基于显微镜图像结合PCR荧光法观察阴道微生物群对丈夫精子人工授精妊娠结局的影响。

IF 2.5 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS SLAS Technology Pub Date : 2025-02-01 Epub Date: 2024-12-24 DOI:10.1016/j.slast.2024.100242
Yanling Xing, Wei Wang, Na Wan, Dongmei Zhang, Mei Shan, Guan Wang
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引用次数: 0

摘要

阴道微生物群在生殖健康,特别是人工授精过程中起着重要的作用。微生物群失衡可能影响妊娠结局。因此,本研究旨在结合显微镜图像和PCR荧光法,探讨阴道微生物群的组成及其对人工授精妊娠结局的影响,以期为改善丈夫精子人工授精妊娠结局提供科学依据。本研究包括用丈夫的精子进行人工授精并收集生殖道样本的女性患者。通过显微镜下观察样品中微生物群落形态,PCR荧光法分析微生物DNA,评价微生物生态状况。在怀孕成功的女性中,有益菌(如乳酸菌)的比例较高,而致病菌的丰度明显降低。PCR荧光法检测特异性微生物标志物与妊娠率呈正相关。因此,女性生殖道微生态状态对人工授精妊娠结局有显著影响。保持良好的微生态平衡,特别是增加有益菌的比例,有助于提高人工授精成功率。
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The influence of vaginal microbiota on the pregnancy outcome of artificial insemination with husband's sperm based on microscope images combined with PCR fluorescence method.

The vaginal microbiota plays an important role in reproductive health, especially in the process of artificial insemination. The imbalance of microbiota may affect pregnancy outcomes. Therefore, this study aims to explore the composition of vaginal microbiota and its impact on artificial insemination pregnancy outcomes, combined with microscopic images and PCR fluorescence methods, in order to provide scientific basis for improving the pregnancy outcomes of husband sperm artificial insemination. This study included female patients who underwent artificial insemination with husband's sperm and collected reproductive tract samples. By observing the microbial community morphology in the sample under a microscope and analyzing microbial DNA using PCR fluorescence method, the microbial ecological status is evaluated. Among women with successful pregnancy, the proportion of beneficial bacteria (such as lactic acid bacteria) is higher, while the abundance of pathogenic bacteria is significantly reduced. Specific microbial markers detected by PCR fluorescence method are positively correlated with pregnancy rate. Therefore, the microecological state of the female reproductive tract has a significant impact on the pregnancy outcome of artificial insemination. Maintaining a good microecological balance, especially increasing the proportion of beneficial bacteria, can help improve the success rate of artificial insemination.

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来源期刊
SLAS Technology
SLAS Technology Computer Science-Computer Science Applications
CiteScore
6.30
自引率
7.40%
发文量
47
审稿时长
106 days
期刊介绍: SLAS Technology emphasizes scientific and technical advances that enable and improve life sciences research and development; drug-delivery; diagnostics; biomedical and molecular imaging; and personalized and precision medicine. This includes high-throughput and other laboratory automation technologies; micro/nanotechnologies; analytical, separation and quantitative techniques; synthetic chemistry and biology; informatics (data analysis, statistics, bio, genomic and chemoinformatics); and more.
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