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Individual and Joint Effect of Particulate Matter and Night-Time Temperature on Sperm Quality: A Large Retrospective
Junjie Liu1, Ting Xu2, Tingting Dai2
1Henan Human Sperm Bank, The Third Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, China.
Abstract:
The joint effect of particulate matter (PM) and night-time temperature on sperm quality remains unclear. We aimed to investigate the individual and joint effects of PM and night-time temperature on sperm quality. This population-based cohort study with 19,318 volunteers and 55,610 semen samples was conducted in Henan, China, from 2013 to 2020. High spatial resolution gridded data sets were used to estimated individual PM (PM1, PM2.5, and PM10) and night-time temperature exposures during the entire period (0-90 lag days) and three critical periods (0-9, 10-14, 70-90 lag days) of sperm development. Generalized linear mixed models assessed the individual and joint effects on sperm quality. We found that the per interquartile range (IQR) increase in PM1 throughout spermatogenesis was associated with decreased sperm count (β, -0.068; 95% CI: -0.116, -0.021). Increasing PM2.5 per IQR was related to reductions in sperm concentration 0.052 (95% CI: -0.098, -0.005) and sperm count 0.086 (95% CI: -0.134, -0.039). Night-time temperature was negatively related to sperm concentration, sperm count, and sperm motility (all P < 0.05). Combined higher night-time temperatures and PM1 (or PM2.5) concentrations significantly impacted sperm concentration, count, and motility (all P interaction < 0.05). Synergistic effects of night-time temperature and PM1 on abnormal progressive motility were observed (relative excess risk due to interaction (RERI), 0.27; 95% CI: 0.02, 0.53). Similar joint effects of night-time temperatures and PM2.5 and PM10 on sperm quality were observed. Our results suggested that individual and joint effects of night-time temperature and PM exposure negatively impact sperm quality. These findings highlight the need for public health strategies to mitigate air pollution and global warming and promote male reproductive health.
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