Department of Biology, University of Saskatchewan, Saskatoon, SK, S7N 5E2, Canada.
Sci Rep. 2023 Dec 21;13(1):22911. doi: 10.1038/s41598-023-49892-7.
Oncology treatments cause infertility, and ovarian tissue cryopreservation and transplantation (OTCT) is the only option for fertility preservation in prepubertal girls with cancer. However, OTCT is associated with massive follicle loss. Here, we aimed to determine the effect of supplementation of slow freezing and vitrification media with BAPTA-AM and melatonin alone and in combination on ovarian tissue viability, reactive oxygen species (ROS) levels, total antioxidant capacity (TAC), and follicular morphology and viability. Our results indicated that BAPTA-AM and melatonin can significantly improve ovarian tissue viability and the TAC/ROS ratio and reduce ROS generation in frozen-thawed ovarian tissues in slow freezing and vitrification procedures. BAPTA-AM was also found to be less effective on TAC compared to melatonin in vitrified ovarian tissue. While supplementation of slow freezing and vitrification media with BAPTA-AM and/or melatonin could increase the percentage of morphologically intact follicles in cryopreserved ovarian tissues, the differences were not significant. In conclusion, supplementation of cryopreservation media with BAPTA-AM or melatonin improved the outcome of ovarian tissue cryopreservation in both vitrification and slow freezing methods. Our data provide some insight into the importance of modulating redox balance and intracellular Ca levels during ovarian tissue cryopreservation to optimize the current cryopreservation methods.
肿瘤治疗会导致不孕,而卵巢组织冷冻保存和移植(OTCT)是癌症青春期前女孩生育保存的唯一选择。然而,OTCT 与大量卵泡丢失有关。在这里,我们旨在确定单独和联合使用 BAPTA-AM 和褪黑素补充缓慢冷冻和玻璃化介质对卵巢组织活力、活性氧 (ROS) 水平、总抗氧化能力 (TAC) 以及卵泡形态和活力的影响。我们的结果表明,BAPTA-AM 和褪黑素可显著提高冷冻解冻卵巢组织中的卵巢组织活力和 TAC/ROS 比值,并减少 ROS 的产生在缓慢冷冻和玻璃化程序中。与玻璃化卵巢组织中的褪黑素相比,BAPTA-AM 在 TAC 方面的效果也较差。虽然 BAPTA-AM 和/或褪黑素补充缓慢冷冻和玻璃化介质可以增加冷冻保存卵巢组织中形态完整卵泡的百分比,但差异不显著。总之,在玻璃化和缓慢冷冻方法中,用 BAPTA-AM 或褪黑素补充冷冻保存介质可以改善卵巢组织的冷冻保存效果。我们的数据为在卵巢组织冷冻保存过程中调节氧化还原平衡和细胞内 Ca 水平以优化当前冷冻保存方法提供了一些见解。