The dose-response relationship between seminal plasma metal mixtures and oligo-astheno-teratozoospermia: a
Xiangxiang Liu1, Chen Chen1, Yiting Chen1
1Department of Clinical Laboratory, Women's Hospital of Nanjing Medical University, Nanjing Women and Children's Healthcare Hospital, Nanjing, Jiangsu 210004, China.
Background:
Oligo-astheno-teratozoospermia (OAT), a leading cause of male infertility, affects approximately 30 % of reproductive-aged men. While trace elements influence semen quality, prior investigations predominantly focused on single-element effects. Critical knowledge gaps persist regarding the combinatorial impacts of multi-element exposures on OAT pathogenesis.
Methods:
Our study enrolled 743 OAT cases and 179 controls. The seminal plasma element concentrations were quantified via inductively coupled plasma-mass spectrometry (ICP-MS). Analytical approaches mainly included restricted cubic splines (RCS) for dose-response modeling, and Bayesian kernel machine regression (BKMR) and weighted quantile sum (WQS) regression to evaluate joint effects and identify primary contributors.
Results:
The levels of seminal plasma calcium (Ca, p = 0.042), lithium (Li, p = 0.027), manganese (Mn, p = 0.009), cobalt (Co, p = 0.015), zinc (Zn, p = 0.021), and cadmium (Cd, p = 0.004) were significantly elevated in OAT patients. The dose-response relationships between OAT risks and seminal plasma metals were nonlinear for Li (pfor nonlinear = 0.042), and monotonic linear associations for Ca, Mn, Co, Zn, and Cd (all pfor nonlinear > 0.05). BKMR and WQS regression models demonstrated a positive overall mixture effect on OAT risk with Cd, Li, and Mn as primary drivers.
Conclusion:
This study provided novel evidence that seminal plasma trace elements dyshomeostasis, particularly involving Cd, Li, and Mn, was intricately linked to OAT risk through complex mechanisms.
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