Department of Reproductive Medicine and Fertility Preservation, Université Paris-Saclay, Assistance Publique-Hôpitaux de Paris, Antoine Beclère Hospital, 92140 Clamart, France.
Inserm, Physiologie et Physiopathologie Endocrinienne, Université Paris-Saclay, 94276 Le Kremlin-Bicêtre, France.
Int J Mol Sci. 2024 Oct 1;25(19):10605. doi: 10.3390/ijms251910605.
In the last decade, the evolution of oncofertility has sparked a resurgence of interest in in vitro maturation (IVM) due to its suitability in certain oncological scenarios where controlled ovarian hyperstimulation may not be feasible. The retrieval of immature cumulus-oocyte complexes from small antral follicles, regardless of the menstrual cycle phase, presents a swift opportunity to vitrify mature oocytes or embryos post-IVM in urgent situations or when stimulation is not advisable. Harvesting immature cumulus-oocyte complexes and immature oocytes can be achieved transvaginally or directly in the laboratory from extracorporeal ovarian tissue. Although IVM has transitioned from an experimental status due to safety validations, it relies on the intricate process of oocyte maturation. Despite successful live births resulting from IVM in fertility preservation contexts, the comparatively lower developmental competence of in vitro matured oocytes highlights the necessity to enhance IVM culture systems. Recent advancements in IVM systems hold promise in bolstering oocyte competence post-IVM, thereby narrowing the gap between IVM and outcomes from ovarian stimulation. Additionally, for optimizing the chances of conception in cancer survivors, the combination of IVM and ovarian tissue cryopreservation stands as the favored choice when ovarian stimulation is unfeasible.
在过去的十年中,肿瘤生育学的发展激发了人们对体外成熟(IVM)的兴趣复苏,因为它适用于某些肿瘤学情况下,在这些情况下,控制性卵巢过度刺激可能不可行。从小窦卵泡中获取未成熟的卵丘-卵母细胞复合物,无论月经周期阶段如何,都为在紧急情况下或不建议刺激时快速进行 IVM 后玻璃化成熟卵母细胞或胚胎提供了机会。可以通过阴道或直接从体外卵巢组织在实验室中收获未成熟的卵丘-卵母细胞复合物和未成熟卵母细胞。尽管由于安全性验证,IVM 已经从实验状态转变,但它依赖于卵母细胞成熟的复杂过程。尽管在生育力保存的情况下,IVM 已经成功地导致了活产,但体外成熟的卵母细胞发育能力相对较低,这突出表明需要增强 IVM 培养系统。IVM 系统的最新进展有望增强 IVM 后卵母细胞的能力,从而缩小 IVM 与卵巢刺激结果之间的差距。此外,为了优化癌症幸存者的受孕机会,当卵巢刺激不可行时,IVM 和卵巢组织冷冻保存的结合是首选。