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Busulfan-Induced Male Infertility: Mechanisms, Therapeutic Interventions, and Future Directions
Tianyu Li1,2, Zhichen Tang1, Yaping Song1
1Laboratory of Molecular Translational Medicine, Center for Translational Medicine, Key Laboratory of Birth Defects and Related Diseases of Women and Children (Sichuan University), Ministry of Education, West China Second University Hospital, Sichuan University, Chengdu, Sichuan, P.R. China.
Abstract:
This review summarizes the molecular and cellular mechanisms underlying busulfan-induced male infertility and evaluates the translational potential of current and emerging therapeutic strategies. Evidence indicates that busulfan induces germ cell DNA alkylation damage, triggers sustained oxidative stress, and activates multiple cell death pathways. These events are accompanied by supporting cell dysfunction, disruption of the blood-testis barrier (BTB), and endocrine imbalance, collectively driving progressive impairment of spermatogenesis. In response to these pathological processes, various interventions have been explored, including antioxidant molecules, natural extracts, epigenetic modulation, and stem cell-related approaches, many of which show partial improvement of spermatogenic function in experimental models. In addition, clinical strategies used for other forms of male infertility, such as gonadotropin supplementation and antioxidant supportive therapy, provide relevant reference frameworks for chemotherapy-associated fertility impairment. However, most studies on busulfan-induced infertility remain preclinical, and their benefits largely reflect supportive modulation of the testicular microenvironment rather than definitive restoration of spermatogonial stem cells (SSCs) or repair of genotoxic damage. Based on an integrated assessment of current evidence, this review highlights key unresolved challenges, including the lack of a defined therapeutic safety window, limitations in targeted delivery, and difficulties in achieving fundamental reconstruction of the spermatogenic system. Accordingly, future studies should place greater emphasis on more effective isolation and protection of testicular tissue, development of targeted drug delivery systems, and strategies aimed at spermatogenic system reconstruction.
Insights
Busulfan causes male infertility by damaging germ cell DNA and disrupting testicular function. Current therapies offer only partial improvement, highlighting the need for strategies that reconstruct the spermatogenic system.
Area of Science:
- Reproductive Biology
- Toxicology
- Molecular Medicine
Background:
- Busulfan is a chemotherapy agent known to induce male infertility.
- Understanding the molecular and cellular mechanisms of busulfan toxicity is crucial for developing effective treatments.
Purpose of the Study:
- To review the mechanisms of busulfan-induced male infertility.
- To evaluate current and emerging therapeutic strategies for mitigating this condition.
Main Methods:
- Literature review of preclinical and clinical studies.
- Analysis of molecular pathways involved in busulfan toxicity.
- Assessment of therapeutic interventions targeting oxidative stress, cell death, and testicular microenvironment.
Main Results:
- Busulfan induces germ cell DNA damage, oxidative stress, and cell death.
- Supporting cell dysfunction, blood-testis barrier disruption, and endocrine imbalance contribute to spermatogenesis impairment.
- Interventions like antioxidants and stem cell approaches show partial benefits in experimental models.
Conclusions:
- Current therapeutic strategies offer supportive modulation rather than definitive restoration of spermatogenesis.
- Key challenges include lack of therapeutic window, targeted delivery, and complete spermatogenic system reconstruction.
- Future research should focus on testicular tissue protection, targeted delivery, and spermatogenic system reconstruction.
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