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5G电磁辐射通过抑制活性氧生成在体外减弱皮肤黑色素生成。

5G Electromagnetic Radiation Attenuates Skin Melanogenesis In Vitro by Suppressing ROS Generation.

作者信息

Kim Kyuri, Lee Young Seung, Kim Nam, Choi Hyung-Do, Lim Kyung-Min

机构信息

College of Pharmacy, Ewha Womans University, Seoul 03760, Korea.

Radio & Satellite Research Division, Electronics and Telecommunications Research Institute, Daejeon 34129, Korea.

出版信息

Antioxidants (Basel). 2022 Jul 26;11(8):1449. doi: 10.3390/antiox11081449.

Abstract

Recently, the impacts of 5G electromagnetic radiation (EMR) with 28 GHz on human health have been attracting public attention with the advent of 5G wireless communication. Here, we report that 5G (28 GHz) EMR can attenuate the skin pigmentation in murine melanoma cells (B16F10) and a 3D pigmented human epidermis model (Melanoderm™). B16 cells were exposed to 5G (28 GHz) with or without α-MSH for 4 h per day. Interestingly, 5G attenuated α-MSH-induced melanin synthesis. Fontana-Masson staining confirmed that the dendritic formation of α-MSH stimulated B16 cells was diminished by 5G exposure. To confirm the anti-melanogenic effect of 5G EMR, MelanoDerm™ was irradiated with 5G at a power intensity of 10 W/m for 4 h a day for 16 days and melanin distribution was detected with Fontana-Masson staining, which supported the anti-melanogenic effect of 5G EMR. Consistently, 5G EMR suppressed α-MSH induced upregulation of melanogenic enzymes; tyrosinase, TRP-1, and TRP-2. Of note, 5G EMR attenuated ROS production stimulated by α-MSH and HO, suggesting that 5G EMR may dissipate ROS generation, which is pivotal for the melanin synthesis. Collectively, we demonstrated that 5G EMR can attenuate skin pigmentation by attenuating ROS generation.

摘要

最近,随着5G无线通信的出现,28吉赫兹的5G电磁辐射(EMR)对人类健康的影响已引起公众关注。在此,我们报告5G(28吉赫兹)EMR可减轻小鼠黑色素瘤细胞(B16F10)和三维色素沉着人表皮模型(Melanoderm™)中的皮肤色素沉着。B16细胞每天暴露于有或没有α-MSH的5G(28吉赫兹)环境中4小时。有趣的是,5G减弱了α-MSH诱导的黑色素合成。Fontana-Masson染色证实,5G暴露减少了α-MSH刺激的B16细胞的树突形成。为了证实5G EMR的抗黑色素生成作用,每天以10 W/m的功率强度用5G照射MelanoDerm™ 4小时,持续16天,并用Fontana-Masson染色检测黑色素分布,这支持了5G EMR的抗黑色素生成作用。一致地,5G EMR抑制了α-MSH诱导的黑色素生成酶(酪氨酸酶、TRP-1和TRP-2)的上调。值得注意的是,5G EMR减弱了α-MSH和HO刺激产生的ROS,这表明5G EMR可能消除ROS的产生,而ROS的产生对黑色素合成至关重要。总的来说,我们证明了5G EMR可以通过减弱ROS的产生来减轻皮肤色素沉着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1828/9331092/6de283748276/antioxidants-11-01449-sch001.jpg

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