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Active clinical trials for "Infertility, Male"

Results 171-180 of 190

Influence of Inguinal Hernia Repair on Sperm Autoimmunity

Male Infertility Due to Antisperm Antibody

Influence of inguinal hernia repair on sperm autoimmunity using MAR test

Completed2 enrollment criteria

Relationship Between Sperm Head Vacuoles and Sperm DNA Alterations in Infertile Men

Male Infertility

In men presenting sperm alterations, the selection of genetically undamaged spermatozoa need to be improved in order to increase the success of assisted reproduction treatments. The aim of this study is to determine whether the presence of sperm head vacuoles is associated with sperm DNA alterations.

Completed13 enrollment criteria

Outcomes of Intra-Cytoplasmic Sperm Injection in Infertile Men With Non-tense Vaginal Hydrocele...

InfertilityMale

Infertile men due to oligoasthenospermia with non-tense hydroceles are subjected to ICSI

Completed9 enrollment criteria

Sperm DNA Damage to Intracytoplasmic Sperm Injection Outcome

InfertilityMale

In the current era of assisted reproductive techniques where technology can help overcome defects in sperm function, the value of semen analysis has become even more inaccurate. Initial reports of intracytoplasmic sperm injection revealed its ability to bypass the natural selection process and enable men with severely impaired semen parameters to achieve both clinical pregnancy and live birth

Completed7 enrollment criteria

Correlating In Vitro Fertilization Outcomes After Euploid Blastocyst Transfer With Sperm DNA Fragmentation...

Male Infertility

The purpose of this study is to determine if sperm DNA fragmentation is associated with in vitro fertilization (IVF) outcomes when euploid embryos are transferred.

Completed12 enrollment criteria

Epigenetic and Genetic Effects in Cancer Patients: Analysis Pre and After Treatment

Male InfertilityCancer1 more

The prognosis in cancer patients has improved over the years. Survivor rates have increased significantly, and paternity has become an important concern in more than 50% of young male survivors. Sperm cryopreservation before cancer treatment is highly recommendable in these patients, as a strategy to preserve their fertility due to is not possible to predict how the chemo or radiotherapy treatment will affect the spermatogenesis. The objective of this study is to evaluate if sperm after an antineoplastic treatment can be safely used. To determine the possible effects of oncological treatments in the spermatogenesis, three parameters will be analyzed, aneuploidy frequencies, DNA fragmentation in single and double-strand breaks and methylation levels to determine epigenetic changes before and after the therapy. If cancer treatment affect sperm genetic integrity, it would have a clinical impact in the offspring of these patients. Identify the different side effects of antineoplastic treatments in DNA sperm will provide a clinical improvement in order to select the best sperm sample in an IVF treatment and it will facilitate genetic counseling

Unknown status3 enrollment criteria

Vitamin D and Human Sperm DNA Fragmentation

Infertility,MaleVitamin D Deficiency

The purpose of this study will be to investigate if there is a correlation between Vitamin D levels and Sperm DNA Fragmentation. This is a prospective, cohort study. In this study male participants presenting with their partners because of inability to conceive will be recruited for this study. Participants will have a blood sample drawn which will be tested for Vitamin D level. The investigators will then compare sperm DNA fragmentation between normal Vitamin D levels, Vitamin D insufficiency, and Vitamin D deficiency. All infertile males who present to the investigators' infertility clinic have a Semen analysis and Sperm chromatin Structure Assay (SCSA). The research part of the study will be to obtain the Vitamin D level.

Unknown status2 enrollment criteria

Modern Analyses of the Semen in Evaluating Male Fertility and Treatment Options of Male Infertility...

InfertilityMale

Men are recruited to collect seminal plasma samples and serum samples from men with azoospermia, men receiving medical treatment of infertility and men attending semen analysis. MicroRNA (miRNA) and PiWi-interacting RNA (piRNA) are analyzed for all of the groups to find potential differences. Steroid hormones are analyzed by liquid chromatography-tandem mass spectrometry.

Unknown status3 enrollment criteria

Role of Nutritional Support in Idiopathic Male Infertility

InfertilityMale

Approximately 100 males with idiopathic infertility and oligo- and/or astheno- and/or and/or teratozoospermia and fertile woman will take a Test dietary supplement (TDS), containing carnitine, vitamins and trace elements (active group) or carotene (control group) for 6 months (50 subjects in active and control groups). Before intake, and 2 and 4 months after the commencement of TDS, all males will have spermogram. After 6-month use of the TDS and during the 12th month of the study, couples will be screened for conception, pregnancy, and a newborn

Unknown status15 enrollment criteria

Selection of Non Apoptotic Human Sperm for in Vitro Fertilization by Using Magnetic Activated Cell...

InfertilityMale

This clinical study has been organised to help improve the embryo quality in couples having high rate of sperm showing apoptotic signs. For this, the investigators intend to use a procedure (MACS: magnetic-activated cell sorting) that allows the identification and the removal of the apoptotic sperm cells. This procedure will increase the chance of using non-apoptotic sperm during in vitro fertilization via Intracytoplasmic Sperm Injection (ICSI). By using this procedure the investigators aim to increase the rate of embryos with good quality for these particular couples.

Unknown status14 enrollment criteria
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