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双相CAPA-IVM可提高马卵母细胞质量及后续胚胎发育能力,且不会诱导遗传畸变。

Biphasic CAPA-IVM Improves Equine Oocyte Quality and Subsequent Embryo Development Without Inducing Genetic Aberrations.

作者信息

Fakhar-I-Adil Muhammad, Angel-Velez Daniel, Araftpoor Emin, Amin Qurratul Ain, Hedia Mohamed, Bühler Marcel, Gevaert Kris, Menten Björn, Van Soom Ann, Chuva de Sousa Lopes Susana Marina, Stoop Dominic, De Roo Chloë, Smits Katrien, Heindryckx Björn

机构信息

Ghent-Fertility and Stem Cell Team (G-FaST), Department for Reproductive Medicine, Department of Human Structure and Repair, Ghent University Hospital, Corneel Heymanslaan 10, 9000 Ghent, Belgium.

Department of Internal Medicine, Reproduction and Population Medicine, Ghent University, 9820 Merelbeke, Belgium.

出版信息

Int J Mol Sci. 2025 Jun 8;26(12):5495. doi: 10.3390/ijms26125495.

Abstract

In vitro maturation (IVM) of oocytes retrieved from ovum pick-up (OPU) or ovarian tissue (OT) is a standard approach for patients with specific conditions where prior hormonal stimulation is contraindicated. However, the developmental competence of oocytes matured in vitro is still inferior to that of oocytes matured in vivo. Capacitation IVM (CAPA-IVM) includes an extra step of pre-maturation culture (PMC) with c-type natriuretic peptide (CNP) as a meiotic arrestor to better synchronize cytoplasmic and nuclear maturity in oocytes by allowing the cytoplasm additional time to acquire essential components critical for optimal competency. This study aims to evaluate the effect of CAPA-IVM on equine oocyte quality and developmental competence. Immature cumulus-oocyte complexes (COCs) were retrieved from slaughterhouse ovaries and matured in vitro either in CAPA-IVM (short 6 h, long 24 h pre-maturation) or standard IVM. Mature oocytes from each group were analyzed for calcium-releasing potential ( = 52) and single-oocyte proteomics ( = 44), and embryo development ( = 229) was assessed after fertilization with piezo-drilled intracytoplasmic sperm injection (ICSI). Genetic analysis of developed blastocysts ( = 41) was performed to detect chromosomal aberrations. Our findings demonstrate that CAPA-IVM of equine COCs yields significantly higher maturation rates than controls. Moreover, short CAPA-IVM with six hours pre-maturation culture showed substantially higher embryo development potential than the control group (20/69 vs. 9/63, respectively). Genetic analysis revealed a high euploidy rate in equine blastocysts regardless of the maturation conditions. Live calcium imaging of the fertilized oocytes demonstrated that the majority of oocytes displayed non-continuous calcium oscillation patterns, irrespective of maturation conditions. Single-oocyte proteomics reveals a comparable proteomic landscape between mature oocytes subjected to short CAPA-IVM and standard IVM. However, we identified four enriched gene sets with positive enrichment scores after short CAPA-IVM, related to cytoskeleton regulation, ribosomal function, and cytosolic components. Our findings indicate that CAPA-IVM holds the potential to improve oocyte quality and competence in horses. However, further fine-tuning of culture conditions would benefit the effective use of these IVM systems. Moreover, given that the mare serves as an excellent model for human reproduction, the molecular trends identified in this study could provide valuable insights for advancing human artificial reproductive technologies.

摘要

从采卵(OPU)或卵巢组织(OT)中获取的卵母细胞进行体外成熟(IVM),是针对先前激素刺激存在禁忌的特定情况患者的标准方法。然而,体外成熟的卵母细胞的发育能力仍低于体内成熟的卵母细胞。获能IVM(CAPA-IVM)包括一个额外的预成熟培养(PMC)步骤,使用C型利钠肽(CNP)作为减数分裂阻滞剂,通过让细胞质有更多时间获取对最佳能力至关重要的必需成分,从而更好地同步卵母细胞的细胞质和核成熟。本研究旨在评估CAPA-IVM对马卵母细胞质量和发育能力的影响。从未成熟的卵丘-卵母细胞复合体(COCs)从屠宰场卵巢中获取,并在体外进行成熟培养,分别采用CAPA-IVM(短预成熟6小时、长预成熟24小时)或标准IVM。对每组成熟卵母细胞进行钙释放潜力分析(n = 52)和单卵母细胞蛋白质组学分析(n = 44),并在使用压电钻进行胞浆内精子注射(ICSI)受精后评估胚胎发育情况(n = 229)。对发育的囊胚进行基因分析(n = 41)以检测染色体畸变。我们的研究结果表明,马COCs的CAPA-IVM产生的成熟率显著高于对照组。此外,短时间CAPA-IVM(预成熟培养6小时)显示出比对照组更高的胚胎发育潜力(分别为20/69和9/63)。基因分析显示,无论成熟条件如何,马囊胚的整倍体率都很高。对受精卵母细胞的实时钙成像显示,大多数卵母细胞呈现非连续的钙振荡模式,与成熟条件无关。单卵母细胞蛋白质组学揭示了短时间CAPA-IVM成熟的卵母细胞和标准IVM成熟的卵母细胞之间具有可比的蛋白质组图谱。然而,我们在短时间CAPA-IVM后鉴定出四个富集基因集,其富集分数为正,与细胞骨架调节、核糖体功能和胞质成分有关。我们的研究结果表明,CAPA-IVM有潜力提高马的卵母细胞质量和能力。然而,进一步优化培养条件将有利于这些IVM系统的有效应用。此外,鉴于母马是人类生殖的优秀模型,本研究中确定的分子趋势可为推进人类辅助生殖技术提供有价值的见解。

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