Male Infertility Clinical Trial
Official title:
Evaluation of Treatment With Trans-resveratrol, Folic Acid, Vitamin D, Vitamin B12 and B6 in Men With Infertility
The objective of this study is to evaluate the impact of the Genante(TM) on the spermiogram parameters in infertile male patients
Status | Recruiting |
Enrollment | 20 |
Est. completion date | April 30, 2019 |
Est. primary completion date | March 20, 2019 |
Accepts healthy volunteers | No |
Gender | Male |
Age group | 18 Years to 50 Years |
Eligibility |
Inclusion Criteria: - male 18-50 years - oligozoospermia: < 5 million spermatozoa/mL; - asthenozoospermia: < 32% progressive motile spermatozoa; - teratozoospermia: < 4% normal forms. Exclusion Criteria: - azoospermia - smoke - use drugs - use drugs with proven fertility toxicity - exposition to any environmental or occupational toxic substances - exposition to radiation or heat - orchitis secondary to mumps - sexually transmitted diseases - history of cryptorchidism - previous testicular torsion - genitourinary anomalies - alterations of the epididymis or deferens - inguinal surgery |
Country | Name | City | State |
---|---|---|---|
Italy | Elisabetta Costantini | Terni |
Lead Sponsor | Collaborator |
---|---|
University Of Perugia | Ester Illiano, MD |
Italy,
Agarwal A, Nallella KP, Allamaneni SS, Said TM. Role of antioxidants in treatment of male infertility: an overview of the literature. Reprod Biomed Online. 2004 Jun;8(6):616-27. Review. — View Citation
Aitken RJ. Free radicals, lipid peroxidation and sperm function. Reprod Fertil Dev. 1995;7(4):659-68. Review. — View Citation
Amri A, Chaumeil JC, Sfar S, Charrueau C. Administration of resveratrol: What formulation solutions to bioavailability limitations? J Control Release. 2012 Mar 10;158(2):182-93. doi: 10.1016/j.jconrel.2011.09.083. Epub 2011 Sep 25. Review. — View Citation
Chen Q, Ng V, Mei J, Chia SE. [Comparison of seminal vitamin B12, folate, reactive oxygen species and various sperm parameters between fertile and infertile males]. Wei Sheng Yan Jiu. 2001 Mar;30(2):80-2. Chinese. — View Citation
Das S, Lin HS, Ho PC, Ng KY. The impact of aqueous solubility and dose on the pharmacokinetic profiles of resveratrol. Pharm Res. 2008 Nov;25(11):2593-600. doi: 10.1007/s11095-008-9677-1. Epub 2008 Jul 16. Erratum in: Pharm Res. 2008 Dec;25(12):2983. — View Citation
de Lamirande E, Leclerc P, Gagnon C. Capacitation as a regulatory event that primes spermatozoa for the acrosome reaction and fertilization. Mol Hum Reprod. 1997 Mar;3(3):175-94. Review. — View Citation
Erben RG, Soegiarto DW, Weber K, Zeitz U, Lieberherr M, Gniadecki R, Möller G, Adamski J, Balling R. Deletion of deoxyribonucleic acid binding domain of the vitamin D receptor abrogates genomic and nongenomic functions of vitamin D. Mol Endocrinol. 2002 Jul;16(7):1524-37. — View Citation
Griveau JF, Le Lannou D. Reactive oxygen species and human spermatozoa: physiology and pathology. Int J Androl. 1997 Apr;20(2):61-9. Review. — View Citation
Hammoud AO, Meikle AW, Peterson CM, Stanford J, Gibson M, Carrell DT. Association of 25-hydroxy-vitamin D levels with semen and hormonal parameters. Asian J Androl. 2012 Nov;14(6):855-9. doi: 10.1038/aja.2012.77. Epub 2012 Oct 8. — View Citation
Hughes CM, Lewis SE, McKelvey-Martin VJ, Thompson W. The effects of antioxidant supplementation during Percoll preparation on human sperm DNA integrity. Hum Reprod. 1998 May;13(5):1240-7. Erratum in: Hum Reprod 1998 Nov;13(11):3284. — View Citation
Liu J, Yi L, Xiang Z, Zhong J, Zhang H, Sun T. Resveratrol attenuates spinal cord injury-induced inflammatory damage in rat lungs. Int J Clin Exp Pathol. 2015 Feb 1;8(2):1237-46. eCollection 2015. — View Citation
Orihuela-Campos RC, Tamaki N, Mukai R, Fukui M, Miki K, Terao J, Ito HO. Biological impacts of resveratrol, quercetin, and N-acetylcysteine on oxidative stress in human gingival fibroblasts. J Clin Biochem Nutr. 2015 May;56(3):220-7. doi: 10.3164/jcbn.14-129. Epub 2015 Mar 28. — View Citation
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. Fertil Steril. 2002 Mar;77(3):491-8. — View Citation
* Note: There are 13 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change from Baseline Semen volume at 1 month | semen volume in semen analysis | 1 month | |
Primary | Change from 1month Semen volume at 6 months | semen volume in semen analysis | 6 months | |
Primary | Change from baseline Total sperm number at 1 month | total sperm number in semen analysis | 1 month | |
Primary | Change from 1 month Total sperm number at 6 months | total sperm number in semen analysis | 6 months | |
Primary | Change from baseline Sperm concentration at 1 month | Sperm concentration in semen analysis | 1 month | |
Primary | Change from 1 month Sperm concentration at 6 months | Sperm concentration in semen analysis | 6 months | |
Primary | Change from baseline Total Motility at 1 month | total motility of spermatozoa in semen analysis | 1 month | |
Primary | Change from 1 month Total Motility at 6 months | total motility of spermatozoa in semen analysis | 6 months | |
Primary | Change from baseline Progressive motility at 1 month | Porgressive motility of spermatozoa in semen analysis | 1 month | |
Primary | Change from 1 month Progressive motility at 6 months | Progressive motility of spermatozoa in semen analysis | 6 months | |
Primary | Change from baseline Vitality at 1 month | live spermatozoa | 1 month | |
Primary | Change from 1 month Vitality at 6 months | live spermatozoa | 6 months | |
Primary | Change from baseline Sperm morphology at 1 month | normal forms of spermatozoa | 1 month | |
Primary | Change from 1 month Sperm morphology at 6 months | normal forms of spermatozoa | 6 months | |
Primary | Change from baseline FSH at 1 month | plasmatic evaluation of FSH | 1 month | |
Primary | Change from 1 month FSH at 6 months | plasmatic evaluation of FSH | 6 months | |
Primary | Change from baseline LH at 1 month | Plasmatic evaluation of LH | 1 month | |
Primary | Change from 1 month LH at 6 months | Plasmatic evaluation of LH | 6 months | |
Primary | Change from baseline Total testosterone at 1 month | plasmatic evaluation of total testosterone | 1 month | |
Primary | Change from 1 month Total testosterone at 6 months | plasmatic evaluation of total testosterone | 6 months | |
Primary | Change from baseline Prolactina at 1 month | plasmatic evaluation of prolactina | 1 month | |
Primary | Change from 1 month Prolactina at 6 months | plasmatic evaluation of prolactina | 6 months | |
Primary | Change from baseline 25-OH-Vitamin D3 at 1 month | plasmatic evaluation of 25-OH-Vitamin D3 | 1 month | |
Primary | Change from 1 month 25-OH-Vitamin D3 at 6 months | plasmatic evaluation of 25-OH-Vitamin D3 | 6 months | |
Primary | Change from baseline Scrotal ultrasound at 1 month | testis volume and vas deferens by ultrasound | 1 month | |
Primary | Change from 1 month Scrotal ultrasound at 6 months | testis volume and vas deferens by ultrasound | 6 months | |
Primary | Change from baseline Trans rectal Prostatic ultrasound at 1 month | prostate volume and morphology by ultrasound | 1 month | |
Primary | Change from 1 month Trans rectal Prostatic ultrasound at 6 months | prostate volume and morphology by ultrasound | 6 months | |
Primary | Change from baseline estradiol at 1 month | plasmatic evaluation of esatrdiol | 1 month | |
Primary | Change from 1 month estradiol at 6 months | plasmatic evaluation of esatrdiol | 6 months |
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