Preoperative imaging prevented operations and storage of tissue with cancer. Evaluation of stored ovarian tissue for MRD using sensitive markers is essential to increase safety and to prevent reimplantation of tissue with malignant cells.
Our results suggest that oocyte collection in IVM cycles should be performed when the DF is 14 mm diameter or less. Sibling immature oocytes may be affected detrimentally if a DF >14 mm is present at oocyte collection.
As cancer treatment outcomes improve, the number of women with cancer seeking fertility preservation increases. Currently, embryo/oocyte cryopreservation appears to provide the best fertility preservation option. However, patients may not have sufficient time to undergo ovarian stimulation prior to chemotherapy and/or the hormones used in ovarian stimulation are contraindicated for certain tumours. In-vitro maturation has been suggested as an effective treatment for these patients. This report presents three women aged 21, 30 and 40 years, without male partners, seeking fertility preservation prior to chemotherapy. They were first seen during the luteal phase of their menstrual cycle and were to undergo gonadotoxic treatment imminently. They underwent immature oocyte retrieval in the luteal phase and seven, five and seven immature oocytes were recovered, respectively. After in-vitro maturation, five, three and five metaphase II (MII) oocytes were vitrified. Two patients later underwent one and two more retrievals, respectively, in the follicular phase of the next cycle(s) and additional oocytes were cryopreserved. These results suggest that immature oocytes recovered in the luteal phase can successfully be matured in vitro; therefore, if there is not sufficient time for conventional follicular-phase oocyte retrieval in a stimulated/unstimulated cycle prior to chemotherapy, a retrieval in the luteal phase could be considered.
BACKGROUNDOur aim was to evaluate whether extending the interval between human chorionic gonadotrophin (hCG) priming and immature oocyte retrieval increases the oocyte maturation rate following in vitro maturation (IVM).METHODSThis study was performed retrospectively. IVM was performed on 113 polycystic ovary syndrome patients (n = 120 cycles). Oocyte collection was performed either 35 h (Group 1; n = 76) or 38 h (Group 2; n = 44) after 10 000 IU of hCG priming. Following oocyte retrieval, oocyte maturity was assessed and the remaining immature oocytes were cultured in IVM medium up to Day 2.RESULTSThe number of in vivo matured oocytes collected was significantly higher in Group 2 (13.6%, 114/840 versus 7.3%, 96/1312 in Group 1) (P < 0.01); the oocyte maturation rate after Day 1 was significantly higher (P < 0.01) in Group 2 (46.3 versus 36.0% in Group 1); and clinical pregnancy (40.9 versus 25%) and implantation rates (15.6 versus 9.6%) were better in Group 2 than those in Group 1.CONCLUSIONSThe results suggest that extending the period of hCG priming time from 35 to 38 h for immature oocyte retrieval promotes oocyte maturation in vivo and increases the IVM rate of immature oocytes. Therefore, oocyte retrieval after 38 h of hCG priming may improve subsequent pregnancy outcome in cycles programmed for IVM treatment.
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