An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization

Abstract Background Although oocyte quality is the dominant factor determining embryo quality, few studies have been conducted to evaluate embryo quality based on the metabolites related to the oocyte. With quantification of the follicular fluid (FF) metabolites, in assisted reproductive technology...

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Main Authors: Ju Wang, Wei Zheng, Shuoping Zhang, Keqiang Yan, Miao Jin, Huiling Hu, Zhen Ma, Fei Gong, Guangxiu Lu, Yan Ren, Liang Lin, Ge Lin, Liang Hu, Siqi Liu
Format: Article
Language:English
Published: BMC 2021-09-01
Series:BMC Biology
Subjects:
Online Access:https://doi.org/10.1186/s12915-021-01118-w
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spelling doaj-e6ecbac55fe14c9fbc1120e78fb206f42021-09-12T12:04:41ZengBMCBMC Biology1741-70072021-09-0119111410.1186/s12915-021-01118-wAn increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilizationJu Wang0Wei Zheng1Shuoping Zhang2Keqiang Yan3Miao Jin4Huiling Hu5Zhen Ma6Fei Gong7Guangxiu Lu8Yan Ren9Liang Lin10Ge Lin11Liang Hu12Siqi Liu13College of Life Sciences, University of Chinese Academy of SciencesBGI-ShenzhenBGI-ShenzhenCollege of Life Sciences, University of Chinese Academy of SciencesBGI-ShenzhenInstitute of Reproductive and Stem Cell Engineering, School of Basic Medical Science, Key Laboratory of National Health and Family Planning Commission, Central South UniversityCollege of Life Sciences, University of Chinese Academy of SciencesBGI-ShenzhenBGI-ShenzhenCollege of Life Sciences, University of Chinese Academy of SciencesClinical Reaseach center for Reproduction and Genetics in Hunan ProvinceBGI-ShenzhenBGI-ShenzhenCollege of Life Sciences, University of Chinese Academy of SciencesAbstract Background Although oocyte quality is the dominant factor determining embryo quality, few studies have been conducted to evaluate embryo quality based on the metabolites related to the oocyte. With quantification of the follicular fluid (FF) metabolites, in assisted reproductive technology (ART), this study sought to evaluate the embryo or oocyte quality through an informative approach. Results An evaluation model consisting of 17 features was generated to distinguish the embryo quality on day 3 post-fertilization, and phosphatidylcholines (PCs) were the key contributors to the evaluation. The model was extended to the patients under different ages and hyperstimulations, and the features were further enriched to facilitate the evaluation of the embryo quality. The metabolites were clustered through pathway analysis, leading to a hypothesis that accumulation of arachidonic acid induced by PCs might weaken embryo quality on day 3 post-fertilization. Conclusions A discriminating model with metabolic features elicited from follicular fluid was established, which enabled the evaluation of the embryo or oocyte quality even under certain clinical conditions, and the increase of PCs in follicular fluid implies the attenuation of embryo quality on day 3 post-fertilization.https://doi.org/10.1186/s12915-021-01118-wAssisted reproductive technologyEmbryo qualityOocyte qualityTargeted metabolomicsFollicular fluidRandom forest
collection DOAJ
language English
format Article
sources DOAJ
author Ju Wang
Wei Zheng
Shuoping Zhang
Keqiang Yan
Miao Jin
Huiling Hu
Zhen Ma
Fei Gong
Guangxiu Lu
Yan Ren
Liang Lin
Ge Lin
Liang Hu
Siqi Liu
spellingShingle Ju Wang
Wei Zheng
Shuoping Zhang
Keqiang Yan
Miao Jin
Huiling Hu
Zhen Ma
Fei Gong
Guangxiu Lu
Yan Ren
Liang Lin
Ge Lin
Liang Hu
Siqi Liu
An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
BMC Biology
Assisted reproductive technology
Embryo quality
Oocyte quality
Targeted metabolomics
Follicular fluid
Random forest
author_facet Ju Wang
Wei Zheng
Shuoping Zhang
Keqiang Yan
Miao Jin
Huiling Hu
Zhen Ma
Fei Gong
Guangxiu Lu
Yan Ren
Liang Lin
Ge Lin
Liang Hu
Siqi Liu
author_sort Ju Wang
title An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
title_short An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
title_full An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
title_fullStr An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
title_full_unstemmed An increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
title_sort increase of phosphatidylcholines in follicular fluid implies attenuation of embryo quality on day 3 post-fertilization
publisher BMC
series BMC Biology
issn 1741-7007
publishDate 2021-09-01
description Abstract Background Although oocyte quality is the dominant factor determining embryo quality, few studies have been conducted to evaluate embryo quality based on the metabolites related to the oocyte. With quantification of the follicular fluid (FF) metabolites, in assisted reproductive technology (ART), this study sought to evaluate the embryo or oocyte quality through an informative approach. Results An evaluation model consisting of 17 features was generated to distinguish the embryo quality on day 3 post-fertilization, and phosphatidylcholines (PCs) were the key contributors to the evaluation. The model was extended to the patients under different ages and hyperstimulations, and the features were further enriched to facilitate the evaluation of the embryo quality. The metabolites were clustered through pathway analysis, leading to a hypothesis that accumulation of arachidonic acid induced by PCs might weaken embryo quality on day 3 post-fertilization. Conclusions A discriminating model with metabolic features elicited from follicular fluid was established, which enabled the evaluation of the embryo or oocyte quality even under certain clinical conditions, and the increase of PCs in follicular fluid implies the attenuation of embryo quality on day 3 post-fertilization.
topic Assisted reproductive technology
Embryo quality
Oocyte quality
Targeted metabolomics
Follicular fluid
Random forest
url https://doi.org/10.1186/s12915-021-01118-w
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