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The outcome of intracytoplasmic injection of fresh and cryopreserved epididymal spermatozoa from patients with obstructive azoospermia--a comparative study.

The aim of our study was to compare the outcome of intracytoplasmic sperm injection (ICSI) with fresh and frozen-thawed epididymal spermatozoa retrieved by percutaneous epididymal sperm aspiration (PESA) or microepididymal sperm aspiration (MESA) from patients with obstructive azoospermia. A retrospective analysis of consecutive ICSI cycles was performed, comparing the outcome in 24 patients with obstructive azoospermia undergoing surgical sperm aspiration by MESA (7 cycles) or PESA (17 cycles). In 23 of 24 patients, excess spermatozoa were cryopreserved. Following thawing, 21 ICSI cycles were performed (11 cycles after MESA, 10 after PESA). No statistically significant differences were noted in all parameters examined in ICSI cycles with fresh or cryopreserved spermatozoa from the same patients. Comparing all ICSI cycles with fresh and frozen-thawed epididymal spermatozoa, the rates of two-pronuclear fertilization (56% versus 53%), embryo cleavage (90% versus 86%), implantation (10% versus 14%), clinical pregnancy per embryo transfer (32% versus 37%) and delivery/ongoing pregnancy rate (27% versus 26%) were not statistically different. The cumulative ongoing pregnancy rate per sperm retrieval procedure was 46%, respectively. We conclude that the clinical outcome of ICSI with fresh and frozen-thawed spermatozoa after retrieval by PESA was similar to that by MESA. Epididymal sperm cryopreservation in patients with obstructive azoospermia is feasible and efficient using a simple freezing protocol and should be offered to optimize the yield of pregnancies achieved following such procedures.

Adult↗

A live birth from intracytoplasmic injection of a testicular spermatozoon.

Testicular sperm was retrieved from a man with complete epididymal obstruction, and intracytoplasmic sperm injection was performed on his wife's oocytes. In four mature treated, two fertilized eggs were obtained, and a clinical pregnancy was established with embryo transfers. One healthy girl (2715 g) was delivered by cesarean section at 38 weeks' gestation. Our case shows that the use of testicular sperm can result in a normal live birth.

Adult↗

Successful pregnancy after intracytoplasmic injection of a single testicular spermatozoon into a human oocyte: a case report.

Testicular sperm was retrieved from a man with an epididymal obstruction, and an intracytoplasmic sperm injection was made into his wife's oocytes. In 4 mature oocytes treated, 2 fertilized eggs were obtained, and a clinical pregnancy was established with embryo transfers. Our experience demonstrated the possibility of fertilization and conception with testicular sperm.

Adult↗

Epididymal and testicular sperm for intracytoplasmic sperm injection in the treatment of obstructive azoospermia.

BACKGROUND: The possibility of treating male infertility because of obstructive azoospermia has been poor, but intracytoplasmic sperm injection (ICSI) has given this type of infertility sufferer a new option. MATERIAL AND METHODS: In this study 13 couples with obstructive azoospermia were treated in a total of 19 stimulated IVF cycles. The men were between 27 and 45 (mean 33) years of age. Their partners, 24-39 (mean 31) years of age were treated according to routine IVF procedures, i.e. down regulation with buserelin followed by hyperstimulation with urofollitropin. Fertilization was obtained by ICSI. Two embryos were transferred on day two after the ovum pick up. Sperm were retrieved through microsurgical epididymal aspiration (MESA) in four cycles, percutaneous epididymal sperm aspiration (PESA) in three cycles and through testicular sperm extraction (TESE) in 12 cycles. RESULTS: The overall fertilization rate was 68%, with a cleavage rate of 82%.The fertilization rate was equal (68%) with epididymal and testicular sperm and the cleavage rate was 87%) and 80%, respectively. Embryos were obtained for embryo transfer (ET) in all cases and five pregnancies (one twin pregnancy) were established (26% per ET), three using epididymal sperm and two using testicular sperm. CONCLUSION: Infertility due to obstructive azoospermia can successfully be treated with epididymal sperm and ICSI. When epididymal sperm cannot be found sperm extracted from a testicular biopsy can be used. PESA and TESE are quicker and easier alternatives to MESA and can be performed on an outpatient basis with local anesthesia.

Adult↗

Testicular sperm extraction (TESE) and intracytoplasmic sperm injection (ICSI) in hypogonadotropic hypogonadism with persistent azoospermia after hormonal therapy.

PURPOSE: We aimed to retrieve testicular sperm to be employed on intracytoplasmic sperm injection (ICSI) cycles on a male affected of hypogonadotropic hypogonadism (HH) that remained azoospermic after long-time hormonal treatment. METHODS: Design. We initially performed hormonal therapy using gonadotropins to achieve spermatogenesis. After several semen analyses, we weighed the possibility of looking for testicular spermatozoa for ICSI. Setting. A private university-affiliated setting. Patient. A 30-years-old man diagnosed 10 years ago to suffer from idiopathic, prepubertal HH. Interventions. Gonadotrophin treatment was initiated with hCG and follicle stimulating hormone (FSH). Testicular sperm extraction was carried out when repeated spermiograms were negative. Motile testicular spermatozoa were cryopreserved and were subsequently employed for ICSI. Multiple follicular development was stimulated with gonadotropins after a downregulation with gonadotropin-releasing hormone (GnRH) antagonists in the woman. Main Outcome Measures. Seminal analyses were performed after 3, 6, and 12 months of treatment and serum FSH, luteinizing hormone (LH) and testosterone levels were also measured. RESULTS: Seminal analysis showed always azoospermia. Serum FSH was 2.9 mIU/mL, serum LH >1 mIU/mL and serum testosterone 7.9 ng/mL (12 months after treatment). Nine oocytes were collected by ultrasound-guided transvaginal route and eight of them were microinjected with motile, frozen-thawed testicular spermatozoa. Four oocytes were fertilized. Three embryos were transferred without pregnancy. CONCLUSIONS: The case report here presented shows that the currently available assisted reproduction techniques may be of value in patients with HH not responding to conventional hormonal treatments.

Adult↗

AZFb deletions predict the absence of spermatozoa with testicular sperm extraction: preliminary report of a prognostic genetic test.

Genetic abnormalities, including partial deletions of the Y-chromosome, are commonly detectable in men with non-obstructive azoospermia (NOA). NOA can be treated using testicular sperm extraction (TESE) with intracytoplasmic sperm injection (ICSI). Recent studies have shown that the presence of deletions involving the AZFc region do not appear to affect the chance of retrieving spermatozoa or have a significant impact on fertilization or pregnancy rates with ICSI. We investigated the effect of Y-chromosome partial deletions on the chance of sperm retrieval with TESE. Eighty attempts at sperm retrieval were performed using TESE on men who were previously evaluated for Y-chromosome partial deletions. Y-chromosome analysis was performed using a polymerase chain reaction (PCR)-based technique with 35 sequence-tagged-sites. Of the 80 men, nine (11%) had partial Y-chromosome deletions detected. Two azoospermic men with AZFc deletions had successful sperm retrieval, ICSI and a subsequent clinical pregnancy. Seven men had deletions involving the AZFb region (three men had isolated AZFb deletions, one had AZFa, AZFb and AZFc deleted, and three had AZFb and AZFc deleted). None of the seven men had spermatozoa extracted by TESE, a result that is significantly different from the overall 64% (47/73) sperm retrieval rate achieved at our centre (P = 0.001). Two men with AZFb deletions had cells consistent with round spermatids identified and injected into oocytes without effecting any normal fertilizations. Although preliminary, these results suggest that the presence of an AZFb deletion is a significantly adverse prognostic finding for TESE. Men with AZFb deletions should be apprised of these results before attempting TESE-ICSI. Alternatives such as donor insemination or adoption should be considered or therapy delayed until improved results with round spermatid injections are likely.

Adult↗

Percutaneous epididymal sperm aspiration and intracytoplasmic sperm injection in the management of infertility due to obstructive azoospermia.

OBJECTIVE: To evaluate the recovery rate of spermatozoa from the epididymis using a percutaneous aspiration technique and to examine the fertilization rate after intracytoplasmic sperm injection. DESIGN: Prospective observational study. SETTING: Private infertility clinic, London. SUBJECTS: Twenty patients with obstructive azoospermia who each had an attempt at IVF. The sperm used for intracytoplasmic sperm injection was retrieved by percutaneous epididymal sperm aspiration in 16 patients. In one patient, microepididymal sperm aspiration was performed in addition because the quality of the sperm obtained by percutaneous epididymal sperm aspiration was not considered suitable for microinjection. In the remaining three patients, neither percutaneous epididymal sperm aspiration nor microepididymal sperm aspiration resulted in the recovery of sperm, which was obtained by testicular biopsy in one of them. INTERVENTION: Assisted fertilization with intracytoplasmic sperm injection. MAIN OUTCOME MEASURES: Normal fertilization and pregnancy rates. RESULTS: A total of 179 eggs were collected and 157 subsequently were microinjected. Normal fertilization occurred in 22 oocytes (14%) and the total number of embryos cleaved was 30. Twelve patients underwent ET in which three conceived (pregnancy rate 25% per transfer). The implantation rate was 10% and failed fertilization occurred in four cycles. CONCLUSION: Percutaneous epididymal sperm aspiration can be used successfully to recover sperm in men with obstructive azoospermia for use in assisted fertilization IVF cycles. The technique is simple, effective, and less traumatic compared with an open microsurgical operation.

Adult↗

The rate of aneuploidy is altered in spermatids from infertile mice.

BACKGROUND: It is now possible for infertile males to father their own genetic children through the technique of ICSI. This prospect has consequently prompted several investigations into the quality of sperm being retrieved from infertile males. One potential risk is the use of aneuploid sperm or spermatids, which might then be transferred to the fertilized oocyte. METHODS: In this investigation, aneuploidy of spermatids was assessed through immunocytochemistry using antibodies directed against chromosome centromeric regions and complexes. Three different types of infertile male mice with phenotypes closely resembling those described in human non-obstructive azoospermia [PP1cgamma-deficient mice, CREM-deficient mice and C57BL/6J.MAC-17(0--23) mice] were examined for chromosome numbers by counting the number of kinetochores in round spermatids using a CREST antiserum. RESULTS: PP1cgamma(-/-) and CREM(-/-) spermatids from infertile mice showed highly significant elevated levels in the rate of aneuploidy compared with wild-type animals (P < 0.0001). Thus infertile males with independent genetic mutations resulting in different histopathologies showed a high risk in the level of aneuploidy in their spermatids. CONCLUSIONS: These results suggest that impaired spermatogenesis may lead to production of aneuploid gametes. Analysis of aneuploidy in gametes from infertile men, coupled with appropriate genetic counselling, is recommended prior to ICSI.

Aneuploidy↗

Predictors of success during the coasting period in high-responder patients undergoing controlled ovarian stimulation for assisted conception.

OBJECTIVE: To determine the prognostic factors analyzed during the coasting period that can be used to predict outcomes of IVF cycles. DESIGN: Retrospective review of data from a single center. SETTING: Referral private IVF center. PATIENT(S): Three hundred forty-six patients who were coasted for the prevention of ovarian hyperstimulation syndrome (OHSS) and 262 patients who were not coasted but having excessive E(2) levels during controlled ovarian hyperstimulation for assisted conception. INTERVENTION(S): Controlled ovarian hyperstimulation, oocyte retrieval, intracytoplasmic sperm injection, and embryo transfer. MAIN OUTCOME MEASURE(S): Number of total oocytes retrieved, oocyte maturity, fertilization, implantation and pregnancy rates (IR and PR, respectively), and incidence of severe OHSS. RESULT(S): No difference was found between early onset coasted patients, late onset coasted patients, and uncoasted patients in terms of fertilization rates, IR, PR, and incidence of severe OHSS. Fertilization and PR did not correlate significantly with decreases in E(2) level during the coasting period. Implantation rates and PR in patients who were coasted > or =4 days were significantly reduced compared with patients who were coasted for 1-3 days. In logistic regression model, the decrease in PR with prolonged coasting was found to be significant; however, there was no correlation between decreased PR and the decrease in E(2) levels during the coasting period. CONCLUSION(S): Coasting can be applied safely to controlled hyperstimulation cycles without compromising the outcome. The duration of coasting seems to be a prognostic factor for the outcome of IVF. The criteria for initiation of coasting should be based on clinical experience and assessment of the patient.

Databases, Factual↗

Tasks of surgical andrology in current interdisciplinary reproductive medicine.

Although the controversy about varicocele treatment options and their benefit has not been resolved, evidence is increasing that a cautious use of varicocele surgery contributes to effective management of male factor subfertility. Moreover, timely varicocele treatment might be an equally valuable prevention of later subfertility as early treatment of cryptorchidism. In reconstructive surgery of the ductal system, a more frequent use of tubulovasostomy can prevent initial failure. Furthermore, the cryopreservation of spermatic fluid for intracytoplasmic sperm injection can obviate a repeat procedure, if patency is not reached with surgery. The surgical andrologist is also the 'retriever' of sperm cells for assisted reproduction in cases of irreparable damage of the male reproductive organs. Efforts to delimit critically the indications and the results of the different techniques with large multicentre and interdisciplinary studies should be emphasized. Finally, it is encouraging that andrology does not rely solely on the successes and possibilities of assisted reproduction, but continues to inquire into the causes of male subfertility (e.g. by implementing immunohistochemical techniques into clinical research).

Journal Article↗

Cryobiology in human assisted reproductive technology. Would Hippocrates approve?

Recent advances in human cryobiology have been substantially greater than the first slow step from freezing spermatozoa in animals in Italy, published in 1776 to observing motility in frozen-thawed human sperm in 1938(1). Reports on cryopreservation of rabbit oocytes (1947)(1) and births from fertilised frozen-thawed mice oocytes in 1977(1) were soon followed by the first human pregnancy (1983)(1) and birth (1984)1 following transfer of frozen-thawed embryos after in-vitro fertilisation (IVF). Whereas cryopreservation of human sperm and embryos in tertiary level fertility centres is now commonplace, the full clinical, scientific and sociological consequences of progress in this rapidly moving field are to be determined. These include pregnancy with frozen-thawed human mature, oocytes after conventional IVF (1986)4, intracytoplasmic sperm injection (ICSI)(5) (1996), pregnancies following use of frozen-thawed mature (1995)(5,6) and immature oocytes (1999)(7), ovarian tissue banking (8) and possible autografting (1999)(9) as well as repeated freeze-thawing of male gametes and of embryos (10,11). Cryopreservation of female and male gametes instead of embryos offer solutions of obvious religious, ethical, legal and clinical problems. In addition, there may be benefits in reducing the cost of infertility treatment, improving the safety of fertility treatment with respect to ovarian hyperstimulation syndrome and repeated treatment with controlled ovarian hyperstimulation, prevention of diseases such as sexually transmitted diseases and hereditary disorders and preventing infertility by possible long-term storage of gametes, gonadal tissue and even embryos. The benefits of cryopreservation of sperm, oocytes and embryos in the management of subfertile couples, many being self-evident to some, bear emphasis. Cryopreservation of sperm offers substantial organisational, cost and social advantages in IVF/ICSI treatment, in that it is no longer necessary for both partners to be present at the time of oocyte retrieval, or to have the sperm retrieval done simultaneously, as frozen-thawed sperm (ejaculatory, epididymal or testicular) can be used. This strategy permits men in the latter two categories to be able to support their partners at the time of oocyte retrieval, with the knowledge that their sperm surgically obtained some time previously, is available. It is now clear that, in men with obstructive azoospermia, the use of fresh or frozen-thawed sperm will yield equivalent fertilisation rates following ICSI. In men with non-obstructive azoospermia, with a 60% chance only of obtaining sperm from the testicular aspiration or biopsy, the option could be cryopreservation of the sperm harvested first and later controlled ovarian hyperstimulation of the female partner, to use thawed sperm which will lead to equivalent fertilisation rates using fresh sperm. Thus, one may avoid cost of treatment of the female in those couples who do not wish to use donor sperm as a back-up in the 40% of men from whom sperm is not obtained. Important consequences of cryopreservation of gametes and gonadal tissue are likely to be in the area of prevention of hereditary and familial diseases, as cryopreservation of oocytes, sperm, embryos and blastocysts is exploited fully in pre-implantation genetic diagnosis (PGD) strategies12. Embryo biopsy now permits screening to identify normal embryos from couples who are carriers of known single gene defects and hereditary disorders and the list of these conditions is expanding rapidly. PGD is feasible on frozen-thawed blastomeres even if cells have lysed after thawing, providing information relevant for surviving blastomeres or blastocysts. But what of the gene probes which will soon deluge us on the completion of the Human Genome Project? Can we anticipate benefits and consider proposing that couples with familial disorders, whether degenerative e.g. Type 2 Diabetes, or malignant conditions such as cancer of the ovary, breast and colon? Should we cryopreserve oocytes/sperm/embryos for the purposes of PGD once the markers are available? Cryobiology indeed provides hope now for women and men with neoplastic diseases, who are about to receive oncotherapy for malignancies which inevitably will render them sterile. Men may now freeze epididymal, testicular as well as ejaculatory sperm as ICSI has revolutionalised the treatment of male infertility. It might be likely that testicular tissue from prepubertal boys can be cryopreserved with a reasonable expectation that techniques will soon be developed to effect maturation of spermatogonia in-vivo or in-vitro13. The greatest advance is likely to be for women suffering from reproductive cancer, who may now consider mature and immature oocytes being frozen or vitrified with a reasonable chance of fertilisation by ICSI later, as well as the cryopreservation and storage of ovarian cortex tissue biopsies. Work is proceeding still to refine techniques of in-vitro maturation of frozen-thawed immature oocytes, and the frozen-thawed ovarian cortex tissue slices. The potential benefits will not only be to female fertility for the latter conditions but endocrine disorders as well as by autotransplantation (1999)9. Currently, ovarian tissue banking8 is being considered by women undergoing procedures or treatment which could destroy ovarian function with quite realistic but cautious expectations of preserving ovarian function, but tomorrow women may consider banking ovarian tissue as insurance against childlessness because of the risk of disorders in the reproductive tract (endometriosis, simple recurrent ovarian cysts) and even advancing years. For those who have conceived with surplus oocytes cryopreserved, anonymous oocyte donation is a possibility for the solution of ethical and legal problems. All over Europe, the age of women having their first child is dramatically increasing now being in their late twenties, with likely significant implications in the need to fertility treatment in the Millennium. Society has always been excited but understandably cautious about the prospect of whole body cryopreservation. Hippocrates would have argued that Society could separate medicine and its advances from religious views, dogma and prejudice and, on the present evidence, would probably have looked upon human cryobiology favourably. Human cryobiology is here to stay and society as well as the profession is addressing its relevance. There are clear signs that this technology can and will alleviate suffering by preventing genetic and familial diseases, infections and infertility as well as lowering the cost and social consequences of the treatment. For these reasons, further research in this field should be welcomed and supported.

Cryopreservation↗

Effect on clinical outcome of the interval between collection of epididymal and testicular spermatozoa and intracytoplasmic sperm injection in obstructive azoospermia.

We wished to determine whether the interval between surgical retrieval of epididymal and testicular spermatozoa in obstructive azoospermia and their subsequent use in intracytoplasmic sperm injection (ICSI) has an effect on their fertilizing capacity and pregnancy rates in patients undergoing ICSI. This was a retrospective review of 164 consecutive cycles of ICSI in partners of men undergoing surgical sperm retrieval for obstructive azoospermia. Seventy-three cycles used fresh testicular spermatozoa; in 35 cycles ICSI was performed within 4 hours of sperm retrieval, and in 38 cycles spermatozoa were incubated overnight before ICSI. Epididymal spermatozoa were used in 29 cycles; 22 cases within 4 hours of retrieval and 7 cases following overnight culture. Cyropreserved testicular and epididymal spermatozoa were used in 42 and 20 ICSI cycles, respectively. Fertilization and clinical pregnancy rates were calculated for each treatment group. Fertilization rates for epididymal spermatozoa were 67% at 4 hours, 56% at 24 hours, and 63% for cryopreserved spermatozoa (P =.52). Fertilization rates for testicular spermatozoa were 63% at 4 hours, 71% at 24 hours, and 60% for cryopreserved spermatozoa (P =.16). Unlike testicular spermatozoa, cryopreserved epididymal spermatozoa showed a significant increase in clinical pregnancy rates with cryopreservation, with rates of 4 of 22, 1 of 7, and 10 of 20 at 4 hours, 24 hours, and cryopreservation, respectively (P =.049). This study confirms that fertilization and pregnancy rates following ICSI with motile spermatozoa are unaffected by the duration between surgical retrieval of spermatozoa and their injection into oocytes. It also demonstrates that of all treatment modalities, the use of frozen epididymal spermatozoa was associated with the greatest pregnancy rates.

Adult↗

The impact of early testicular sperm extraction or cryopreservation on the outcome of intracytoplasmic sperm injection--a randomized controlled study.

PURPOSE: To compare the outcome of sperm extraction 24 h before ovum pickup and on the day of oocyte retrieval. METHODS: A controlled study was performed to compare the outcome of 90 sperm extractions and in vitro sperm injection cycles performed in 54 patients. RESULTS: Available fresh sperm for the sperm injection procedure and cryopreservation obtained on the day of ovum pickup were similar to sperm collected 1 day before (33.3% vs 39.4%, respectively). Fertilization rate obtained with fresh sperm was also similar (48.9% vs. 54%), respectively. Clinical pregnancy rate was 38% vs. 22% per embryo transfer, respectively (P = 0.235). When comparing an additional 24 cycles with cryopreservation of sperm retrieved on the day of ovum pickup, as well as a day previously, no significance was noted in the parameters. CONCLUSIONS: Sperm retrieved 24 h before oocyte retrieval and used as fresh or frozen-thawed for sperm injection are as effective as those used on the day of ovum pickup.

Adult↗

An algorithm to predict pregnancy in assisted reproduction.

BACKGROUND: Male fertility potential cannot be measured by conventional parameters for the assisted reproduction technique; ICSI. This study determines the relationship between testicular and ejaculated sperm mitochondrial (mt) DNA deletions, nuclear (n) DNA fragmentation, and fertilization and pregnancy rates in ICSI. METHODS: Ejaculated sperm were obtained from 77 men and testicular sperm from 28 men with obstructive azoospermia undergoing ICSI. Testicular sperm were retrieved using a Trucut needle. mtDNA was analysed using a long PCR. The alkaline Comet assay determined nDNA fragmentation. RESULTS: Of subjects who achieved a pregnancy (50%) using testicular sperm, only 26% had partners' sperm with wild-type (WT) mtDNA. Of pregnant subjects (38%) using ejaculated sperm, only 8% had partner sperm with WT mtDNA. In each, the successful group had less mtDNA deletions and less nDNA fragmentation. There were inverse relationships between pregnancy and mtDNA deletion numbers, size and nDNA fragmentation for both testicular and ejaculated sperm. No relationships were observed with fertilization rates. An algorithm for the prediction of pregnancy is presented based on the quality of sperm nDNA and mtDNA. CONCLUSION: In both testicular and ejaculated sperm, mtDNA deletions and nDNA fragmentation are closely associated with pregnancy in ICSI.

Algorithms↗

Intracytoplasmic sperm injection for treatment of non-obstructive azoospermia.

Four cases from a tertiary care teaching medical center were studied to assess the potential of sperm extraction, fertilization and the establishment of pregnancy in couples with non-obstructive azoospermia. Four couples with non-obstructive azoospermia underwent intracytoplasmic sperm injection after testicular sperm extraction. Multiple small biopsies were obtained from each testis under general anesthesia in search for sperm, and to establish a histologic diagnosis. The histopathology includes incomplete maturation arrest, hypospermatogenesis, germ cell hypoplasia and incomplete tubular sclerosis. Testicular sperm extraction resulted in the retrieval of immotile sperm from three patients, and a few motile sperm from one patient. Of 60 oocytes which were injected with testicular sperm, 32 (53.3%) fertilized and 27 of these (84.4%) cleaved. Twelve embryos were transferred to three patients and the remaining 15 embryos were cryopreserved. In one patient, no embryos resulted. One clinical pregnancy was established and a normal female infant, weighing 7 lbs 11 oz, was delivered vaginally in August 1996. This study shows that sperm can be extracted from patients with non-obstructive azoospermia when multiple biopsies are obtained. Fertilization, cleavage, clinical pregnancy and delivery of normal babies can be achieved using intracytoplasmic injection of extracted sperm.

Adult↗

Is posthumous semen retrieval ethically permissible?

It is possible to retrieve viable sperm from a dying man or from a recently dead body. This sperm can be frozen for later use by his wife or partner to produce his genetic offspring. But the technical feasibility alone does not morally justify such an endeavour. Posthumous semen retrieval raises questions about consent, the respectful treatment of the dead body, and the welfare of the child to be. We present two cases, discuss these three issues, and conclude that such requests should generally not be honoured unless there is convincing evidence that the dead man would want his widow to carry and bear his child. Even with consent, the welfare of the potential child must be considered.

Adult↗

Multiple testicular sampling in non-obstructive azoospermia--is it necessary?

Spermatogenesis may be focal in non-obstructive azoospermia. The present study was conducted to determine whether the performance of multiple, rather than a single testicular sample contributes to obtaining spermatozoa in amounts sufficient for fertilization and cryopreservation in non-obstructive, azoospermic patients. Furthermore, the aim was to clarify the significance of location for retrieval from the testis in such cases. Three biopsies were taken from identical locations in 55 testes of 29 men with non-obstructive azoospermia: (i) the rete testis region, ii) the midline, and (iii) the proximal region of the testis. When sperm cells were detected, they were used for intracytoplasmic sperm injection (ICSI), and the remainder were then cryopreserved in as many aliquots as possible (adjusted for ICSI procedure). Spermatozoa were found in 28 testes (50.9%) of 18 men (62.1%). In the testes from which spermatozoa were obtained, they were present in three, two or one locations in 15 (53.6%), five (17.9%) and eight (28.6%) cases respectively. The possibility of finding spermatozoa was not influenced by the location in the testis. Multiple testicular sperm extraction is recommended in cases of non-obstructive azoospermia, since it may enhance diagnostic accuracy of absolute testicular failure and increase the number of sperm cells retrieved.

Adult↗

Cystic fibrosis gene mutations do not affect sperm function during in vitro fertilization with micromanipulation for men with bilateral congenital absence of vas deferens.

OBJECTIVE: To assess the effects of cystic fibrosis transmembrane-conductance regulator (CFTR) gene mutations on sperm function and fertility in men with bilateral congenital absence of the vas deferens. DESIGN: Prospective. SETTING: Division of urologic microsurgery and associated hospital-based IVF unit. MAIN OUTCOME MEASURES: Fertilization and pregnancy rates. PATIENTS: Men referred to our fertility unit for treatment of bilateral congenital absence of the vas deferens, using sperm surgically retrieved from the epididymis with IVF and micromanipulation. RESULTS: Of 45 men with bilateral congenital absence of the vas, 54% (19/35) tested were found to be carriers of CFTR gene mutations, with one compound heterozygote. Epididymal sperm from men affected with CFTR mutations fertilized 19% (29/152) of oocytes, whereas men without mutations fertilized 22% (44/204) of oocytes. Pregnancy rates (PRs) were 36% (5/14) for cycles involving men with CFTR mutations and 33% (5/15) for other patients with congenital absence of the vas deferens but without detectable CFTR mutations. CONCLUSIONS: The presence of detectable CFTR mutations does not affect fertilization rates or PRs for men with bilateral congenital absence of the vas deferens when IVF and micromanipulation are applied.

Cystic Fibrosis↗