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采用改进的测序和定量 PCR 方法对人胚胎条件培养基中的 Small RNAs 进行全面分析。

Comprehensive profiling of Small RNAs in human embryo-conditioned culture media by improved sequencing and quantitative PCR methods.

机构信息

Create Fertility Centre, Toronto, Ontario, Canada.

Department of Obstetrics and Gynecology, University of Toronto, Toronto, Ontario, Canada.

出版信息

Syst Biol Reprod Med. 2020 Apr;66(2):129-139. doi: 10.1080/19396368.2020.1716108. Epub 2020 Feb 13.

Abstract

Embryo implantation depends on two primary factors: the quality of the embryo and endometrial receptivity. Small RNAs have been shown to be potent epigenetic regulators influencing cell proliferation, differentiation, and communication even in the context of early embryonic development. However, previous reports are limited to miRNAs and lack sensitivity. Here, we describe a platform for non-invasive small RNA biomarker discovery and validation from embryo-conditioned culture media (ECCM). We hypothesize that small non-coding RNAs (sncRNAs) are secreted by the embryo into the ECCM and test the limit of detection for profiling sncRNA by deep sequencing and quantitative PCR. In the first set of experiments, we evaluated sequencing sensitivity by comparing sncRNA profiles from pools of 10, 5, 3, and single ECCM drops. Next, we performed a similar test for TaqMan qPCR sensitivity by measuring select sncRNAs in 5, 3 and single drop ECCM pools. Finally, we compared the expression of an sncRNA panel by qPCR in single ECCM vs no-embryo control media . We report the first comprehensive sequencing of sncRNAs in ECCM with a sequencing sensitivity of 3 single embryo drops, capturing ~150 miRNAs and an abundance of tRNA-derived small RNAs (tsRNAs). We then profiled 15 sncRNAs by qPCR and determined that the assay maintains sensitivity in single ECCM drops. Finally, we found significant differences in these sncRNA expression between control and ECCM drops. Improving embryo selection is crucial for reducing time to pregnancy. Here we describe a sensitive technique for biomarker discovery by sequencing and qPCR validation in ECCM, demonstrating that the majority of sncRNAs are embryo derived. We also report an abundance of tsRNAs which suggests these sncRNAs may have functions in endometrial-maternal communication beyond the microRNAs which have been described previously. PGT-A: Preimplantation genetic testing for aneuploidies; ECCM: Embryo-conditioned culture media; sncRNAs: Small non-coding RNAs; miRNAs: microRNAs; EVs: Extracellular vesicles; PCA: Principal component analysis.

摘要

胚胎着床依赖于两个主要因素

胚胎质量和子宫内膜容受性。小 RNA 已被证明是强有力的表观遗传调节剂,可影响细胞增殖、分化和通讯,即使在早期胚胎发育的情况下也是如此。然而,以前的报告仅限于 miRNAs,且灵敏度有限。在这里,我们描述了一种从胚胎条件培养基 (ECCM) 中进行非侵入性小 RNA 生物标志物发现和验证的平台。我们假设小非编码 RNA (sncRNA) 是由胚胎分泌到 ECCM 中的,并通过深度测序和定量 PCR 来测试 sncRNA 分析的检测限。在第一组实验中,我们通过比较 10、5、3 和单个 ECCM 液滴的 sncRNA 图谱来评估测序灵敏度。接下来,我们通过测量 5、3 和单个 ECCM 液滴中的选择 sncRNA 来对 TaqMan qPCR 灵敏度进行类似的测试。最后,我们通过 qPCR 比较了单个 ECCM 与无胚胎对照培养基中的 sncRNA 表达谱。我们报告了 ECCM 中小 RNA 首次全面测序,测序灵敏度为 3 个单个胚胎液滴,捕获了约 150 个 miRNA 和大量 tRNA 衍生的小 RNA (tsRNA)。然后,我们通过 qPCR 对 15 个 sncRNA 进行了分析,并确定该测定在单个 ECCM 液滴中保持了灵敏度。最后,我们发现控制液滴和 ECCM 液滴之间这些 sncRNA 表达存在显著差异。提高胚胎选择对减少妊娠时间至关重要。在这里,我们描述了一种在 ECCM 中通过测序进行生物标志物发现和 qPCR 验证的灵敏技术,证明大多数 sncRNA 是胚胎来源的。我们还报告了大量 tsRNA 的存在,这表明这些 sncRNA 可能在子宫内膜-母体通讯中具有功能,而不仅仅是以前描述的 miRNAs。PGT-A:胚胎植入前非整倍体基因检测;ECCM:胚胎条件培养基;sncRNA:小非编码 RNA;miRNA:微小 RNA;EVs:细胞外囊泡;PCA:主成分分析。

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