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Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process

The increased interest in assisted reproduction through in vitro fertilization (IVF) leads to an urgent need to identify biomarkers that reliably highly predict the success of pregnancy. Despite advances in diagnostics, treatment, and IVF approaches, the 30% success rate of IVF seems insurmountable....

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Autores principales: Toporcerová, Silvia, Špaková, Ivana, Šoltys, Katarína, Klepcová, Zuzana, Kľoc, Marek, Bohošová, Júlia, Trachtová, Karolína, Peterová, Lucia, Mičková, Helena, Urdzík, Peter, Mareková, Mária, Slabý, Ondřej, Rabajdová, Miroslava
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9687427/
https://www.ncbi.nlm.nih.gov/pubmed/36421701
http://dx.doi.org/10.3390/biom12111687
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author Toporcerová, Silvia
Špaková, Ivana
Šoltys, Katarína
Klepcová, Zuzana
Kľoc, Marek
Bohošová, Júlia
Trachtová, Karolína
Peterová, Lucia
Mičková, Helena
Urdzík, Peter
Mareková, Mária
Slabý, Ondřej
Rabajdová, Miroslava
author_facet Toporcerová, Silvia
Špaková, Ivana
Šoltys, Katarína
Klepcová, Zuzana
Kľoc, Marek
Bohošová, Júlia
Trachtová, Karolína
Peterová, Lucia
Mičková, Helena
Urdzík, Peter
Mareková, Mária
Slabý, Ondřej
Rabajdová, Miroslava
author_sort Toporcerová, Silvia
collection PubMed
description The increased interest in assisted reproduction through in vitro fertilization (IVF) leads to an urgent need to identify biomarkers that reliably highly predict the success of pregnancy. Despite advances in diagnostics, treatment, and IVF approaches, the 30% success rate of IVF seems insurmountable. Idiopathic infertility does not have any explanation for IVF failure especially when a patient is treated with a healthy competitive embryo capable of implantation and development. Since appropriate intercellular communication is essential after embryo implantation, the emergence of the investigation of embryonic secretome including short non-coding RNA (sncRNA) molecules is crucial. That’s why biomarker identification, sncRNAs secreted during the IVF process into the blastocyst’s cultivation medium, by the implementation of artificial intelligence opens the door to a better understanding of the bidirectional communication between embryonic cells and the endometrium and so the success of the IVF. This study presents a set of promising new sncRNAs which are revealed to predictively distinguish a high-quality embryo, suitable for an embryo transfer in the IVF process, from a low-quality embryo with 86% accuracy. The identified exact combination of miRNAs/piRNAs as a non-invasively obtained biomarker for quality embryo determination, increasing the likelihood of implantation and the success of pregnancy after an embryo transfer.
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spelling pubmed-96874272022-11-25 Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process Toporcerová, Silvia Špaková, Ivana Šoltys, Katarína Klepcová, Zuzana Kľoc, Marek Bohošová, Júlia Trachtová, Karolína Peterová, Lucia Mičková, Helena Urdzík, Peter Mareková, Mária Slabý, Ondřej Rabajdová, Miroslava Biomolecules Article The increased interest in assisted reproduction through in vitro fertilization (IVF) leads to an urgent need to identify biomarkers that reliably highly predict the success of pregnancy. Despite advances in diagnostics, treatment, and IVF approaches, the 30% success rate of IVF seems insurmountable. Idiopathic infertility does not have any explanation for IVF failure especially when a patient is treated with a healthy competitive embryo capable of implantation and development. Since appropriate intercellular communication is essential after embryo implantation, the emergence of the investigation of embryonic secretome including short non-coding RNA (sncRNA) molecules is crucial. That’s why biomarker identification, sncRNAs secreted during the IVF process into the blastocyst’s cultivation medium, by the implementation of artificial intelligence opens the door to a better understanding of the bidirectional communication between embryonic cells and the endometrium and so the success of the IVF. This study presents a set of promising new sncRNAs which are revealed to predictively distinguish a high-quality embryo, suitable for an embryo transfer in the IVF process, from a low-quality embryo with 86% accuracy. The identified exact combination of miRNAs/piRNAs as a non-invasively obtained biomarker for quality embryo determination, increasing the likelihood of implantation and the success of pregnancy after an embryo transfer. MDPI 2022-11-14 /pmc/articles/PMC9687427/ /pubmed/36421701 http://dx.doi.org/10.3390/biom12111687 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Toporcerová, Silvia
Špaková, Ivana
Šoltys, Katarína
Klepcová, Zuzana
Kľoc, Marek
Bohošová, Júlia
Trachtová, Karolína
Peterová, Lucia
Mičková, Helena
Urdzík, Peter
Mareková, Mária
Slabý, Ondřej
Rabajdová, Miroslava
Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title_full Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title_fullStr Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title_full_unstemmed Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title_short Small Non-Coding RNAs as New Biomarkers to Evaluate the Quality of the Embryo in the IVF Process
title_sort small non-coding rnas as new biomarkers to evaluate the quality of the embryo in the ivf process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9687427/
https://www.ncbi.nlm.nih.gov/pubmed/36421701
http://dx.doi.org/10.3390/biom12111687
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