Amino Acid Profiling of Follicular Fluid in Assisted Reproduction Reveals Important Roles of Several Amino Acids in Patients with Insulin Resistance

Author:

Kurdi Csilla123,Lelovics Vanessza2ORCID,Hesszenberger Dávid2,Lajtai Anikó2,Lakatos Ágnes2ORCID,Herczeg Róbert1,Gödöny Krisztina345,Mauchart Péter345,Várnagy Ákos345,Kovács Gábor L.123ORCID,Kőszegi Tamás123ORCID

Affiliation:

1. János Szentágothai Research Center, University of Pécs, Ifjúság u. 20, 7624 Pécs, Hungary

2. Department of Laboratory Medicine, Medical School, University of Pécs, Ifjúság u. 13, 7624 Pécs, Hungary

3. National Laboratory on Human Reproduction, University of Pécs, 7624 Pécs, Hungary

4. Department of Obstetrics and Gynecology, Medical School, University of Pécs, Édesanyák útja 17, 7624 Pécs, Hungary

5. MTA-PTE Human Reproduction Scientific Research Group, University of Pécs, 7624 Pécs, Hungary

Abstract

The global prevalence of insulin resistance (IR) is increasing continuously, influencing metabolic parameters and fertility. The metabolic changes due to IR can alter the molecular composition of plasma and other body fluids. Follicular fluid (FF) is derived mainly from plasma, and it is a critical microenvironment for the developing oocytes. It contains various metabolites and amino acids, and the quality of the oocytes is linked at least partially to amino acid metabolism. Our goal was to quantitatively determine the amino acid (AA) profile of FF in IVF patients and to compare IR and non-insulin resistance (NIR) groups to investigate the AA changes in their FF. Using UHPLC-based methods, we quantified the main 20 amino acids from human FF samples in the IR and NIR groups. Several amino acids (aspartate, glycine, glutamate, and cysteine) differed significantly (p < 0.05 or less) between the two groups. The most significant alterations between the IR and NIR groups were related to the glutathione metabolic pathway involving glycine, serine, and threonine. Since insulin resistance alters the amino acid composition of the FF, the oocytes may undergo metabolism-induced changes resulting in poor oocyte quality and less fertility in the insulin resistance groups.

Funder

National Laboratory on Human Reproduction

Comprehensive Development for Implementing Smart Specialization Strategies

Publisher

MDPI AG

Subject

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

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