Sperm DNA Fragmentation and Sperm-Borne miRNAs: Molecular Biomarkers of Embryo Development?

Author:

Conflitti Anna Chiara,Cicolani GaiaORCID,Buonacquisto Alessandra,Pallotti FrancescoORCID,Faja Fabiana,Bianchini Serena,Blaconà Giovanna,Bruno Sabina Maria,Linari Antonella,Lucarelli MarcoORCID,Montanino Diletta,Muzii LudovicoORCID,Lenzi Andrea,Lombardo Francesco,Paoli DonatellaORCID

Abstract

The evaluation of morpho-functional sperm characteristics alone is not enough to explain infertility or to predict the outcome of Assisted Reproductive Technologies (ART): more sensitive diagnostic tools are needed in clinical practice. The aim of the present study was to analyze Sperm DNA Fragmentation (SDF) and sperm-borne miR-34c-5p and miR-449b-5p levels in men of couples undergoing ART, in order to investigate any correlations with fertilization rate, embryo quality and development. Male partners (n = 106) were recruited. Semen analysis, SDF evaluation and molecular profiling analysis of miR-34c-5p and miR-449b-5p (in 38 subjects) were performed. Sperm DNA Fragmentation evaluation- a positive correlation between SDF post sperm selection and the percentage of low-quality embryos and a negative correlation with viable embryo were found. SDF > 2.9% increased the risk of obtaining a non-viable embryo by almost 4-fold. Sperm miRNAs profile—we found an association with both miRNAs and sperm concentration, while miR-449b-5p is positively associated with SDF. Moreover, the two miRNAs are positively correlated. Higher levels of miR-34c-5p compared to miR-449b-5p increases by 14-fold the probability of obtaining viable embryos. This study shows that SDF, sperm miR-34c-5p, and miR-449b-5p have a promising role as biomarkers of semen quality and ART outcome.

Funder

Ministry of Education, Universities and Research

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference59 articles.

1. Paternal contribution: New insights and future challenges;Krawetz;Nat. Rev. Genet.,2005

2. World Health Organization (2021). WHO Laboratory Manual for the Examination and Processing of Human Semen, World Health Organization. [6th ed.].

3. Fatherhood and Sperm DNA Damage in Testicular Cancer Patients;Paoli;Front. Endocrinol.,2018

4. Sperm and seminal plasma RNAs: What roles do they play beyond fertilization?;Jodar;Reproduction,2019

5. All you need to know about sperm RNAs;Santiago;Hum. Reprod. Update,2021

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