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Antioxidants for male subfertility - PubMed

  • ️Tue Jan 01 2019

Meta-Analysis

Antioxidants for male subfertility

Roos M Smits et al. Cochrane Database Syst Rev. 2019.

Update in

  • Antioxidants for male subfertility.

    de Ligny W, Smits RM, Mackenzie-Proctor R, Jordan V, Fleischer K, de Bruin JP, Showell MG. de Ligny W, et al. Cochrane Database Syst Rev. 2022 May 4;5(5):CD007411. doi: 10.1002/14651858.CD007411.pub5. Cochrane Database Syst Rev. 2022. PMID: 35506389 Free PMC article. Review.

Abstract

Background: The inability to have children affects 10% to 15% of couples worldwide. A male factor is estimated to account for up to half of the infertility cases with between 25% to 87% of male subfertility considered to be due to the effect of oxidative stress. Oral supplementation with antioxidants is thought to improve sperm quality by reducing oxidative damage. Antioxidants are widely available and inexpensive when compared to other fertility treatments, however most antioxidants are uncontrolled by regulation and the evidence for their effectiveness is uncertain. We compared the benefits and risks of different antioxidants used for male subfertility. This review did not examine the use of antioxidants in normospermic men.

Objectives: To evaluate the effectiveness and safety of supplementary oral antioxidants in subfertile men.

Search methods: The Cochrane Gynaecology and Fertility (CGF) Group trials register, CENTRAL, MEDLINE, Embase, PsycINFO, CINAHL, and two trials registers were searched on 1 February 2018, together with reference checking and contact with study authors and experts in the field to identify additional trials.

Selection criteria: We included randomised controlled trials (RCTs) that compared any type, dose or combination of oral antioxidant supplement with placebo, no treatment or treatment with another antioxidant, among subfertile men of a couple attending a reproductive clinic. We excluded studies comparing antioxidants with fertility drugs alone and studies that included fertile men attending a fertility clinic because of female partner infertility.

Data collection and analysis: We used standard methodological procedures recommended by Cochrane. The primary review outcome was live birth. Clinical pregnancy, adverse events and sperm parameters were secondary outcomes.

Main results: We included 61 studies with a total population of 6264 subfertile men, aged between 18 and 65 years, part of a couple who had been referred to a fertility clinic and some of whom were undergoing assisted reproductive techniques (ART). Investigators compared and combined 18 different oral antioxidants. The evidence was of 'low' to 'very low' quality: the main limitation was that out of the 44 included studies in the meta-analysis only 12 studies reported on live birth or clinical pregnancy. The evidence is current up to February 2018.Live birth: antioxidants may lead to increased live birth rates (OR 1.79, 95% CI 1.20 to 2.67, P = 0.005, 7 RCTs, 750 men, I2 = 40%, low-quality evidence). Results suggest that if in the studies contributing to the analysis of live birth rate, the baseline chance of live birth following placebo or no treatment is assumed to be 12%, the chance following the use of antioxidants is estimated to be between 14% and 26%. However, this result was based on only 124 live births from 750 couples in seven relatively small studies. When studies at high risk of bias were removed from the analysis, there was no evidence of increased live birth (Peto OR 1.38, 95% CI 0.89 to 2.16; participants = 540 men, 5 RCTs, P = 0.15, I2 = 0%).Clinical pregnancy rate: antioxidants may lead to increased clinical pregnancy rates (OR 2.97, 95% CI 1.91 to 4.63, P < 0.0001, 11 RCTs, 786 men, I2 = 0%, low-quality evidence) compared to placebo or no treatment. This suggests that if in the studies contributing to the analysis of clinical pregnancy, the baseline chance of clinical pregnancy following placebo or no treatment is assumed to be 7%, the chance following the use of antioxidants is estimated to be between 12% and 26%. This result was based on 105 clinical pregnancies from 786 couples in 11 small studies.Adverse eventsMiscarriage: only three studies reported on this outcome and the event rate was very low. There was no difference in miscarriage rate between the antioxidant and placebo or no treatment group (OR 1.74, 95% CI 0.40 to 7.60, P = 0.46, 3 RCTs, 247 men, I2 = 0%, very low-quality evidence). The findings suggest that in a population of subfertile men with an expected miscarriage rate of 2%, the chance following the use of an antioxidant would result in the risk of a miscarriage between 1% and 13%.Gastrointestinal: antioxidants may lead to an increase in mild gastrointestinal upsets when compared to placebo or no treatment (OR 2.51, 95% CI 1.25 to 5.03, P = 0.010, 11 RCTs, 948 men, I2 = 50%, very low-quality evidence). This suggests that if the chance of gastrointestinal upsets following placebo or no treatment is assumed to be 2%, the chance following the use of antioxidants is estimated to be between 2% and 9%. However, this result was based on a low event rate of 35 out of 948 men in 10 small or medium-sized studies, and the quality of the evidence was rated very low and was high in heterogeneity.We were unable to draw any conclusions from the antioxidant versus antioxidant comparison as insufficient studies compared the same interventions.

Authors' conclusions: In this review, there is low-quality evidence from seven small randomised controlled trials suggesting that antioxidant supplementation in subfertile males may improve live birth rates for couples attending fertility clinics. Low-quality evidence suggests that clinical pregnancy rates may also increase. Overall, there is no evidence of increased risk of miscarriage, however antioxidants may give more mild gastrointestinal upsets but the evidence is of very low quality. Subfertilte couples should be advised that overall, the current evidence is inconclusive based on serious risk of bias due to poor reporting of methods of randomisation, failure to report on the clinical outcomes live birth rate and clinical pregnancy, often unclear or even high attrition, and also imprecision due to often low event rates and small overall sample sizes. Further large well-designed randomised placebo-controlled trials reporting on pregnancy and live births are still required to clarify the exact role of antioxidants.

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Conflict of interest statement

The institution of first author Roos M Smits received an unrestricted grant for conducting the trial NCT03337360, to cover the salary of the trial co‐ordinator Roos M Smits. This trial (NCT03337360) started in April 2018. No data have been extracted from this study. The trial NCT03337360 is submitted to 'Ongoing studies'. This matter was referred to Cochrane's Funding Arbiters who have confirmed that Dr Smits’ declared interest does not constitute a COI under the current policy.

The following authors have reported financial activities outside the submitted work:

  1. AY is a member of the advisory board of MSD. He is a stockholder of Queensland Fertility Group and is director of research and development of that institution. The research foundation of Queensland Fertility Group has received research grants from Merck Serono, MSD and the AGES Society (unrestricted grant December 2018; research proposal for pragmatic trial on surgery vs IVF). AY has received travel and conference expenses from Merck Serono (February 2018) and Ferring (January 2016 and January 2018). AY advises that none of these companies manufacture or market any antioxidants.

  1. MS has received travel and conference expenses from Merck Serono (July 2018), Finox (April 2017) and Ferring (January 2016).

VJ, MGS and RM‐P have no conflicts to declare.

Figures

1
1

Study flow diagram.

2
2

Methodological risk of bias graph: review authors' judgements about each methodological bias item presented as percentages across all included studies.

3
3

Methodological risk of bias summary: review authors' judgements about each methodological bias item for each included study.

4
4

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.1 Live birth; type of antioxidant.

5
5

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.5 Clinical pregnancy; type of antioxidant.

6
6

Funnel plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.5 Clinical pregnancy; type of antioxidant.

7
7

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.8 Adverse events.

8
8

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.9 Sperm DNA fragmentation; type of antioxidant.

9
9

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.11 Total sperm motility at 3 months or less; type of antioxidant.

10
10

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.17 Progressive sperm motility at 3 months or less; type of antioxidant.

11
11

Forest plot of comparison: 1 Antioxidant(s) versus placebo or no treatment, outcome: 1.23 Sperm concentration at 3 months or less; type of antioxidant.

Update of

  • Antioxidants for male subfertility.

    Showell MG, Mackenzie-Proctor R, Brown J, Yazdani A, Stankiewicz MT, Hart RJ. Showell MG, et al. Cochrane Database Syst Rev. 2014;(12):CD007411. doi: 10.1002/14651858.CD007411.pub3. Epub 2014 Dec 15. Cochrane Database Syst Rev. 2014. PMID: 25504418 Updated. Review.

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Cited by

References

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Poveda 2013 {published data only}
    1. Poveda C, Rodriguez R, Chu EE, Aparicio LE, Gonzales IG, Moreno CJ. A placebo‐controlled double‐blind randomized trial of the effect of oral supplementation with spermotrend, maca extract (lepidium meyenii) or L‐carnitine in semen parameters of infertile men. Fertility and Sterility 2013; Vol. 100, issue 3 Suppl:S440.
Pryor 1978 {published data only}
    1. Pryor JP, Blandy JP, Evans P, Chaput de Saintonge DM, Usherwood M. Controlled clinical trial of arginine for infertile men with oligozoospermia. British Journal of Urology 1978;50:47‐50. - PubMed
Raigani 2014 {published data only}
    1. Raigani M, Yaghmaei B, Amirjannti N, Lakpour N, Akhondi MM, Zeraati H, et al. The micronutrient supplements, zinc sulphate and folic acid, did not ameliorate sperm functional parameters in oligoasthenoteratozoospermic men. Andrologia 2014; Vol. 46, issue 9:956‐62. - PubMed
Rolf 1999 {published data only}
    1. Rolf C, Cooper TG, Yeung CH, Nieschlag E. Antioxidant treatment of patients with asthenozoospermia or moderate oligoasthenozoospermia with high‐dose vitamin C and vitamin E: a randomized, placebo‐controlled, double‐blind study. Human Reproduction 1999;14(4):1028‐33. - PubMed
    1. Rolf C, Cooper TG, Yeung CH, Nieschlag E. Antioxidant treatment of patients with asthenozoospermia or moderate oligoasthenozoospermia with high‐dose vitamin C and vitamin E: a randomized, placebo‐controlled, double‐blind study [see comment]. Human Reproduction 1999;14(4):1028‐33. - PubMed
Safarinejad 2009 {published data only}
    1. Safarinejad MR, Safarinejad S. Efficacy of selenium and/or N‐acetyl‐cysteine for improving semen parameters in infertile men: a double‐blind, placebo controlled, randomized study. Journal of Urology 2009;181(2):741‐51. - PubMed
Safarinejad 2009a {published data only}
    1. Safarinejad ME. Efficacy of coenzyme Q10 on semen parameters, sperm function and reproductive hormones in infertile men. Journal of Urology 2009;182(1):237‐48. - PubMed
Safarinejad 2012 {published data only}
    1. Safarinejad MR, Shafiei N, Safarinejad S. Effects of the reduced form of coenzyme Q10 (ubiquinol) on semen parameters in men with idiopathic infertility: A double‐blind, placebo controlled, randomized study. Journal of Urology 2012;188(2):526‐31. - PubMed
Scott 1998 {published data only}
    1. Scott R, MacPherson A, Yates RW, Hussain B, Dixon J. The effect of oral selenium supplementation on human sperm motility. British Journal of Urology 1998; Vol. 82, issue 1:76‐80. - PubMed
Sharifzadeh 2016 {published data only}
    1. Sharifzadeh F, Norouzi S, Ashrafi M, Aminimoghaddam S, Koohpayezadeh J. Effects of zinc sulfate on subfertility related to male factors: a prospective double‐blind, randomized, placebo‐controlled clinical trial. Journal of Obstetrics, Gynecology and Cancer Research 2016; Vol. 1, issue 2:e7242. [2476‐5848]
Sigman 2006 {published data only}
    1. Pryor JL, Stacy L, Glass S, Campagnone J, Sigman M. Randomized double blind placebo controlled trial of carnitine for the treatment of idiopathic asthenospermia. Fertility and Sterility 2003;80 Suppl 3:48. - PubMed
    1. Sigman M, Glass S, Campagnone J, Pryor JL. Carnitine for the treatment of idiopathic asthenospermia: a randomized, double‐blind, placebo‐controlled trial. Fertility and Sterility 2006;85(5):1409‐14. - PubMed
Sivkov 2011 {published data only}
    1. Sivkov AV, Oshchepkov VN, Evdokimov VV, Keshishev NG, Skabko OV. Selzink plus study in patients with chronic non‐infectious prostatitis and abnormal fertility. [Russian]. Urologii 2011; Vol. 5:27‐33. - PubMed
Sofikitis 2016 {published data only}
    1. Sofikitis N, Dimitriadis F, Skouros S, Stavrou S, Seminis G, Giannakis I, et al. Effects of avanafil on semen quality and sperm cytoskeleton in oligoasthenospermic infertile men: A randomized controlled trial. Journal of Sexual Medicine 2016; Vol. 2:S164‐5.
Suleiman 1996 {published data only}
    1. Suleiman SA, Ali ME, Zaki ZM, el‐Malik EM, Nasr MA. Lipid peroxidation and human sperm motility: protective role of vitamin E. Journal of Andrology 1996; Vol. 17, issue 5:530‐7. - PubMed
Tremellen 2007 {published data only}
    1. Tremellen K, Froiland D, Miari G, Thompson J. A randomised control trial examining the effect of an antioxidant on sperm function pregnancy outcome during IVF treatment. The Fertility Society of Australia 25th Annual scientific meeting. Australian & New Zealand Journal of Obstetrics & Gynaecology 2006;46 Suppl 2:A.2. - PubMed
    1. Tremellen K, Miari G, Froiland D, Thompson J. A randomised control trial examining the effect of an antioxidant (Menevit) on pregnancy outcome during IVF‐ICSI treatment. Australian & New Zealand Journal of Obstetrics & Gynaecology 2007;47:216‐21. - PubMed
Wang 2010 {published data only}
    1. Wang YX, Yang SW, Qu CB, Huo HX, Li W, Li JD, et al. L‐carnitine: safe and effective for asthenozoospermia. Zhonghua nan ke xue ‐ National Journal of Andrology 2010;16(5):420‐2. - PubMed
Wong 2002 {published data only}
    1. Ebisch IM, Pierik FH, Jong FH, Thomas CM, Steegers‐Theunissen RP. Does folic acid and zinc sulphate intervention affect endocrine parameters and sperm characteristics in men?. International Journal of Andrology 2006;29(2):339‐45. - PubMed
    1. Wong WY, Merkus HM, Thomas CM, Menkveld R, Zielhuis GA, Steegers‐Theunissen RP. Effects of folic acid and zinc sulfate on male factor subfertility: a double‐blind, randomized, placebo‐controlled trial. Fertility and Sterility 2002; Vol. 77, issue 3:491‐8. - PubMed
Zalata 1998 {published data only}
    1. Zalata A, Christophe A, Horrbin D, Dhooge W, Comhaire F. Protection of sperm function and DNA by essential fatty acids and antioxidants dietary supplementation. Fertility and Sterility 1998;70:287.
    1. Zalata A, Christophe A, Horrobin D, Dhooge W, Comhaire F. Effect of essential fatty acids and antioxidants dietary supplementation on the oxidative DNA damage of the human spermatozoa. ESHRE 14th annual meeting. Goteborg, 1998:270‐1.
Zavaczki 2003 {published data only}
    1. Zavaczki Z, Szollosi J, Kiss S, Koloszar S, Fejes I, Kovacs L, Pal A. Magnesium‐orotate supplementation for idiopathic infertile male patients: a randomized, placebo‐controlled clinical pilot study. Magnesium Research 2003;16(2):131‐6. - PubMed

References to studies excluded from this review

Adel 2015 {published data only}
    1. Adel N, Maghraby H, Ghareeb D, Elmahdy M. Vitamin e and berberine counteract the adverse effects of ros on sperm and seminal parameters. Human Reproduction 2015;30 Suppl 1:i171 Abstract no: P‐113.
Alahmar 2017 {published data only}
    1. Alahmar AT. Effect of vitamin C, vitamin E, zinc, selenium, and coenzyme Q10 in infertile men with idiopathic oligoasthenozoospermia. International Journal of Infertility and Fetal Medicine 2017;8(2):45‐9.
Alizadeh 2018 {published data only}
    1. Alizadeh F, Javadi M, Karami AA, Gholaminejad F, Kavianpour M, Haghighian HK. Curcumin nanomicelle improves semen parameters, oxidative stress, inflammatory biomarkers, and reproductive hormones in infertile men: A randomized clinical trial. Phytotherapy Research 2018;32(3):514‐21. - PubMed
Alsalman 2018 {published data only}
    1. Alsalman AR, Almashhedy LA, Hadwan MH. Effect of oral zinc supplementation on the thiol oxido‐reductive index and thiol‐related enzymes in seminal plasma and spermatozoa of Iraqi asthenospermic patients. Biological Trace Element Research 2018;184(2):340‐9. - PubMed
Anarte 2012 {published data only}
    1. Anarte C, Calvo I, Domingo A, Presilla N, Aleman M, Bou R, et al. Effect of DHA supplementation on fatty acid composition of sperm and its relation to semen quality. Human Reproduction ‐ Abstract book of the 28th ESHRE Annual Meeting, Turkey 1‐4 July 2012. 2012; Vol. 27, issue 2:ii121‐ii50.
Anarte 2013 {published data only}
    1. Anarte C, Domingo A, Agirregoikoa JA, Pablo J, Barrenetxea G. Regular consumption of docosahexaenoic acid (DHA) improves semen quality. Fertility and Sterility 2013;100 Suppl 3:S443.
Azizollahi 2013a {published data only}
    1. Azizollahi S, Nematollahi‐Mahani SN, Azizollahi G, Baneshi MR, Safari Z. The effect of folic acid and zinc sulfate on endocrine parameters and seminal antioxidant level, after variocelectomy. Iranian Journal of Reproductive Medicine 2013;1):36. - PubMed
Cai 2012 {published data only}
    1. Cai T, Wagenlehner F, Mazzoli S, Meacci F, Mondaini N, Nesi G, et al. Semen quality in patients with Chlamydia trachomatis genital infection treated concurrently with prulifloxacin and a phytotherapeutic agent. Journal of Andrology 2012;33(4):615‐23. - PubMed
Calogero 2015 {published data only}
    1. Calogero AE, Gullo G, Vignera S, Condorelli RA, Vaiarelli A. Myoinositol improves sperm parameters and serum reproductive hormones in patients with idiopathic infertility: a prospective double‐blind randomized placebo‐controlled study. Andrology 2015;3(3):491‐5. - PubMed
Capece 2017 {published data only}
    1. Capece M, Romeo G, Ruffo A, Romis L, Mordente S, Lauro G. A phytotherapic approach to reduce sperm DNA fragmentation in patients with male infertility. Urologia (Treviso) 2017;84(2):79‐82. - PubMed
    1. Capece M, Romeo G, Ruffo A, Romis L, Mordente S, Lauro G. Alga Ecklonia Bicyclis, tribulus terrestris, myoinositol and biovistm reduce sperm DNA fragmentation in patients with oligo‐asthenoterato‐zoospermia (OAT) syndrome. Journal of Sexual Medicine 2015;12 (Supplement 5):365.
Chattopadhyay 2016 {published data only}
    1. Chattopadhyay R, Yasmin S, Chakravarty BN. Effect of continuous 6 months oral antioxidant combination with universally recommended dosage in idiopathic male infertility. International Journal of Infertility and Fetal Medicine 2016;7(1):1‐6.
Chen 2012 {published data only}
    1. Chen XF, Li Z, Ping P, Dai JC, Zhang FB, Shang XJ, et al. Efficacy of natural vitamin E on oligospermia and asthenospermia: a prospective multi‐centered randomized controlled study of 106 cases. Zhong Hua Nan Ke Xue 2012;18(5):428‐31. - PubMed
Ciftci 2009 {published data only}
    1. Ciftci H, Verit A, Savas M, Yeni E, Erel O. Effects of N‐acetylcysteine on semen parameters and oxidative/antioxidant status. Urology 2009;74(1):73‐6. - PubMed
Comhaire 2005 {published data only}
    1. Comhaire FH, Garem Y, Mahmoud A, Eertmans F, Schoonjans F. Combined conventional/antioxidant "Astaxanthin" treatment for male infertility: a double blind, randomized trial. Asian Journal of Andrology 2005;7(3):257‐62. - PubMed
Ebisch 2003 {published data only}
    1. Ebisch IM, Heerde WL, Thomas CM, Put N, Wong WY, Steegers‐Theunissen RP. C677T methylenetetrahydrofolate reductase polymorphism interferes with the effects of folic acid and zinc sulfate on sperm concentration. Fertility and Sterility 2003;80(5):1190‐4. - PubMed
Elgindy 2008 {published data only}
    1. Elgindy EA, El‐Huseiny AM, Mostafa MI, Gaballah AM, Amed TA. N‐Acetylcysteine: Could it be an effective adjuvant therapy in ICSI cycles. Fertility and Sterility 2008;90 Suppl 1(American Society for Reproductive Medicine 64th Annual Meeting. 8‐12 November 2008, San Francisco, CA):356 Abstract no: P738.
Ghafarizadeh 2018 {published data only}
    1. Ghafarizadeh AA, Vaezi G, Shariatzadeh MA, Malekirad AA. Effect of in vitro selenium supplementation on sperm quality in asthenoteratozoospermic men. Andrologia 2018;50(2):e12869. - PubMed
Ghanem 2010 {published data only}
    1. Ghanem H, Shaeer O, El‐Segini A. Combination clomiphene citrate and antioxidant therapy for idiopathic male infertility: a randomized controlled trial. Fertility and Sterility 2010;93(7):2232‐5. - PubMed
Gulati 2015 {published data only}
    1. Gulati S, Chattopadhyay R, Ghosh B, Yasmin S, Ghosh S, Bose G, et al. Treatment with combined antioxidant formulation before ICSI improves pregnancy rate in couples with obstructive azoospermia. Fertility and Sterility 2015;1):e241.
Gulino 2016 {unpublished data only}
    1. AGUNCO Obstetrics and Gynecology Centre (PI unknown). Effect of treatment with myo‐inositol on human semen parameters in patients undergoing in vitro fertilization cycles. https://clinicaltrials.gov.
    1. Gulino FA, Leonardi E, Marilli I, Musmeci G, Vitale SG, Leanza V, et al. Effect of treatment with myo‐inositol on semen parameters of patients undergoing an IVF cycle: in vivo study. Gynecological Endocrinology 2016;32(1):65‐8. - PubMed
Hafeez 2011 {published data only}
    1. Hafeez M, Ahmed A, Usmanghani K, Mohiuddin E, Asif HM, Akram M, et al. Clinical evaluation of herbal medicine for oligospermia. Pakistan Journal of Nutrition 2011;10(3):238‐40.
Iacono 2014 {published data only}
    1. Iacono F, Ruffo A, Prezioso D, Illiano E, Romeo G, Romis L, et al. Combination therapy with antiestrogen and a natural composite containing tribulus terrestris, alga ecklonia bicyclis, biovis and myo‐inositol in the treatment of male idiopathic infertility. Journal of Sexual Medicine 2014;1:92.
Jawad 2013 {published data only}
    1. Jawad HM. Zinc sulfate treatment of secondary male infertility associated with positive serum and seminal plasma anti‐sperm antibody test. Middle East Fertility Society Journal 2013;18(1):24‐30.
Kanta Goswami 2017 {published data only}
    1. Kanta Goswami S, Chattopadhyay R, Ghosh S, Ghosh B, Yasmin S, Goswami M, et al. Exogenous oral combination antioxidants in idiopathic infertile males, having higher DNA fragmentation index, before ICSI cycle may improve live birth rate. Human Reproduction 2017;32 (Supplement 1):i160.
Keskes‐Ammar 2003 {published data only}
    1. Keskes‐Ammar L, Feki‐Chakroun N, Rebai T, Sahnoun Z, Ghozzi H, Hammami S, et al. Sperm oxidative stress and the effect of an oral vitamin E and selenium supplement on semen quality in infertile men. Archives of Andrology 2003;49(2):83‐94. - PubMed
Kim 2010 {published data only}
    1. Kim C‐H, Yoon J‐W, Ahn J‐W, Kang H‐J, Lee J‐W, Kang B‐M. The effect of supplementation with omega‐3‐polyunsaturated fatty acids in intracytoplasmic sperm injection cycles for infertile patients with a history of unexplained total fertilization failure. Fertility and Sterility 2010;94(4 Suppl 1):S242.
Korosi 2017 {published data only}
    1. Korosi T, Barta C, Rokob K, Torok T. Physiological Intra‐Cytoplasmic Sperm Injection (PICSI) outcomes after oral pretreatment and semen incubation with myo‐inositol in oligoasthenoteratozoospermic men: results from a prospective, randomized controlled trial. European Review for Medical & Pharmacological Sciences 2017;21(2 Suppl):66‐72. - PubMed
Kumar 2011 {published data only}
    1. Kumar R, Saxena V, Shamsi M, Venkatesh S, Dada R. Herbo‐mineral supplementation in men with idiopathic oligoasthenoteratospermia: A double blind randomized placebo‐controlled trial. Indian Journal of Urolology 2011;27(3):357–62. - PMC - PubMed
Lenzi 1993 {published data only}
    1. Lenzi A, Culasso F, Gandini L, Lombardo F, Dondero F. Placebo‐controlled, double‐blind, cross‐over trial of glutathione therapy in male infertility. Human Reproduction 1993;8(10):1657‐62. - PubMed
Lu 2010 {published data only}
    1. Lu SM, Li X, Zhang HB, Hu JM, Yan JH, Liu JL, et al. [Use of L‐carnitine before percutaneous epididymal sperm aspiration‐intracytoplasmic sperm injection for obstructive azoospermia]. Zhonghua nan ke xue ‐ National Journal of Andrology 2010;16(10):919‐21. - PubMed
Martinez‐Soto 2016 {published data only}
    1. Martinez‐Soto JC, Domingo JC, Cordobilla B, Nicolas M, Fernandez L, Albero P, et al. Dietary supplementation with docosahexaenoic acid (DHA) improves seminal antioxidant status and decreases sperm DNA fragmentation. Systems Biology in Reproductive Medicine 2016;62(6):387‐95. - PubMed
Merino 1997 {published data only}
    1. Merino G, Martinez Chequer JC, Barahona E, Bermudez JA, Moran C, Carranza‐Lira S. Effects of pentoxifylline on sperm motility in normogonadotropic asthenozoospermic men. Archives of Andrology 1997;39(1):65‐9. - PubMed
Micic 1988 {published data only}
    1. Micic S, Hadzi‐Djokic J, Dotlic R, Tulic C. Pentoxifyllin treatment of oligoasthenospermic men. Acta Europaea Fertilitatis 1988;19(3):135‐7. - PubMed
Micic 2001 {published data only}
    1. Micic S, Lalic N, Bojanic N, Nale DJ. Oligospermic men treated by carnitine. 17th World Congress on Fertility and Sterility. Melbourne, 2001:38.
Movahedin 2014 {published data only}
    1. Movahedin M, Mehrsai A, Noori M, Dehghani S, Pourmand G, Ahmadi A, et al. Does anti‐oxidant therapy add any extra benefit to standard inguinal varicocelectomy in terms of DNA damage or sperm quality factor indices: a randomized study. Urology 2014;4(suppl. 1):S252. - PubMed
Nadjarzadeh 2014 {published data only}
    1. Nadjarzadeh A, Shidfar F, Amirjannati N, Vafa MR, Motevalian SA, Gohari MR, et al. Effect of Coenzyme Q10 supplementation on antioxidant enzymes activity and oxidative stress of seminal plasma: a double‐blind randomised clinical trial. Andrologia 2014;46(2):177‐83. - PubMed
Nashivochnikova 2014 {published data only}
    1. Nashivochnikova NA, Krupin VN, Selivanova SA. [Efficiency of spematon in male infertility]. Urologiia (Moscow, Russia: 1999) 2014;2:52‐4. [PUBMED: 24956674] - PubMed
NCT01075334 {unpublished data only}
    1. Tsafrir A. Is a carnitine based food supplement (PorimoreTM) for infertile men superior to folate and zinc with regard to pregnancy rates in intrauterine insemination cycles?. https://clinicaltrials.gov.
NCT01520584 {unpublished data only}
    1. Irge D. Supplement intake in infertile men; the effect on sperm parameters, fertilization rate and embryo quality. https://clinicaltrials.gov.
Nematollahi‐Mahani 2014 {published data only}
    1. Nematollahi‐Mahani SN, Azizollahi GH, Baneshi MR, Safari Z, Azizollahi S. Effect of folic acid and zinc sulphate on endocrine parameters and seminal antioxidant level after varicocelectomy. Andrologia 2014;46(3):240‐5. - PubMed
Niederberger 2011 {published data only}
    1. Niederberger C. Combination clomiphene citrate and antioxidant therapy for idiopathic male infertility: a randomized controlled trial. Journal of Urology 2011;185(1):252. - PubMed
Nikolova 2007 {published data only}
    1. Nikolova V, Stanislavov R, Vatev I, Nalbanski B, Punevska M. Sperm parameters in male idiopathic infertility after treatment with prelox. Akusherstvo i Ginekologiia 2007;46(5):7‐12. - PubMed
Pawlowicz 2001 {published data only}
    1. Pawlowicz P, Stachowiak G, Bielak A, Wilczynski J. Administration of natural anthocyanins derived from chokeberry (aronia melanocarpa) extract in the treatment of oligospermia in males with enhanced autoantibodies to oxidized low density lipoproteins (oLAB). The impact on fructose levels. Ginekologia Polska 2001;72(12):983‐8. - PubMed
Polak 2013 {published data only}
    1. Polak de Fried E, Bossi NM, Notrica JA, Vazquez Levin MH. Vitamin‐d treatment does not improve pregnancy rates in patients undergoing art: a prospective, randomized, double‐blind placebo‐controlled trial. Fertility and Sterility 2013;100 Suppl 3:S493‐4.
Raigani 2010 {published data only}
    1. Raigani M, Sadeghi MR, Akhondi MA, Amir Jannati N, Soleimani Badia M. Impacts of MTHFR polymorphism on the effects of folic acid and zinc sulfate supplementations in OAT men. Iranian Journal of Reproductive Medicine 2010;1):46.
Safarinejad 2011 {published data only}
    1. Safarinejad MR. Effect of pentoxifylline on semen parameters, reproductive hormones and seminal plasma antioxidant capacity in men with idiopathic infertility: a randomized double‐blind placebo‐controlled study. International Urology and Nephrology 2011;43:315‐28. - PubMed
Safarinejad 2011a {published data only}
    1. Safarinejad MR, Shafiei N, Safarinejad S. A prospective double‐blind randomized placebo‐controlled study of the effect of saffron (Crocus sativus Linn.) on semen parameters and seminal plasma antioxidant capacity in infertile men with idiopathic oligoasthenoteratozoospermia. Phytotherapy research: PTR 2011;25(4):508‐16. - PubMed
Singh 2016 {published data only}
    1. Singh AK, Deshpande SB. Role of nutraceuticals in treatment of azoospermia due to maturation arrest. Indian Journal of Physiology and Pharmacology 2016;60 (5 Supplement 1):6‐7.
Soylemez 2012 {published data only}
    1. Soylemez H, Kilic S, Atar M, Penbegul N, Sancaktutar AA, Bozkurt Y. Effects of micronised purified flavonoid fraction on pain, semen analysis and scrotal color Doppler parameters in patients with painful varicocele; results of a randomized placebo‐controlled study. International Urology and Nephrology 2012;44(2):401‐8. - PubMed
Stanislavov 2009 {published data only}
    1. Stanislavov R, Nikolova V, Rohdewald P. Improvement of seminal parameters with Prelox®: a randomized, double‐blind, placebo controlled, cross over trial. Phytotherapy Research 2009;23:297‐302. [DOI: ] - PubMed
Stanislavov 2014 {published data only}
    1. Stanislavov R, Rohdewald P. Sperm quality in men is improved by supplementation with a combination of L‐arginine, L‐citrullin, roburins and Pycnogenol. Minerva Urologica e Nefrologica 2014;66(4):217‐23. - PubMed
    1. Stanislavov R, Rohdewald P. Sperm quality in men is improved by supplementation with a combination of L‐arginine, L‐citrulline, roburins and Pycnogenol. Minerva Urologica e Nefrologica 2014;66(4):217‐23. - PubMed
    1. Stanislavov R, Rohdewald P. Sperm quality in men is improved by supplementation with a combination of L‐arginine, L‐citrulline, roburins and Pycnogenol. Minerva Urologica e Nefrologica 2014;66(4):217‐23. - PubMed
Tang 2011 {published data only}
    1. Tang KF, Xing Y, Wu CY, Liu RZ, Wang XY, Xing JP. [Tamoxifen combined with coenzyme Q10 for idiopathic oligoasthenospermia]. Zhong Hua Nan Ke Xue 2011;17(7):615‐8. - PubMed
Verzeletti 2012 {published data only}
    1. Verzeletti FB, Poletto RS, Bertolin TE, Fornari F. Evaluation of sperm quality in adults after use spirulina platensis and resveratrol. Jornal Brasileiro de Reproducao Assistida 2012;16(5):271‐7.
Vicari 2001 {published data only}
    1. Vicari E, Calogero AE. Effects of treatment with carnitines in infertile patients with prostatovesiculoepididymitis and elevated sperm oxidative stress. ESHRE 17th Annual Meeting. Lausanne: Human Reproduction, 2001; Vol. 16 Suppl 1:106‐7. - PubMed
Vicari 2001a {published data only}
    1. Vicari E, Rubino C, Palma A, Longo G, Lauretta M, Consoli S, et al. Antioxidant therapeutic efficiency after the use of carnitine in infertile patients with bacterial or non bacterial prostato‐vesiculo‐epididymitis. Archivio Italiano di Urologia, Andrologia 2001;73(1):15‐25. - PubMed
Vicari 2002 {published data only}
    1. Vicari E, Vignera S, Calogero AE. Antioxidant treatment with carnitines is effective in infertile patients with prostatovesiculoepididymitis and elevated seminal leukocyte concentrations after treatment with nonsteroidal anti‐inflammatory compounds. Fertility and Sterility 2002;78(6):1203‐8. - PubMed
Wang 1983 {published data only}
    1. Wang C, Chan CW, Wong KK, Yeung KK. Comparison of the effectiveness of placebo, clomiphene citrate, mesterolone, pentoxifylline, and testosterone rebound therapy for the treatment of idiopathic oligospermia. Fertility and Sterility 1983;40(3):358‐65. - PubMed
Wang 2010a {published data only}
    1. Wang Y, Yang S, Cai W, Qu C, Li J, Chang X, et al. [Clinical efficacy of L‐carnitine combined with tamoxifen in treatment of oligoasthenozoospermia] LA: Chi. Zhonghua nan ke xue ‐ National Journal of Andrology 2010;16(5):420‐2. - PubMed
Wu 2012 {published data only}
    1. Wu ZM, Lu X, Wang YW, Sun J, Tao JW, Yin FH, et al. Short‐term medication of L‐carnitine before intracytoplasmic sperm injection for infertile men with oligoasthenozoospermia. Zhong Hua Nan Ke Xue 2012;18(3):253‐6. - PubMed

References to studies awaiting assessment

Goswami 2015 {published data only}
    1. Goswami SK, Yasmin S, Chakraborty P, Chattopadhyay R, Ghosh S, Goswami M, et al. Role of dietary antioxidant supplementation in treatment of idiopathic male infertility: Promising evidence from a sub‐continental study. Fertility and Sterility 2015;1):e288.

References to ongoing studies

CTRI/2013/02/003431 {unpublished data only}
    1. Kamath MS. To compare the effectiveness of antioxidants versus no treatment for male partner for improving pregnancy rates in couples undergoing In vitro fertilization (IVF) for abnormal semen analysis. www.who.int/trialsearch.
DRKS00011616 {unpublished data only}
    1. Baumgraß H. Randomized, placebo‐controlled, double‐blind, multi‐centre pilot study to investigate the effect of AM019016 on male spermatogenesis in subjects with diagnosed unspecific (idiopathic) subfertility. www.who.int/trialsearch.
IRCT2016111830947N1 {unpublished data only}
    1. Talebi A, Amini L. The effect of oral vitamin D3 supplementation on spermogram quantitative and qualitative indicators in infertile male. www.who.int/trialsearch.
IRCT2017012432153N1 {unpublished data only}
    1. Azima S. The effects of folic acid, vitamin E, selenium on semen parameters in infertile men [Effect of folic acid, vitamin E, selenium on semen parameters]. www.who.int/trialsearch.
NCT00975115 {unpublished data only}
    1. Aguilar MM. Assessment of the efficacy of dietary supplement spermotrend in the treatment of male infertility. ClinicalTrials.gov.
NCT01407432 {unpublished data only}
    1. Mathieu‐d’Argent E. Impact of folates in the care of the male infertility (FOLFIV). https://clinicaltrials.gov.
NCT01828710 {unpublished data only}
    1. Palumbo M. Myo‐inositol on human semen parameters [Effect of of treatment with Myo‐inositol on human semen parameters in patients undergoing IVF cycles]. https://clinicaltrials.gov. - PubMed
NCT01846325 {unpublished data only}
    1. Hekmatdoost A. The effects of administration of combined docosahexaenoic acid and vitamin e supplements on spermatogram and seminal plasma oxidative stress in infertile men with asthenozoospermia. https://clinicaltrials.gov.
NCT02310087 {unpublished data only}
    1. Pinter B, Imamovic Kumalic S. Oral Astaxanthin and semen quality, fertilization and embryo development in Assisted Reproduction Techniques procedures. https://clinicaltrials.gov.
NCT02421887 {unpublished data only}
    1. Eisenberg E, Steiner AZ. Males, antioxidants, and infertility trial (MOXI). https://clinicaltrials.gov.
NCT03104998 {unpublished data only}
    1. Jawaid M. Neotililty trial: Effect of coenzyme Q10 on semen parameters in men with idiopathic infertility (neotility). https://clinicaltrials.gov.
NCT03337360 {unpublished data only}
    1. Smits RM, Fleischer K, Braat DDM. The impact of a nutritional supplement (Impryl®) on male fertility. https://clinicaltrials.gov. - PMC - PubMed

Additional references

Agarwal 2003
    1. Agarwal A, Said T. Role of sperm chromatin abnormalities and DNA damage in male infertility. Human Reproduction Update 2003;9(4):331‐45. - PubMed
Agarwal 2004
    1. Agarwal A, Nallella KP, Allamaneni S, Said TM. Role of antioxidants in treatment of male infertility: an overview of the literature. Reproductive Biomedicine Online 2004;8(6):616‐27. - PubMed
Agarwal 2004a
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References to other published versions of this review

Showell 2008
    1. Showell MG, Brown J, Yazdani A, Stankiewicz MT, Hart RJ. Antioxidants for male subfertility. Cochrane Database of Systematic Reviews 2008, Issue 4. [DOI: 10.1002/14651858.CD007411] - DOI - PubMed
Showell 2011
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Showell 2014
    1. Showell MG, Mackenzie‐Proctor R, Brown J, Yazdani A, Stankiewicz MT, Hart RJ. Antioxidants for male subfertility. Cochrane Database of Systematic Reviews 2014, Issue 12. [DOI: 10.1002/14651858.CD007411.pub3] - DOI - PubMed

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