Millenbaugh Nancy J, Roth Caleb, Sypniewska Roza, Chan Victor, Eggers Jeffrey S, Kiel Johnathan L, Blystone Robert V, Mason Patrick A
General Dynamics Advanced Information Systems, San Antonio, Texas 78235, USA.
Radiat Res. 2008 Mar;169(3):288-300. doi: 10.1667/RR1121.1.
To better understand the cellular and molecular responses to overexposure to millimeter waves, alterations in the gene expression profile and histology of skin after exposure to 35 GHz radiofrequency radiation were investigated. Rats were subjected to sham exposure, to 42 degrees C environmental heat, or to 35 GHz millimeter waves at 75 mW/cm(2). Skin samples were collected at 6 and 24 h after exposure for Affymetrix GeneChip analysis. The skin was harvested from a separate group of rats at 3-6 h or 24-48 h after exposure for histopathology analysis. Microscopic findings observed in the dermis of rats exposed to 35 GHz millimeter waves included aggregation of neutrophils in vessels, degeneration of stromal cells, and breakdown of collagen. Changes were detected in 56 genes at 6 h and 58 genes at 24 h in the millimeter-wave-exposed rats. Genes associated with regulation of transcription, protein folding, oxidative stress, immune response, and tissue matrix turnover were affected at both times. At 24 h, more genes related to extracellular matrix structure and chemokine activity were altered. Up-regulation of Hspa1a, Timp1, S100a9, Ccl2 and Angptl4 at 24 h by 35 GHz millimeter-wave exposure was confirmed by real-time RT-PCR. These results obtained from histopathology, microarrays and RT-PCR indicate that prolonged exposure to 35 GHz millimeter waves causes thermally related stress and injury in skin while triggering repair processes involving inflammation and tissue matrix recovery.
为了更好地理解细胞和分子对毫米波过度暴露的反应,研究了暴露于35GHz射频辐射后皮肤的基因表达谱和组织学变化。将大鼠分为假暴露组、42℃环境热暴露组或75mW/cm(2)的35GHz毫米波暴露组。在暴露后6小时和24小时收集皮肤样本进行Affymetrix基因芯片分析。在暴露后3-6小时或24-48小时从另一组大鼠身上采集皮肤进行组织病理学分析。在暴露于35GHz毫米波的大鼠真皮中观察到的微观发现包括血管中嗜中性粒细胞聚集、基质细胞变性和胶原蛋白分解。在毫米波暴露的大鼠中,6小时时检测到56个基因发生变化,24小时时检测到58个基因发生变化。与转录调控、蛋白质折叠、氧化应激、免疫反应和组织基质周转相关的基因在两个时间点均受到影响。在24小时时,更多与细胞外基质结构和趋化因子活性相关的基因发生改变。通过实时RT-PCR证实,35GHz毫米波暴露在24小时时上调了Hspa1a、Timp1、S100a9、Ccl2和Angptl4。这些从组织病理学、微阵列和RT-PCR获得的结果表明,长时间暴露于35GHz毫米波会导致皮肤产生热相关应激和损伤,同时引发涉及炎症和组织基质恢复的修复过程。