiment, human subjects consumed the extract and trans‐epidermal water loss (TEWL), and aspects of skin appearance were monitored. Methods and results Primary human dermal fibroblasts in culture were treated with the extract. After six hours, RNA was extracted, and gene expression was examined using Affymetrix Human Clariom D array processing. For the clinical study, 65 human subjects consumed a capsule once a day for 16 weeks, and various skin parameters were assessed at predetermined time intervals. Among the genes upregulated by GTE are genes that augment innate immunity, enhance DNA repair, and the ability to detoxify xenobiotics. GTE significantly reduced TEWL in subjects who had high TEWL at baseline, but it had no effect on TEWL in subjects who had lower TEWL at baseline. Conclusions Golden tomato extract may provide benefits to the skin by enhancing innate immunity and other defense mechanisms in the dermis and by providing antioxidants to the skin surface to optimize TEWL and the appearance of the skin.
Bibliography:Funding information
Correction added on November 8, 2021, after first online publication: The affiliation for Philip W. Wertz has been updated.
This project was funded by Lycored Corp, USA (33 Industrial Parkway, Branchburg NJ 08876)
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ISSN:1473-2130
1473-2165
1473-2165
DOI:10.1111/jocd.14527