Atikah Hairulazam, Siti Fatimah Ibrahim, Khairul Osman, Mohd Helmy Mokhtar, Aini Farzana Zulkefli, Mohd Farisyam Mat Ros, Norazurashima Jamaludin, Syed Muhamad Asyraf Syed Taha, Sivasatyan Vijay, Zahriladha Zakaria, Amyrul Azuan Mohd Bahar, Farah Hanan Fathihah Jaffar
Background and objectives The advancement of 5G technology is highly anticipated due to its faster data transmission, yet its potential impact on male fertility remains unclear. This study evaluated the effects of 5G frequencies at 3.5 GHz and 24 GHz on sperm parameters, mating success, and offspring outcomes. Methods A total of 18 male Sprague Dawley rats (n=18) were divided into three groups: a Control group, a 3.5 GHz group, and a 24 GHz group (n=6). The Control group was sham-exposed. In contrast, the 3.5 GHz and 24 GHz groups were exposed to their respective frequencies for 7 h daily over 60 d. Following 46 d of exposure, a 1:1 mating procedure was conducted. Female rats (n=18) were monitored until gestation d 28 to assess pregnancy rates and birth metrics. Later, the male rats were sacrificed, and sperm quality was evaluated. Results Both exposed groups exhibited a significant decrease in sperm concentration and motility (P<0.001) compared to the Control group. The 24 GHz group had a lower pregnancy rate, whereas the 3.5 GHz group showed a lower live birth rate. Congenital anomalies were observed in the 3.5 GHz group, whereas the 24 GHz group presented significantly lower birth weights (P< 0.001). Interpretation and conclusions The findings suggest prolonged exposure to 5G frequencies may have a negative impact on male fertility, pregnancy outcomes, and the birth metrics.