The Impact of Diabetes Mellitus-Related Oxidative Stress on Male Fertility: A Review

Simon Mwaringa Dena1, Adesola Oluwaseun Adeleye1, Kutullo Mohlala1

  • 1Department of Medical Biosciences, Faculty of Natural Sciences, University of the Western Cape, Cape Town, South Africa.

Journal of Diabetes
|October 22, 2025
PubMed

Insights

Diabetes mellitus (DM) causes male infertility through oxidative stress (OS), damaging sperm and disrupting hormones. Managing OS via glycemic control and lifestyle changes is crucial for preserving reproductive health in diabetic men.

Area of Science:

  • Reproductive Endocrinology
  • Metabolic Syndrome
  • Oxidative Stress Biology

Background:

  • Diabetes mellitus (DM) is a major cause of male reproductive dysfunction.
  • Hyperglycemia-induced oxidative stress (OS) is the primary mechanism.
  • This leads to sperm damage, hormonal imbalance, and impaired spermatogenesis.

Purpose of the Study:

  • To review the molecular, endocrine, and clinical impacts of DM-related OS on male fertility.
  • To highlight the role of metabolic pathways and comorbidities.
  • To discuss potential interventions for mitigating reproductive damage.

Main Methods:

  • Literature review synthesizing current evidence.
  • Analysis of molecular mechanisms of oxidative damage.
  • Examination of clinical data linking DM to fertility outcomes.

Main Results:

  • DM-induced OS damages sperm (motility, morphology, DNA integrity) and disrupts the hypothalamic-pituitary-gonadal axis.
  • Advanced glycation end products (AGEs), inflammation, and comorbidities like obesity exacerbate testicular dysfunction.
  • Diabetic men exhibit poorer semen parameters and reduced fertility, even with assisted reproductive technologies.

Conclusions:

  • Oxidative stress is a critical factor in diabetes-related male infertility.
  • Integrated management strategies including glycemic control, antioxidant therapy, and lifestyle modifications are essential.
  • Preserving male reproductive function in diabetic individuals requires addressing both metabolic and oxidative damage.

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