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Ovarian Tissue Cryopreservation clinical trials

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NCT ID: NCT04666376 Not yet recruiting - Vitrification Clinical Trials

Assessing the Technique of Ovarian Tissue Cryopreservation by Vitrification in Vietnam

Start date: January 1, 2021
Phase: N/A
Study type: Interventional

Ovarian tissue cryopreservation (OTC) is a new approach on fertility preservation for young female patients with cancer. It is now used by many IVF centers in the world. However, this is the first study which OTC by vitrification is carried on and assessed the effectiveness of the technique.

NCT ID: NCT03381300 Active, not recruiting - Turner Syndrome Clinical Trials

Preservation of Ovarian Cortex Tissue in Girls With Turner Syndrome

Start date: January 1, 2018
Phase: N/A
Study type: Interventional

Rationale: Infertility due is a major concern for girls with Turner syndrome (TS) and their parents. Physicians are often asked about possible options to preserve their fertility. However, despite some experimental case reports, clear evidence for fertility preservation in these girls is lacking and many questions remain. Without evidence on the effectiveness of fertility preservation it cannot routinely be offered to girls with TS. Objective: To investigate the occurrence of live birth in women with TS after ovarian tissue cryopreservation in childhood followed by auto transplantation in adulthood. Study design: A national multicentre exploratory intervention study Study population: Girls diagnosed with Turner Syndrome, aged 2-18 years. Intervention: Ovarian tissue cryopreservation in childhood followed by auto transplantation in adulthood. In order to obtain the ovarian tissue for cryopreservation, all girls must undergo a laparoscopy under general anaesthesia which will be performed in academic/university clinics with paediatric surgery. During the laparoscopic intervention, a unilateral oophorectomy will be performed, thereby leaving the other ovary intact for hormone production, ovulation, spontaneous pregnancies and as an auto transplantation site for cryopreserved-thawed ovarian cortical tissue later on. Furthermore, a small sample of the ovarian cortex will be used to assess the oocyte quality and genetics (e.g. the presence of germ line mosaicism). Oocytes will be karyotyped by using Fluorescence in situ hybridization (FISH). Karyotypic and hormonal data will be collected once at the yearly clinical visit at the paediatric-endocrinologist. Therefore, a buccal swab and one extra blood sample will be taken and evaluated during the routine laboratory evaluation. In the future, auto transplantation of frozen-thawed ovarian cortex strips will be performed.