褪黑激素对新鲜和玻璃化/解冻体外成熟水牛卵母细胞发育能力、线粒体分布和强度的影响

IF 4.2 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Reproductive Biology and Endocrinology Pub Date : 2024-04-05 DOI:10.1186/s12958-024-01209-7
Omaima Mohamed Kandil, Samar Mahfouz Abd El Rahman, Rania S. Ali, Esraa Aly Ismail, Nehad M. Ibrahim
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引用次数: 0

摘要

背景:在家畜育种中,卵母细胞冷冻保存对保存和传递优良遗传性状至关重要。本研究旨在探讨褪黑激素对水牛卵母细胞体外发育能力、线粒体分布和强度的影响。研究涉及从屠宰场获取卵巢,并分两个阶段进行。在第一阶段,优质卵母细胞在含有或不含有 10-9M 褪黑激素的成熟培养基中培养 22 小时(38.5°C,5% CO2)。成熟的卵母细胞在体外受精,并在 SOF 培养基中培养 7 天。在第二阶段,玻璃化的体外成熟卵母细胞被储存在玻璃化培养基(含有冷冻保护剂组合(20% 乙二醇和 20% 二甲基亚砜)的基本培养基 (BM))中,加入或不加入褪黑素,然后储存在液氮中。正常玻璃化/解冻卵母细胞在体外受精并按所述方法培养。最后,用 DAPI 和 Mitotracker red 染色新鲜组和玻璃化/解冻组(含或不含褪黑激素)的成熟卵母细胞,使用共聚焦显微镜检测其存活率(核成熟)、线粒体强度和分布。研究发现,与不添加褪黑素的组别(分别为 69.85%、79.88%、75.55% 和 37.25%)相比,在成熟培养基中添加 10-9M 褪黑素可显著提高成熟率(85.47%)、受精率(84.21%)、裂解率(89.58%)和可移植胚胎率(48.83%)。此外,与玻璃化中药组(分别为 67.46%、51.40% 和 17.00%)相比,在玻璃化培养基中添加褪黑激素可提高正常卵母细胞的回收率(83.75%)、卵裂率(61.80%)和可移植胚胎率(27.00%)。此外,在同一组中,新鲜加褪黑素组(TCM + Mel)(80%)和玻璃化加褪黑素组(VS2 + Mel)(76.70%)的线粒体弥散分布较高,而TCM + Mel组的线粒体强度(1698.60)高于其他组。总之,在体外成熟和玻璃化两种情况下,补充褪黑素都能提高水牛卵母细胞的发育能力和线粒体分布。
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Effect of melatonin on developmental competence, mitochondrial distribution, and intensity of fresh and vitrified/thawed in vitro matured buffalo oocytes
Background: In livestock breeding, oocyte cryopreservation is crucial for preserving and transferring superior genetic traits. This study was conducted to examine the additional effect of melatonin to maturation and vitrification media on the in vitro developmental capacity, mitochondrial distribution, and intensity of buffalo oocytes. The study involved obtaining ovaries from a slaughterhouse and conducting two phases. In the first phase, high-quality oocytes were incubated in a maturation medium with or without 10−9M melatonin for 22 h (at 38.5°C in 5% CO2). Matured oocytes were fertilized in vitro and cultured in SOF media for seven days. In the second phase, vitrified in vitro matured oocytes were stored in vitrified media (basic media (BM) containing a combination of cryoprotectants (20% Ethyl Glycol and 20% Dimethyl sulfoxide), with or without melatonin, and then stored in liquid nitrogen. Normal vitrified/thawed oocytes were fertilized in vitro and cultured as described. Finally, the matured oocytes from the fresh and vitrified/thawed groups, both with and without melatonin, were stained using DAPI and Mitotracker red to detect their viability (nuclear maturation), mitochondrial intensity, and distribution using a confocal microscope. The study found that adding 10−9M melatonin to the maturation media significantly increased maturation (85.47%), fertilization rate (84.21%)cleavage (89.58%), and transferable embryo (48.83%) rates compared to the group without melatonin (69.85%,79.88%, 75.55%, and 37.25% respectively). Besides that, the addition of melatonin to the vitrification media improved the recovery rate of normal oocytes (83.75%), as well as the cleavage (61.80%) and transferable embryo (27.00%) rates when compared to the vitrified TCM group (67.46%, 51.40%, and 17.00%, respectively). The diffuse mitochondrial distribution was higher in fresh with melatonin (TCM + Mel) (80%) and vitrified with melatonin (VS2 + Mel groups) (76.70%), Furthermore, within the same group, while the mitochondrial intensity was higher in the TCM + Mel group (1698.60) than other group. In conclusion, Melatonin supplementation improves the developmental competence and mitochondrial distribution in buffalo oocytes in both cases(in vitro maturation and vitrification).
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来源期刊
Reproductive Biology and Endocrinology
Reproductive Biology and Endocrinology 医学-内分泌学与代谢
CiteScore
7.90
自引率
2.30%
发文量
161
审稿时长
4-8 weeks
期刊介绍: Reproductive Biology and Endocrinology publishes and disseminates high-quality results from excellent research in the reproductive sciences. The journal publishes on topics covering gametogenesis, fertilization, early embryonic development, embryo-uterus interaction, reproductive development, pregnancy, uterine biology, endocrinology of reproduction, control of reproduction, reproductive immunology, neuroendocrinology, and veterinary and human reproductive medicine, including all vertebrate species.
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