Extracts of Jasminum sambac flowers fermented by Lactobacillus rhamnosus inhibit H2O2‐ and UVB‐induced aging in human dermal fibroblasts

鼠李糖乳杆菌 光老化 氧化应激 真皮成纤维细胞 化学 成纤维细胞 抗氧化剂 活性氧 MAPK/ERK通路 DNA损伤 p38丝裂原活化蛋白激酶 分子生物学 发酵 生物化学 乳酸菌 信号转导 生物 DNA 体外 遗传学
作者
Chih‐Chu Ho,Shang‐Chuan Ng,Ho‐Lin Chuang,Su‐Ying Wen,Chia‐Hua Kuo,B. Mahalakshmi,Chih‐Yang Huang,Wei‐Wen Kuo
出处
期刊:Environmental Toxicology [Wiley]
卷期号:36 (4): 607-619 被引量:26
标识
DOI:10.1002/tox.23065
摘要

Abstract Ultraviolet (UV) irradiation is a crucial factor that leads to skin photoaging and results in increased DNA damage, oxidative stress, and collagen degradation. Jasmine flowers have been utilized as a traditional medicine in Asia to treat various diseases, including dermatitis, diarrhea, and fever. Furthermore, the fermented broth of Lactobacillus rhamnosus has been reported to exert protective effects on the skin. In the present study, jasmine flower extract was fermented with L. rhamnosus . We investigated the antioxidant and collagen‐promoting effects on UVB/H 2 O 2 ‐induced HS68 dermal fibroblast cell damage. The results indicated that treatment with the fermented flower extracts of Jasminum sambac (F‐FEJS) could enhance the viability of HS68 cells. Furthermore, the UVB/H 2 O 2 ‐induced excessive production of reactive oxygen species, degradation of collagen, activation of MAPKs, including P38, ERK, and JNK, and premature senescence were remarkably attenuated by F‐FEJS in dermal fibroblast cells. The nuclear accumulation of p‐c‐jun, which is downstream of MAPK, and the inactivation of p‐smad2/3, which is one of the crucial transcription factors that enhance collagen synthesis, were reversed in response to F‐FEJS treatment in UVB/H 2 O 2 ‐exposed cells. Notably, the expression of antioxidant genes, such as HO‐1, and the nuclear translocation of Nrf2 were further enhanced by F‐FEJS in UVB/H 2 O 2 ‐treated cells. Interestingly, the F‐FEJS‐induced increase in ARE luciferase activity indicated the activation of Nrf2/ARE signaling. In conclusion, our findings demonstrated that F‐FEJS can effectively ameliorate UVB/H 2 O 2 ‐induced dermal cell aging and may be considered a promising ingredient in skin aging therapy.
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