Yap Wei Ney
Research & Development, Davos Life Science Pte Ltd, Singapore, Singapore.
J Cosmet Dermatol. 2018 Jun;17(3):555-565. doi: 10.1111/jocd.12421. Epub 2017 Sep 26.
UV radiation from the sun is the most common environmental stressor to damage the skin. It is now well established that photodamaged skin manifests signs of mild but chronic inflammation, termed as "inflammaging." Thus, there is an urgent need for anti-inflammatory regimes that can limit the damage caused by inflammation.
This study aimed to evaluate the possible palliative effects of a new topical nanoemulsion formulation containing tocotrienol-rich fraction (TRF) on UV-induced inflammation (erythema) of human skin.
An in vitro model was used to demonstrate the ability of TRF to alleviate photodamage via attenuation of UV-induced oxidative stress and inflammation. Two ex vivo models (skin antioxidative potential and radical sun protection factor) were used to determine the efficacy of different formulations of TRF on the skin. A UV-induced erythema protection test in 20 subjects was conducted.
In vitro studies involving HaCaT keratinocytes revealed that TRF possesses marked anti-inflammatory properties, as indicated by the attenuation of UV-induced upregulation of pro-inflammatory cytokines. A 1% TRF formulation was found to be more effective in enhancing the endogenous antioxidative protection of skin compared to 1% TRF in medium chain triglycerides because of its higher penetration kinetic profile. The clinical study showed that formulated TRF was effective in reducing skin redness after UV irradiation as early as after 6 hours of application. A significant depigmentation was also observed in TRF treatment subjects.
TRF may serve as an anti-inflammatory compound that is safe to be applied daily to protect the skin from UV-induced inflammaging.
来自太阳的紫外线是损害皮肤的最常见环境应激源。现已明确,光损伤皮肤会表现出轻度但慢性炎症的迹象,即“炎症衰老”。因此,迫切需要能够限制炎症所致损伤的抗炎方案。
本研究旨在评估一种含富含生育三烯酚组分(TRF)的新型局部纳米乳剂配方对紫外线诱导的人体皮肤炎症(红斑)的可能缓解作用。
采用体外模型来证明TRF通过减轻紫外线诱导的氧化应激和炎症来缓解光损伤的能力。使用两种离体模型(皮肤抗氧化潜力和自由基防晒系数)来确定不同TRF配方对皮肤的功效。对20名受试者进行了紫外线诱导的红斑保护试验。
涉及HaCaT角质形成细胞的体外研究表明,TRF具有显著的抗炎特性,这表现为紫外线诱导的促炎细胞因子上调受到抑制。发现1%的TRF配方在增强皮肤内源性抗氧化保护方面比中链甘油三酯中的1%TRF更有效,因为其具有更高的渗透动力学特征。临床研究表明,配制的TRF早在应用6小时后就可有效减轻紫外线照射后的皮肤发红。在接受TRF治疗的受试者中还观察到显著的色素沉着减退。
TRF可作为一种抗炎化合物,每天安全使用以保护皮肤免受紫外线诱导的炎症衰老。