Effects of Warfarin Therapy on Semen Quality, DNA Integrity, Hormonal Profile and Molecular Alterations in Male Patients Undergoing Cardiac Surgery: A Prospective Comparative Pilot Study
试验速览
- 阶段
- 不适用
- 状态
- 尚未招募
- 发起方
- 入组人数
- 90
- 试验地点
- 1
- 主要终点
- Change in sperm concentration over time
研究概览
简要总结
Young male patients undergoing cardiac surgery may require oral anticoagulation with warfarin either lifelong, such as after mechanical valve replacement, or for a limited postoperative period, for example following valve repair or bioprosthetic valve implantation. Although the teratogenic effects of warfarin during pregnancy are well established, prospective clinical data on the potential impact of warfarin therapy on male reproductive health are scarce. This gap is particularly relevant for patients of reproductive age who may have a present or future desire for fatherhood.
Warfarin acts as a vitamin K antagonist by inhibiting the vitamin K epoxide reductase complex, thereby reducing the availability of functional vitamin K. Beyond its role in coagulation, vitamin K is increasingly recognized as an important regulator of spermatogenesis, mitochondrial function, oxidative balance, and steroid hormone synthesis. Experimental and translational evidence suggests that disruption of vitamin K-dependent pathways may impair sperm quality, DNA integrity, mitochondrial bioenergetics, and reproductive hormone homeostasis. In addition, warfarin exposure has been associated with increased oxidative stress and inflammatory responses, both of which are known contributors to male infertility.
Despite these biologically plausible mechanisms, no prospective observational studies have systematically evaluated semen parameters, sperm DNA fragmentation, hormonal profiles, inflammatory markers, and advanced molecular sperm alterations in men exposed to warfarin after cardiac surgery. Consequently, structured andrological assessment is rarely incorporated into routine preoperative counseling or postoperative follow-up in this population.
This prospective pilot observational study aims to investigate the association between warfarin therapy and male reproductive health in patients undergoing elective cardiac surgery. Male patients aged 18 to 50 years will be enrolled and observed in three cohorts based on clinical indication for anticoagulation: (1) long-term warfarin therapy following mechanical valve replacement; (2) short-term warfarin therapy (approximately three months) after selected cardiac procedures; and (3) a control cohort undergoing cardiac surgery without an indication for long-term oral anticoagulation beyond standard perioperative prophylaxis.
Participants will undergo comprehensive andrological assessments at baseline and during follow-up up to 12 months after surgery. Evaluations will include semen analysis according to World Health Organization guidelines, assessment of sperm DNA fragmentation, reproductive hormonal profiles, and seminal inflammatory markers. Exploratory analyses will assess mitochondrial function, oxidative stress, and molecular alterations in spermatozoa. Detailed warfarin exposure data, including dose, cumulative exposure, international normalized ratio values, and time in therapeutic range, will be collected to explore potential exposure-response relationships.
As a pilot study, the primary aims are to assess feasibility and generate preliminary clinical evidence to inform future larger studies. The findings may contribute to improved clinical counseling, fertility preservation strategies, and integration of reproductive health considerations into the multidisciplinary management of young male cardiac surgery patients.
详细描述
This prospective, comparative, pilot observational study is designed to investigate the effects of warfarin therapy on male reproductive health in patients undergoing elective cardiac surgery, integrating conventional andrological assessment with inflammatory, hormonal, and exploratory molecular analyses.
Young male patients undergoing cardiac surgery may require oral anticoagulation with warfarin either lifelong, most commonly after mechanical heart valve replacement, or for a limited postoperative period following selected procedures such as valve repair or bioprosthetic valve implantation. Although the teratogenic effects of warfarin during pregnancy are well established, prospective clinical data addressing its potential impact on male reproductive health are scarce. This knowledge gap is particularly relevant for patients of reproductive age who may have a present or future desire for fatherhood and for whom fertility-related counseling is increasingly important.
Warfarin exerts its anticoagulant effect through inhibition of the vitamin K epoxide reductase (VKOR) complex, resulting in reduced availability of biologically active vitamin K. Beyond its role in coagulation, vitamin K-dependent pathways are involved in key aspects of male reproductive physiology, including spermatogenesis, mitochondrial bioenergetics, oxidative stress regulation, inflammatory signaling, and steroid hormone synthesis. Experimental and translational evidence suggests that disruption of these pathways may impair semen quality, sperm DNA integrity, mitochondrial function, and endocrine homeostasis, while promoting oxidative stress and inflammatory responses known to contribute to male infertility. However, these mechanisms have not been systematically explored in prospective clinical studies involving men exposed to warfarin after cardiac surgery.
The study adopts a prospective cohort design with a comparative approach and includes three groups of male patients stratified according to clinical indication for anticoagulation: (1) patients receiving long-term warfarin therapy following mechanical valve replacement; (2) patients receiving short-term postoperative warfarin therapy, typically for approximately three months, after selected cardiac surgical procedures; and (3) a control group undergoing cardiac surgery without indication for long-term oral anticoagulation beyond standard perioperative prophylaxis. This design allows evaluation of different exposure patterns, including chronic exposure, transient exposure, and non-exposure, and supports exploratory assessment of exposure-response relationships and reversibility after treatment discontinuation.
Participants undergo structured and standardized andrological evaluations at baseline (preoperative) and during longitudinal follow-up up to 12 months after surgery. Conventional semen analysis is performed according to World Health Organization (WHO) guidelines and includes assessment of sperm concentration, progressive motility, morphology, and related semen parameters. Sperm DNA integrity is evaluated through measurement of the sperm DNA fragmentation index (DFI) using the sperm chromatin dispersion (SCD) assay.
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 50 Years(Adult)
- 性别
- Male
- 接受健康志愿者
- 否
入选标准
- •Male sex, age between 18 and 50 years;
- •Scheduled for elective cardiac surgery (valve replacement, valve repair, or other cardiac procedures) with or without indication to Warfarin therapy;
- •Ability and willingness to provide semen samples at scheduled timepoints;
- •No previous diagnosis of male infertility documented in medical records;
- •Signed informed consent.
排除标准
- •Known severe testicular pathology (for example, untreated high-grade varicocele, history of cryptorchidism, orchiectomy, testicular tumors);
- •Prior chemotherapy or pelvic radiotherapy;
- •Current or recent use of anabolic steroids or other drugs known to strongly impair spermatogenesis;
- •Known endocrine disorders affecting spermatogenesis (for example, untreated hypogonadism, hyperprolactinaemia, severe thyroid disease);
- •Active genitourinary infection at the time of evaluation;
- •Life expectancy less than 12 months or clinical conditions preventing adherence to follow-up.
研究组 & 干预措施
Long-term Warfarin Group
Male patients undergoing cardiac surgery with an indication for lifelong oral anticoagulation with warfarin, typically after mechanical heart valve replacement. Warfarin therapy is prescribed as part of standard clinical care and is not assigned by the study.
干预措施: Semen analysis, sperm DNA fragmentation and hormonal evaluation (Other)
Short-term Warfarin Group
Male patients undergoing cardiac surgery with an indication for short-term postoperative warfarin therapy (approximately three months), such as after valve repair or bioprosthetic valve implantation. Anticoagulation is administered according to standard clinical practice and not determined by the study protocol.
干预措施: Semen analysis, sperm DNA fragmentation and hormonal evaluation (Other)
Control Group (No Long-term Anticoagulation)
Male patients undergoing cardiac surgery without an indication for long-term oral anticoagulation beyond routine perioperative prophylaxis. These patients serve as a comparison group and do not receive chronic warfarin therapy.
干预措施: Semen analysis, sperm DNA fragmentation and hormonal evaluation (Other)
结局指标
主要结局
Change in sperm concentration over time
时间窗: Baseline (T0) to 6 months (T2) and 12 months (T3)
Change in sperm concentration expressed as millions of spermatozoa per milliliter (millions/mL), assessed by standard semen analysis performed according to World Health Organization (WHO) guidelines. Correlation between warfarin exposure status (long-term exposure, short-term exposure, or no exposure) and changes in sperm concentration over time will be evaluated.
Change in progressive sperm motility over time
时间窗: Baseline (T0) to 6 months (T2) and 12 months (T3)
Change in progressive sperm motility expressed as percentage (%), assessed by standard semen analysis according to World Health Organization (WHO) guidelines. Correlation between warfarin exposure status (long-term exposure, short-term exposure, or no exposure) and changes in progressive sperm motility over time will be evaluated.
Change in sperm morphology over time
时间窗: Baseline (T0) to 6 months (T2) and 12 months (T3)
Change in the percentage (%) of spermatozoa with normal morphology, assessed using strict criteria as part of standard semen analysis according to World Health Organization (WHO) guidelines. Correlation between warfarin exposure status (long-term exposure, short-term exposure, or no exposure) and changes in sperm morphology over time will be evaluated.
次要结局
- Change in serum follicle-stimulating hormone (FSH) levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in sperm DNA fragmentation index (DFI)(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in serum luteinizing hormone (LH) levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in serum total testosterone levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in serum sex hormone-binding globulin (SHBG) levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in serum prolactin levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in serum thyroid-stimulating hormone (TSH) levels(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between mean daily warfarin dose and changes in semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between cumulative warfarin dose and changes in semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between time in therapeutic range and changes in semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between seminal interleukin-6 (IL-6) levels and semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between warfarin exposure and changes in sperm DNA fragmentation index(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Reversibility of changes in semen parameters after short-term warfarin discontinuation(From 3 to 6 months after surgery (T1 to T2))
- Reversibility of changes in sperm DNA fragmentation index after short-term warfarin discontinuation(From 3 months (T1) to 6 months (T2) after surgery)
- Correlation between seminal tumor necrosis factor-alpha (TNF-α) levels and semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between seminal prostaglandin E2 (PGE2) levels and semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Correlation between seminal prostaglandin F2α (PGF2α) levels and semen parameters(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Exploratory assessment of mitochondrial function in spermatozoa(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Exploratory assessment of oxidative stress markers in spermatozoa(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Exploratory assessment of sperm protein expression involved in bioenergetics and motility(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Change in sexual function assessed by the International Index of Erectile Function-5 (IIEF-5)(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Occurrence of partner pregnancies during follow-up(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
- Desire for paternity over time(Baseline (T0), 3 months (T1), 6 months (T2), and 12 months (T3))
