The synergy of morphokinetic parameters and sHLA-G in cleavage embryo enhancing implantation rates

Chunyan Jiang, Menghui Geng, Can Zhang, Hong She, Dalin Wang, Jing Wang, Jiayin Liu, Feiyang Diao, Lingbo Cai, Yanqiu Hu
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Abstract

Objective: This study aimed to assess the relationship between implantation and soluble HLA-G (sHLA-G) expression in cleavage embryo culture medium (ECM) in conjunction with early developmental kinetics determined by time-lapse imaging (TLI).Methods: A retrospective, single-center study was conducted involving 238 embryos from 165 patients who underwent Frozen-thawed embryo transfer (FET) using autologous oocytes, with either single or double embryo transfer. TLI morphokinetic parameters (t2, t3, t4, t5, t6, t7, t8, cc2, s2, cc3, s3) of embryos were analyzed, and sHLA-G levels in D3 ECM were measured using an enzyme-linked immunosorbent assay (ELISA). A hierarchical classification model was developed to categorize embryos into five groups (A, B, C, D, E). The correlation between sHLA-G levels, TLI classification of embryos, and embryo implantation was investigated to establish a non-invasive method for evaluating implantation potential. Multivariate logistic regression analysis was performed to identify potential influencing factors, and receiver operating characteristic (ROC) curves were used to evaluate the predictive value for implantation.Results: Multivariate unconditional logistic regression analysis indicated that TLI parameters t5 and s3 and sHLA-G level in ECM were independent risk factors affecting embryo implantation. The implantation rate decreased from TLI classification A to E. The proposed classification model effectively assessed the implantation potential of embryos. The implantation rate was higher in the sHLA-G positive group compared to the sHLA-G negative group (p < 0.001). The expression of sHLA-G in D3 ECM, combined with the TLI classification model, accurately evaluated the implantation potential of embryos with an AUC of 0.876.Conclusion: The integration of cleavage kinetics and embryonic sHLA-G expression could reliably identify embryos with a high likelihood of successful implantation.
形态动力学参数和 sHLA-G 在裂解胚胎中的协同作用可提高植入率
研究目的本研究旨在结合延时成像(TLI)确定的早期发育动力学,评估植入与裂解胚胎培养基(ECM)中可溶性 HLA-G(sHLA-G)表达之间的关系:我们进行了一项回顾性单中心研究,涉及 165 名患者的 238 个胚胎,这些患者使用自体卵母细胞进行了冻融胚胎移植 (FET),并进行了单胚胎或双胚胎移植。分析了胚胎的 TLI 形态动力学参数(t2、t3、t4、t5、t6、t7、t8、cc2、s2、cc3、s3),并使用酶联免疫吸附试验(ELISA)测定了 D3 ECM 中的 sHLA-G 水平。建立了一个分层分类模型,将胚胎分为五组(A、B、C、D、E)。研究了 sHLA-G 水平、胚胎的 TLI 分类和胚胎植入之间的相关性,以建立一种评估植入潜能的非侵入性方法。进行了多变量逻辑回归分析以确定潜在的影响因素,并使用接收者操作特征曲线(ROC)来评估植入的预测值:多变量无条件逻辑回归分析表明,TLI参数t5和s3以及ECM中的sHLA-G水平是影响胚胎植入的独立风险因素。所提出的分类模型有效地评估了胚胎的植入潜力。与 sHLA-G 阴性组相比,sHLA-G 阳性组的植入率更高(p < 0.001)。D3 ECM 中 sHLA-G 的表达与 TLI 分类模型相结合,能准确评估胚胎的着床潜能,AUC 为 0.876:结论:结合裂解动力学和胚胎 sHLA-G 表达可可靠地识别出成功植入可能性高的胚胎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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