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紫外线B诱导的人皮肤角质形成细胞氧化损伤通过叶精油激活Nrf2依赖的抗氧化防御系统而得到缓解。

Ultraviolet B-induced oxidative damage in human skin keratinocytes is alleviated by leaf essential oil through activation of the Nrf2-dependent antioxidant defense system.

作者信息

Lin Wan-Teng, Chen Yi-Ju, Kuo Hsin-Ning, Kumar Suresh, Abomughaid Mosleh Mohammad, Senthil Kumar K J

机构信息

Department of Hospitality Management, College of Agriculture and Health, Tunghai University, Taichung, Taiwan.

Department of Surgery, Taichung Veterans General Hospital, Taichung, Taiwan.

出版信息

Redox Rep. 2025 Dec;30(1):2527427. doi: 10.1080/13510002.2025.2527427. Epub 2025 Jul 2.


DOI:10.1080/13510002.2025.2527427
PMID:40605175
Abstract

BACKGROUND: Ultraviolet B (UVB) radiation contributes to skin disorders such as photodamage, photoaging, and cancer. Natural antioxidants can mitigate UVB-induced damage. (Taiwan white pine), known for its anti-cancer, anti-inflammatory, and antioxidant properties, is used in health-promoting beverages, but its skin-protective effects remain underexplored. PURPOSE: This study investigates the protective effects of leaf essential oil (PMLEO) against UVB-induced damage in HaCaT keratinocytes. METHODS: HaCaT cells were exposed to UVB and treated with PMLEO. Cell viability, reactive oxygen species (ROS) levels, and antioxidant enzyme expression were assessed. The role of Nrf2, a key antioxidant regulator, was evaluated through knockdown experiments. The effects on UVB-induced melanogenesis were examined α-MSH secretion followed by p53-mediated POMC expression. RESULTS: PMLEO and bark essential oil (PMBEO) were non-cytotoxic up to 200 µg/mL. UVB reduced cell viability to 43%, but PMLEO co-treatment significantly restored viability and reduced ROS levels Nrf2 activation, increasing NQO-1 and HO-1. Nrf2 knockdown impaired PMLEO's protection. PMLEO also inhibited UVB-induced α-MSH secretion by downregulating p53-mediated POMC expression, suggesting an anti-melanogenic effect. CONCLUSION: PMLEO protects dermal keratinocytes against UVB-induced oxidative stress, cell death, and melanogenesis via Nrf2 activation, highlighting its potential as a natural skin protectant.

摘要

背景:紫外线B(UVB)辐射会导致皮肤疾病,如光损伤、光老化和癌症。天然抗氧化剂可以减轻UVB诱导的损伤。台湾白皮松以其抗癌、抗炎和抗氧化特性而闻名,被用于保健饮料中,但其皮肤保护作用仍未得到充分研究。 目的:本研究调查台湾白皮松树叶精油(PMLEO)对UVB诱导的HaCaT角质形成细胞损伤的保护作用。 方法:将HaCaT细胞暴露于UVB并使用PMLEO处理。评估细胞活力、活性氧(ROS)水平和抗氧化酶表达。通过敲低实验评估关键抗氧化调节因子Nrf2的作用。检测对UVB诱导的黑色素生成的影响,检测α-MSH分泌,然后检测p53介导的POMC表达。 结果:PMLEO和台湾白皮松树皮精油(PMBEO)在浓度高达200μg/mL时无细胞毒性。UVB将细胞活力降低至43%,但PMLEO联合处理显著恢复了活力并降低了ROS水平,激活了Nrf2,增加了NQO-1和HO-1。Nrf2敲低削弱了PMLEO的保护作用。PMLEO还通过下调p53介导的POMC表达抑制UVB诱导的α-MSH分泌,表明具有抗黑色素生成作用。 结论:PMLEO通过激活Nrf2保护真皮角质形成细胞免受UVB诱导的氧化应激、细胞死亡和黑色素生成,突出了其作为天然皮肤保护剂的潜力。

相似文献

[1]
Ultraviolet B-induced oxidative damage in human skin keratinocytes is alleviated by leaf essential oil through activation of the Nrf2-dependent antioxidant defense system.

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本文引用的文献

[1]
Cyclodextrin-based dermatological formulations: Dermopharmaceutical and cosmetic applications.

Colloids Surf B Biointerfaces. 2023-1

[2]
Limonene protects human skin keratinocytes against UVB-induced photodamage and photoaging by activating the Nrf2-dependent antioxidant defense system.

Environ Toxicol. 2022-12

[3]
Role of Phytochemicals in Skin Photoprotection Regulation of Nrf2.

Front Pharmacol. 2022-5-12

[4]
Critical roles of irradiance in the regulation of UVB-induced inflammasome activation and skin inflammation in human skin keratinocytes.

J Photochem Photobiol B. 2022-1

[5]
Bioactive Compounds in Oxidative Stress-Mediated Diseases: Targeting the NRF2/ARE Signaling Pathway and Epigenetic Regulation.

Antioxidants (Basel). 2021-11-23

[6]
Invitro effect of pine bark extract on melanin synthesis, tyrosinase activity, production of endothelin-1, and PPAR in cultured melanocytes exposed to Ultraviolet, Infrared, and Visible light radiation.

J Cosmet Dermatol. 2022-3

[7]
Anti-inflammatory properties of fermented pine (Pinus morrisonicola Hay.) needle on lipopolysaccharide-induced inflammation in RAW 264.7 macrophage cells.

J Food Biochem. 2019-7-28

[8]
Resveratrol as a Multifunctional Topical Hypopigmenting Agent.

Int J Mol Sci. 2019-2-22

[9]
Antioxidants from Plants Protect against Skin Photoaging.

Oxid Med Cell Longev. 2018-8-2

[10]
Natural Antioxidants: Multiple Mechanisms to Protect Skin From Solar Radiation.

Front Pharmacol. 2018-4-24

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