Safety of Ovarian Tissue Autotransplantation for Cancer Patients
Laurence Bockstaele, Sophie Tsépélidis, Julie Dechène, Yvon Englert, Isabelle Demeestere
Abstract
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Laurence Bockstaele, Sophie Tsépélidis, Julie Dechène, Yvon Englert, Isabelle Demeestere
Abstract
Open-access reader
Cancer treatments can induce premature ovarian failure in almost half of young women suffering from invasive neoplasia. Cryopreservation of ovarian cortex and subsequent autotransplantation of frozen-thawed tissue have emerged as promising alternatives to conventional fertility preservation technologies. However, human ovarian tissue is generally harvested before the administration of gonadotoxic treatment and could be contaminated with malignant cells. The safety of autotransplantation of ovarian cortex remains a major concern for fertility preservation units worldwide. This paper discusses the main tools for detecting disseminated cancer cells currently available, their limitations, and clinical relevance.
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Cancer treatments can induce premature ovarian failure in almost half of young women suffering from invasive neoplasia. Cryopreservation of ovarian cortex and subsequent autotransplantation of frozen-thawed tissue have emerged as promising alternatives to conventional fertility preservation technologies. However, human ovarian tissue is generally harvested before the administration of gonadotoxic treatment and could be contaminated with malignant cells. The safety of autotransplantation of ovarian cortex remains a major concern for fertility preservation units worldwide. This paper discusses the main tools for detecting disseminated cancer cells currently available, their limitations, and clinical relevance.
Key concepts: Autotransplantation, Fertility preservation, Ovarian Cortex, Medicine, Ovarian tissue cryopreservation, Premature ovarian failure, Ovarian cancer, Ovarian tissue