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UV-A emission from fluorescent energy-saving light bulbs alters local retinoic acid homeostasis

机译:荧光节能灯泡发出的UV-A辐射改变了局部维甲酸的体内稳态

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Worldwide bans on incandescent light bulbs (ILBs) drive the use of compact fluorescent light (CFL) bulbs, which emit ultraviolet (UV) radiation. Potential health issues of these light sources have already been discussed, including speculation about the putative biological effects on light exposed tissues, yet the underlying mechanisms remain unclear. We hypothesized photoisomerization of all-trans retinoic acid (at-RA), a highly light sensitive morphogen, into biologically less active isomers, as a mechanism mediating biological effects of CFLs. Local at-RA is anti-carcinogenic, entrains molecular rhythms and is crucial for skin homeostasis. Therefore, we quantified the impact of CFL irradiation on extra-and intracellular levels of RA isomers using an epidermal cell culture model. Moreover, a biologically relevant impact of CFL irradiation was assessed using highly at-RA-sensitive human neuroblastoma cells. Dose-dependent conversion of extra-and intracellular at-RA into the biologically less active 13-cis-isomer was significantly higher in CFL vs. ILB exposure and completely preventable by employing a UV-filter. Moreover, pre-irradiation of culture media by CFL attenuated at-RA-specific effects on cell viability in human af-RA-sensitive cells in a dose-dependent manner. These findings point towards a biological relevance of CFL-induced at-RA decomposition, providing a mechanism for CFL-mediated effects on environmental health.
机译:世界范围内对白炽灯泡(ILB)的禁令推动了紧凑型荧光灯(CFL)灯泡的使用,这种灯泡会发出紫外线(UV)辐射。已经讨论了这些光源的潜在健康问题,包括推测对暴露于光的组织的潜在生物学影响,但其潜在机制仍不清楚。我们假设全反式视黄酸(at-RA),一种高度光敏性的形态发生剂的光异构化为生物活性较低的异构体,作为介导CFL生物学作用的机制。局部at-RA具有抗致癌性,并带有分子节律,对皮肤动态平衡至关重要。因此,我们使用表皮细胞培养模型量化了CFL辐射对RA异构体细胞外和细胞内水平的影响。此外,使用高度对RA敏感的人类神经母细胞瘤细胞评估了CFL辐射的生物学相关影响。与ILB暴露相比,CFL中胞外at-RA剂量依赖性转化为生物活性较低的13-顺式异构体的比例显着更高,并且可以通过使用紫外线过滤器完全防止。此外,CFL预先照射培养基会以剂量依赖的方式减弱at-RA特异性对人af-RA敏感细胞中细胞活力的影响。这些发现指向CFL诱导的at-RA分解的生物学相关性,为CFL介导的对环境健康的影响提供了一种机制。

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