Department of Biology, Faculty of Sciences, Autónoma University of Madrid (UAM) 28049, Madrid, Spain.
Medical Affairs Department, Cantabria Labs, 28043 Madrid, Spain.
Oxid Med Cell Longev. 2020 Apr 14;2020:2908108. doi: 10.1155/2020/2908108. eCollection 2020.
Humans in modern industrial and postindustrial societies face sustained challenges from environmental pollutants, which can trigger tissue damage from xenotoxic stress through different mechanisms. Thus, the identification and characterization of compounds capable of conferring antioxidant effects and protection against these xenotoxins are warranted. Here, we report that the natural extract of named Fernblock®, known to reduce aging and oxidative stress induced by solar radiations, upregulates the NRF2 transcription factor and its downstream antioxidant targets, and this correlates with its ability to reduce inflammation, melanogenesis, and general cell damage in cultured keratinocytes upon exposure to an experimental model of fine pollutant particles (PM). Our results provide evidence for a specific molecular mechanism underpinning the protective activity of Fernblock® against environmental pollutants and potentially other sources of oxidative stress and damage-induced aging.
现代人在现代工业和后工业社会中面临着持续的环境污染物的挑战,这些污染物可以通过不同的机制引发外来毒性应激导致的组织损伤。因此,有必要确定和描述能够赋予抗氧化作用并抵御这些外来毒素的化合物。在这里,我们报告了一种名为 Fernblock® 的天然提取物,已知其可以减少太阳辐射引起的衰老和氧化应激,上调 NRF2 转录因子及其下游抗氧化靶标,并且这与它在暴露于细颗粒污染物(PM)的实验模型时降低培养角质细胞中的炎症、黑色素生成和一般细胞损伤的能力相关。我们的研究结果为 Fernblock® 针对环境污染物以及其他潜在的氧化应激和损伤诱导衰老源的保护活性提供了特定的分子机制证据。