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Updated: Sep 13, 2025

Author Spotlight: Advancing Male Infertility Research by Unraveling Sperm Metabolism and Mitochondrial Function
Published on: June 23, 2023
Idiopathic male infertility - what are we missing?
Luca Boeri1, Hussein Kandil2, Jonathan Ramsay3
1Department of Urology, IRCCS Fondazione Ca' Granda, Ospedale Maggiore Policlinico, Milan, Italy.
Abstract:
Couple's infertility is a rising issue worldwide affecting approximately 15% of couples. In 50% of the couples, a male factor infertility can be identified. Moreover, 30% of the men exhibit reduced sperm quality without any identifiable reason, thereby delineating the condition of idiopathic male infertility (IMI). Despite numerous improvements in the diagnosis and treatment of male infertility over the last decades, idiopathic forms are still the most challenging clinical dilemmas. The aim of this article is to describe the comprehensive diagnostic work-up that each idiopathic infertile man should follow. Moreover, potential new pathophysiological mechanisms and suggested treatment options are discussed. A detailed medical history and an extensive physical examination are mandatory to investigate potential treatable causes of MFI. Similarly, standard semen analysis has been proven to be limited in capturing the fecundability of the spermatozoa itself, therefore more advanced examinations, such as sperm DNA fragmentation (SDF) and oxidative stress measurement, are becoming important in clinical practice for IMI. In terms of diagnostic tools, imaging and genetic investigations are useful to classify idiopathic infertile men, however, epigenetic changes have demonstrated to have a role in sperm production and a prognostic value in fertility outcomes. Antioxidant treatment for IMI has been found to be a valid option to counteract ROS action, while gonadotropins are used to improve sperm quality and SDF. Artificial intelligence is promising to better manage idiopathic infertile men in terms of diagnosis and treatment options.
Insights
Idiopathic male infertility (IMI) affects 30% of men with reduced sperm quality. Advanced diagnostics like sperm DNA fragmentation and oxidative stress tests, alongside AI, offer new hope for diagnosis and treatment.
Area of Science:
- Reproductive Medicine
- Andrology
- Genetics
Background:
- Male factor infertility affects 50% of infertile couples, with 30% diagnosed as idiopathic male infertility (IMI).
- IMI presents diagnostic and therapeutic challenges despite advances in male infertility management.
- Standard semen analysis has limitations in assessing sperm's true fertilizing potential.
Purpose of the Study:
- To outline a comprehensive diagnostic approach for men with idiopathic male infertility.
- To explore novel pathophysiological mechanisms contributing to IMI.
- To discuss emerging and established treatment strategies for IMI.
Main Methods:
- Detailed medical history and physical examination to identify treatable causes.
- Advanced semen analysis including sperm DNA fragmentation (SDF) and oxidative stress measurements.
- Utilizing imaging, genetic, and epigenetic investigations for classification and prognosis.
Main Results:
- Sperm DNA fragmentation and oxidative stress are crucial markers for IMI assessment.
- Epigenetic changes play a role in sperm production and fertility outcomes.
- Antioxidant therapies and gonadotropins show promise in improving sperm quality and SDF.
Conclusions:
- A multi-faceted diagnostic approach beyond standard semen analysis is essential for IMI.
- Emerging tools like epigenetic analysis and AI can enhance IMI management.
- Targeted treatments, including antioxidants and gonadotropins, can improve fertility outcomes in IMI patients.
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