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阿伏苯宗衍生物的光保护和抗氧化潜力评估。

Evaluation of the photoprotective and antioxidant potential of an avobenzone derivative.

作者信息

Pasuch Gluzezak Ana Júlia, Dos Santos Jean Leandro, Maria-Engler Silvya Stuchi, Gaspar Lorena Rigo

机构信息

School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, São Paulo, Brazil.

School of Pharmaceutical Sciences of UNESP, Araraquara, Brazil.

出版信息

Front Physiol. 2024 Feb 29;15:1347414. doi: 10.3389/fphys.2024.1347414. eCollection 2024.

Abstract

Solar radiation can cause damage to the skin, and the use of sunscreens is one of the main protective measures. However, photounstable ultraviolet (UV) filters can generate photoproducts and reactive oxygen species (ROS). Adding antioxidants, such as resveratrol, to enhance the action of UV filters in sunscreens is an interesting strategy for reducing the damage caused by UV radiation exposure. However, new compounds must have their stability, safety and efficacy guaranteed. Avobenzone, a commonly used UV filter, stands out as a promising candidate for structural modification to enhance its stability. Its molecular hybridization with other UV filters and antioxidants can lead to safer and more effective compounds. In this study, the photoprotective and antioxidant potential of a derivative of avobenzone, hybridized with resveratrol's molecule, was evaluated using models of cells in monolayer and reconstructed human skin (RHS). Phototoxic potential was assessed using fibroblasts, while the antioxidant activity was measured using the DCFH-DA probe in HaCaT keratinocytes and in-house RHS. The derivative exhibited UV absorption and demonstrated photostability. It did not exhibit any phototoxic nor photoreactivity potential. Additionally, it was able to photo stabilize a combination of photounstable UV filters, avobenzone and octyl methoxycinnamate, and to reduce their phototoxic potential. In terms of antioxidant activity, the derivative successfully protected against UVA-induced ROS production in the HaCaT keratinocytes model, showing statistical equivalence to the antioxidant control, quercetin (10 μg/mL). Furthermore, experiments conducted in the RHS model demonstrated a significant reduction of 30.7% in ROS generation compared to the irradiated control. This study demonstrated that structural modifications of avobenzone can lead to the development of a broad spectrum (absorbing UVB and UVA II radiation, as well as a portion of the UVA I radiation), non-phototoxic, non-photoreactive and photostable derivative for sunscreen and anti-aging formulations. This derivative enhances protection against oxidative stress induced by UV radiation and improves the effectiveness of sun protection. In addition to the monolayer model, the use of a standardized in-house RHS model was highly relevant for evaluating the effects of UV radiation and skin aging. This model closely mimics human physiological conditions and enables the testing of new compounds and the investigation of protective mechanisms against skin damage.

摘要

太阳辐射会对皮肤造成损伤,使用防晒霜是主要的防护措施之一。然而,光不稳定的紫外线(UV)过滤剂会产生光产物和活性氧(ROS)。在防晒霜中添加抗氧化剂(如白藜芦醇)以增强紫外线过滤剂的作用,是减少紫外线辐射暴露所造成损伤的一种有趣策略。然而,新化合物必须保证其稳定性、安全性和有效性。阿伏苯宗是一种常用的紫外线过滤剂,作为结构修饰以提高其稳定性的有前景的候选物而脱颖而出。它与其他紫外线过滤剂和抗氧化剂的分子杂化可产生更安全、更有效的化合物。在本研究中,使用单层细胞模型和重建人皮肤(RHS)评估了与白藜芦醇分子杂化的阿伏苯宗衍生物的光保护和抗氧化潜力。使用成纤维细胞评估光毒性潜力,而使用DCFH-DA探针在HaCaT角质形成细胞和内部RHS中测量抗氧化活性。该衍生物表现出紫外线吸收并具有光稳定性。它没有表现出任何光毒性或光反应性潜力。此外,它能够使光不稳定的紫外线过滤剂阿伏苯宗和甲氧基肉桂酸辛酯的组合实现光稳定,并降低它们的光毒性潜力。在抗氧化活性方面,该衍生物在HaCaT角质形成细胞模型中成功保护细胞免受UVA诱导的ROS产生,显示出与抗氧化剂对照槲皮素(10μg/mL)在统计学上相当。此外,在RHS模型中进行的实验表明,与照射对照相比,ROS生成显著减少了30.7%。本研究表明,阿伏苯宗的结构修饰可导致开发出一种用于防晒霜和抗老化配方的广谱(吸收UVB和UVA II辐射以及一部分UVA I辐射)、无光毒性、无光反应性且光稳定的衍生物。这种衍生物增强了对紫外线辐射诱导的氧化应激的防护,并提高了防晒效果。除了单层模型外,使用标准化的内部RHS模型对于评估紫外线辐射和皮肤老化的影响非常重要。该模型紧密模拟人类生理状况,能够测试新化合物并研究针对皮肤损伤的保护机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d833/10937738/a5c8e95044a8/fphys-15-1347414-g001.jpg

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