Abstract
Accumulating evidence are available on the involvement of l-arginine-nitric oxide (NO) system in complex biological processes and numerous clinical conditions. Particular attention was made to reveal the association of l-arginine and methylarginines to outcome measures of women undergoing in vitro fertilization (IVF). This review attempts to summarize the expression and function of the essential elements of this system with particular reference to the different stages of female reproduction. A literature search was performed on the PubMed and Google Scholar systems. Publications were selected for evaluation according to the results presented in the Abstract. The regulatory role of NO during the period of folliculogenesis, oocyte maturation, fertilization, embryogenesis, implantation, placentation, pregnancy, and delivery was surveyed. The major aspects of cellular l-arginine uptake via cationic amino acid transporters (CATs), arginine catabolism by nitric oxide synthases (NOSs) to NO and l-citrulline and by arginase to ornithine, and polyamines are presented. The importance of NOS inhibition by methylated arginines and the redox-sensitive elements of the process of NO generation are also shown. The l-arginine-NO system plays a crucial role in all stages of female reproduction. Insufficiently low or excessively high rates of NO generation may have adverse influences on IVF outcome.
Funder
Hungarian Academy of Sciences
National Laboratory on Human Reproduction
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis
Reference78 articles.
1. The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine;Furchgott;Nature,1980
2. Cziraki, A., Lenkey, Z., Sulyok, E., Szokodi, I., and Koller, A. (2020). L-arginine-nitric oxide-asymmetric dimethylarginine pathway and the coronary circulation: Translation of basic science results to clinical practice. Front. Pharmacol., 11.
3. Structure and function of cationic amino acid transporters (CATs);Closs;J. Membr. Biol.,2006
4. Van Winkle, L.J. (2010). Amino acid transport and metabolism regulate early embryo development: Species differences, clinical significance and evolutionary implications. Cells, 10.
5. Expression profiles of individual human oocytes using microarray technology;Wellis;Reprod. Biomed. Online,2004
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