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In Vivo Improvements in Facial Appearance and in Vitro Changes in Gene Expression Using a Topical Formulation Designed to Repair Environmentally Induced DNA Damage
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作者 Amaryllis Aganahi Richard Parker Yohei Tanaka 《Journal of Cosmetics, Dermatological Sciences and Applications》 2024年第2期141-173,共33页
Background: While sunscreen has been accepted as a mainline defence against photodamage from ultraviolet, visible light and near-infrared radiation, there appears to be a lack of research into photorepair. The concept... Background: While sunscreen has been accepted as a mainline defence against photodamage from ultraviolet, visible light and near-infrared radiation, there appears to be a lack of research into photorepair. The concept of protecting the skin during the day and repairing cellular damage at night is intuitive, yet specific strategies revolving around combinations of proven reparative active ingredients remain unelucidated. Purpose: To investigate the efficacy of a solar repair Formulation following ultraviolet and environmental exposure in order to improve overall skin health and appearance through three hypotheses: The Formulation increases expression of DNA repair mechanisms markers;The Formulation enhances overall skin appearance through reducing signs of inflammation, elevating hydration, reinforcing skin firmness and amplifying radiance;In-Vivo efficacy test results are aligned with measured gene expression changes. Methods: The Formulation (#6NIC1.V1.1-1) was tested for: In-vitro LDH cytotoxicity activity, In-vitro qPCR gene expression with and without ultraviolet exposure on a reconstructed 3-dimensional skin model, and In-Vivo efficacy study on a panel of 22 participants objectively and subjectively. Results: Skin radiance, firmness, hydration, redness, and inflammation are significantly improved after In-Vivo skin exposure to the Formulation and environmental challenges such as ultraviolet radiation. These outcomes were confirmed by in-vitro genetic testing on a reconstructed human skin model. Conclusion: The studies allowed us to identify and group results in four main skin functions that were significantly enhanced following the application of the Formulation: firmness, hydration, radiance and soothing. 展开更多
关键词 PHOTOPROTECTION photorepair dna Repair Anti-Photoaging Gene Expression Antioxidant REJUVENATION
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Up-Regulated Expression of SOD2 and HPRT1 Following Topical Photoprotection and Photorepair Skincare Formulations in A 3-Dimensional Reconstructed Human Skin Model
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作者 Yohei Tanaka Richard Parker Amaryllis Aganahi 《Journal of Cosmetics, Dermatological Sciences and Applications》 2023年第4期322-332,共11页
Photodamage continues to threaten human skin health despite worldwide sun awareness campaigns and the widespread use of sunscreens. To date, extensive research is lacking into the effects of sun avoidance and solar sp... Photodamage continues to threaten human skin health despite worldwide sun awareness campaigns and the widespread use of sunscreens. To date, extensive research is lacking into the effects of sun avoidance and solar specific skincare regimens on gene expression changes and DNA repair activity. We have previously reported that photoprotection and photorepair formulations which minimize the harmful effects of ultraviolet, visible light and near-infrared radiation can provide photoprotection, anti-photoaging benefits and rejuvenating effects optically, clinically and genetically. To investigate gene expression changes, specifically antioxidant and DNA repair effects following the use of topical photoprotection and photorepair formulations (The Essential Six, RATIONALE, Victoria, Australia), we used epidermal keratinocytes and dermal fibroblasts derived from a 3-dimensional reconstructed human skin model, and assessed upregulation of SOD2 and HPRT1. Gene expression was assessed via the Genemarkers Standard Skin Panel and quantitative real-time PCR exploration. Tissues were inoculated with solar specific topical formulations, then collected after 24 hours following application of photoprotection formulations and 16 hours following photorepair formulations. The quantitative real-time PCR revealed that, in comparison to the control, the genes encoding SOD2 and HPRT1 have been significantly up-regulated following usage of the photoprotection formulations, 1.86, and 1.41, respectively. SOD2 and HPRT1 were up-regulated following use of the photorepair formulations, 2.15, and 1.28, respectively. We were able to substantiate that the photo protection and photorepair formulations upregulated genes involved in antioxidant and DNA repair mechanisms in a 3-dimensional reconstructed human skin model, suggesting a promising anti-photoaging skin regimen. . 展开更多
关键词 ANTIOXIDANT Anti-Photoageing dna Repair Gene Expression PHOTOPROTECTION photorepair
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DNA光解酶的结构与功能研究进展 被引量:1
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作者 黑晓明 宋钦华 郭庆祥 《生命科学研究》 CAS CSCD 2001年第z1期89-96,共8页
对近年来在包括酶蛋白、辅酶的DNA光解酶结构及其与功能关系方面的研究进展作了综述 .DNA光解酶可通过光诱导的电子转移催化裂解环丁烷嘧啶二聚体 (Pyr<>Pyr) ,从而修复紫外线引起的DNA的主要损伤 .研究发现 ,来自不同有机体的光... 对近年来在包括酶蛋白、辅酶的DNA光解酶结构及其与功能关系方面的研究进展作了综述 .DNA光解酶可通过光诱导的电子转移催化裂解环丁烷嘧啶二聚体 (Pyr<>Pyr) ,从而修复紫外线引起的DNA的主要损伤 .研究发现 ,来自不同有机体的光解酶均含有两个非共价的辅基 :一个是 1 ,5 二氢黄素腺嘌呤二核苷酸(FADH2 ) ,另一个是次甲基四氢叶酸 (MTHF)或 8 羟基 5 去氮杂核黄素 ( 8 HDF) ,前者具有催化活性 ,可在光作用下通过电子转移裂解嘧啶二聚体 ,后者不具有催化活性 ,但能收集光子并将能量传递给FADH2 ,具有“天线” 展开更多
关键词 dna光解酶 辅酶 环丁烷嘧啶二聚体 dna光复活
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DNA光复活作用机理的研究进展 被引量:16
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作者 宋钦华 郭庆祥 《化学进展》 SCIE CAS CSCD 2001年第6期428-435,共8页
环丁烷型嘧啶二聚体 ( Pyr<>Pyr)是太阳光中紫外线造成 DNA损伤的主要光化学产物。DNA光复活酶 (或称光解酶 )能够利用可见光裂解二聚体的环丁烷环而修复 DNA。本文对 DNA光复活过程中的光解酶对 Pyr<>Pyr的识别和光催化 Py... 环丁烷型嘧啶二聚体 ( Pyr<>Pyr)是太阳光中紫外线造成 DNA损伤的主要光化学产物。DNA光复活酶 (或称光解酶 )能够利用可见光裂解二聚体的环丁烷环而修复 DNA。本文对 DNA光复活过程中的光解酶对 Pyr<>Pyr的识别和光催化 Pyr<>Pyr裂解反应进行了综述 ,介绍了 DNA光解酶的结构、DNA的主要 UV光化学产物。较详尽地评述了国际上在光解酶催化二聚体裂解的途径以及模型研究方面的最新进展 。 展开更多
关键词 光复活作用 dna 光解酶 环丁烷型嘧啶二聚体 分子识别 光修复作用 紫外线 辐射损伤
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