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February 28, 2026Current Research in Toxicology2 citationsOpen Access

Bridging the Gap: How environmental exposures compromise male fertility and clinical Outlook

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HCHongxia ChenSHShenglong HeZZZhuoran Zhu

Key Points

  • This review aims to explore the link between environmental exposures and male fertility issues through the male reproductive exposome framework.
  • Synthesized current evidence on environmental toxicants and fertility outcomes
  • Evaluated life-course vulnerability during critical developmental windows
  • Discussed biological pathways including epigenetic reprogramming and oxidative stress
  • Highlighted challenges in assessing toxicity from chemical mixtures
  • Emphasized the need for integration of epidemiological research and clinical practice.
  • Identified impaired semen parameters and altered hormone profiles as effects of environmental exposures
  • Stressed the significance of critical exposure windows from gestation to adulthood
  • Proposed mechanism-informed biomarker panels for early risk detection
  • Outlined future challenges in mixture toxicity assessment
  • Advocated for proactive strategies to mitigate environmental risks.

Abstract

• Introduces the “male reproductive exposome” as a novel integrative framework. • Epigenetic inheritance as a key mechanism for paternal environmental legacy. • Defines specific life-course vulnerability windows from gestation to adulthood. • Identifies mixture toxicity as a central challenge for future risk assessment. The growing prevalence of male infertility has become a significant clinical and public health issue, with environmental exposures increasingly recognized as a major modifiable risk factor. This review synthesizes current evidence within the framework of the “male reproductive exposome”, linking lifelong exposure to environmental toxicants—ranging from endocrine-disrupting chemicals to emerging contaminants—to clinically relevant outcomes such as impaired semen parameters, altered reproductive hormone profiles, and an increased risk of testicular dysfunction. We critically evaluate the concept of life-course vulnerability, highlighting how exposures during critical developmental windows—including prenatal, peripubertal, and adult stages—may program distinct pathological trajectories that manifest as reproductive disorders in later life. In addition to classical mechanisms of endocrine disruption, we emphasize oxidative stress and, particularly, epigenetic reprogramming of the germline as key biological pathways contributing to both immediate fertility impairments and potential transgenerational health effects. Furthermore, we discuss the translational importance of these insights, focusing on the development of mechanism-informed biomarker panels for early detection and risk stratification, as well as addressing the persistent challenge of assessing toxicity from complex chemical mixtures. Finally, we underscore the necessity of integrating epidemiological research, mechanistic toxicology, and clinical practice to advance preventive and clinical strategies. This integration requires overcoming methodological challenges in mixture exposure assessment, accelerating biomarker discovery for personalized risk prediction, and formulating evidence-based public health interventions. In a word, this review advocates for a proactive, science-driven approach to mitigate environmental threats to male reproductive health and protect the well-being of future generations.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69a286370a974eb0d3c00f98https://doi.org/10.1016/j.crtox.2026.100286
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