Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms

Abstract Retinol and retinoids can effectively intervene skin aging process, but usually induce skin intolerance. In this study, we aimed to determine the synergistic anti-aging effects of retinol and two retinol derivatives-hydroxypinacolone retinoate (HPR) and retinol palmitate (VAPA) combined wit...

Full description

Saved in:
Bibliographic Details
Main Authors: Jingyin Zhang, Zhuojun Li, Xiaoping Song, Panpan Cai, Qingchao Liu
Format: Article
Language:English
Published: Nature Portfolio 2025-05-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-025-99304-1
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849309716103036928
author Jingyin Zhang
Zhuojun Li
Xiaoping Song
Panpan Cai
Qingchao Liu
author_facet Jingyin Zhang
Zhuojun Li
Xiaoping Song
Panpan Cai
Qingchao Liu
author_sort Jingyin Zhang
collection DOAJ
description Abstract Retinol and retinoids can effectively intervene skin aging process, but usually induce skin intolerance. In this study, we aimed to determine the synergistic anti-aging effects of retinol and two retinol derivatives-hydroxypinacolone retinoate (HPR) and retinol palmitate (VAPA) combined with ginsenoside CK in terms of preventing and treating the UVA radiation-induced skin aging. We found that the combination formulation of retinol and ginsenoside CK alleviated the inhibition of photoaging proliferation of HaCaT cells caused by UVA, and reduced the proportion of senescence. Additionally, the combination of retinol, HPR, VAPA with ginsenoside CK significantly down-regulated the expression of P53 and P21, up-regulated P63 in UVA irradiated cells, and had potential anti-apoptotic activity. Ginsenoside CK intervention also inhibited the degradation of collagen and elastin by reducing the expression of matrix metalloproteinases, and significantly alleviated oxidative stress. Further transcriptomic and molecular docking studies suggested that ginsenoside CK may play an anti-photoaging role by binding to the active pocket of AKR1C1 and AKR1C2 proteins. Zebrafish experiment showed that retinol combined with ginsenoside CK had the effect of reducing skin toxicity. In conclusion, our results show that retinol, HPR and VAPA combined with ginsenoside CK have good anti-aging and irritation-reducing effects in vitro and in vivo.
format Article
id doaj-art-4a8b58d414b34c6e8f3babb0e6980bf6
institution Kabale University
issn 2045-2322
language English
publishDate 2025-05-01
publisher Nature Portfolio
record_format Article
series Scientific Reports
spelling doaj-art-4a8b58d414b34c6e8f3babb0e6980bf62025-08-20T03:53:58ZengNature PortfolioScientific Reports2045-23222025-05-0115111610.1038/s41598-025-99304-1Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanismsJingyin Zhang0Zhuojun Li1Xiaoping Song2Panpan Cai3Qingchao Liu4Guangzhou Guangya New Hanfang Cosmetic Technology Co.Department of Pharmaceutical Engineering, Northwest UniversityGuangzhou Guangya Life Science Research PartnershipGuangzhou Guangya Life Science Research PartnershipGuangzhou Guangya Life Science Research PartnershipAbstract Retinol and retinoids can effectively intervene skin aging process, but usually induce skin intolerance. In this study, we aimed to determine the synergistic anti-aging effects of retinol and two retinol derivatives-hydroxypinacolone retinoate (HPR) and retinol palmitate (VAPA) combined with ginsenoside CK in terms of preventing and treating the UVA radiation-induced skin aging. We found that the combination formulation of retinol and ginsenoside CK alleviated the inhibition of photoaging proliferation of HaCaT cells caused by UVA, and reduced the proportion of senescence. Additionally, the combination of retinol, HPR, VAPA with ginsenoside CK significantly down-regulated the expression of P53 and P21, up-regulated P63 in UVA irradiated cells, and had potential anti-apoptotic activity. Ginsenoside CK intervention also inhibited the degradation of collagen and elastin by reducing the expression of matrix metalloproteinases, and significantly alleviated oxidative stress. Further transcriptomic and molecular docking studies suggested that ginsenoside CK may play an anti-photoaging role by binding to the active pocket of AKR1C1 and AKR1C2 proteins. Zebrafish experiment showed that retinol combined with ginsenoside CK had the effect of reducing skin toxicity. In conclusion, our results show that retinol, HPR and VAPA combined with ginsenoside CK have good anti-aging and irritation-reducing effects in vitro and in vivo.https://doi.org/10.1038/s41598-025-99304-1RetinolHydroxypinacolone retinoateRetinol palmitateGinsenoside CKAnti-aging
spellingShingle Jingyin Zhang
Zhuojun Li
Xiaoping Song
Panpan Cai
Qingchao Liu
Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
Scientific Reports
Retinol
Hydroxypinacolone retinoate
Retinol palmitate
Ginsenoside CK
Anti-aging
title Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
title_full Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
title_fullStr Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
title_full_unstemmed Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
title_short Ginsenoside CK and retinol on UVA-induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
title_sort ginsenoside ck and retinol on uva induced photoaging exert the synergistic effect through antioxidant and antiapoptotic mechanisms
topic Retinol
Hydroxypinacolone retinoate
Retinol palmitate
Ginsenoside CK
Anti-aging
url https://doi.org/10.1038/s41598-025-99304-1
work_keys_str_mv AT jingyinzhang ginsenosideckandretinolonuvainducedphotoagingexertthesynergisticeffectthroughantioxidantandantiapoptoticmechanisms
AT zhuojunli ginsenosideckandretinolonuvainducedphotoagingexertthesynergisticeffectthroughantioxidantandantiapoptoticmechanisms
AT xiaopingsong ginsenosideckandretinolonuvainducedphotoagingexertthesynergisticeffectthroughantioxidantandantiapoptoticmechanisms
AT panpancai ginsenosideckandretinolonuvainducedphotoagingexertthesynergisticeffectthroughantioxidantandantiapoptoticmechanisms
AT qingchaoliu ginsenosideckandretinolonuvainducedphotoagingexertthesynergisticeffectthroughantioxidantandantiapoptoticmechanisms