1. Academic Validation
  2. Molecular hydrogen mitigates NEMP-induced male reproductive cells apoptosis via scavenging ROS

Molecular hydrogen mitigates NEMP-induced male reproductive cells apoptosis via scavenging ROS

  • Electromagn Biol Med. 2025 Jun 6:1-13. doi: 10.1080/15368378.2025.2513901.
Long Ma 1 2 Shijun Bao 1 Xiwen Yang 1 3 Hanyue Liu 4 Yanlan Xiao 1 Xiaoting Lin 1 3 Xinyue Cui 1 Qingwei Zhao 1 Jia-Feng Wang 5 Hongli Yan 3 Zhiyong Liu 6 Youxiang Guo 7 Jiaming Guo 1 8
Affiliations

Affiliations

  • 1 Department of Radiation Medicine, College of Naval Medicine, Naval Medical University, Shanghai, China.
  • 2 Department of Clinical Laboratory, Beidaihe Rehabilitation and Recuperation Center of PLA, Qinhuangdao, China.
  • 3 Center of Reproductive Medicine, Shanghai Changhai Hospital, Naval Medical University, Shanghai, China.
  • 4 College of Basic Medicine, Naval Medical University, Shanghai, China.
  • 5 Department of Anesthesiology, Shanghai Changhai Hospital, Naval Medical University, Shanghai, China.
  • 6 Department of Urology, Shanghai Changhai Hospital, Naval Medical University, Shanghai, China.
  • 7 Department of Surgery, 63650 Military Hospital, Urumqi, China.
  • 8 Shanghai Key Laboratory of Nautical Medicine and Translation of Drugs and Medical Devices, Naval Medical University, Shanghai, China.
Abstract

Nuclear electromagnetic pulse (NEMP) as a public hygiene issue has aroused increasing attention. Recent research has demonstrated that NEMP can disrupt the male reproductive system. Molecular hydrogen, a selective hydroxyl radical scavenger, has been shown to have the protective effects against many diseases closely associated with oxidative damage. We sought to characterize the beneficial effects of molecular hydrogen on the male reproductive cells. GC-1 spermatogonial cells and TM-3 Leydig cells, two well-established male reproductive cell lines, were exposed to NEMP. Finally, we employed transcriptomic Sequencing to explore the transcriptional changes in male reproductive cells induced by NEMP exposure. For the intervention, cells were incubated in hydrogen gas (H2 75%, O2 20%, and CO2 5%) for 1 h. NEMP exposure induced damage to both GC-1 and TM-3 cells, resulting in decreased cell viability and increased Apoptosis rates. However, intervention with molecular hydrogen significantly mitigated this damage. Specifically, molecular hydrogen reduced the production of ROS and restored mitochondrial function, thereby alleviating oxidative stress and Apoptosis. Transcriptomic Sequencing analysis showed that NEMP affected the molecular function term antioxidant activity, particularly Gstp2, a gene predicted to be located in the mitochondria to promote glutathione transferase activity. Hence, molecular hydrogen is a promising protective agent against NEMP in the mechanism that other Antioxidants cannot be available.

Keywords

Molecular hydrogen; antioxidant; male reproductive system; mitochondrial ROS; nuclear electromagnetic pulse; reactive oxygen species.

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