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Carboxylated Poly-L-lysine Potentially Reduces Human Sperm DNA Fragmentation after Freeze-Thawing, and Its Function Is Enhanced by Low-Dose Resveratrol

Authors :
Ryota Tachibana
Hiroki Takeuchi
Kento Yoshikawa-Terada
Tadashi Maezawa
Mikiko Nishioka
Erina Takayama
Hiroaki Tanaka
Kayo Tanaka
Suong-hyu Hyon
Yuki Gen
Eiji Kondo
Tomoaki Ikeda
Source :
Cells, Vol 12, Iss 22, p 2585 (2023)
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

Sperm DNA fragmentation (SDF) that occurs during the freezing–thawing of sperm may negatively impact the treatment outcomes of assisted reproductive technologies (ART). In a previous study, we developed a human sperm cryopreservation reagent containing carboxylated poly-L-lysine (CPLL) that reduced SDF after freeze-thawing compared with clinically popular cryopreservation reagents containing human serum albumin. However, it is unclear whether CPLL reduces SDF, as it differed from the constituents of the commercial cryopreservation reagents used for comparison. Therefore, here, we examined whether CPLL reduces the SDF of human sperm and evaluated reactive oxygen species (ROS) levels and lipid peroxidation (LPO), which are the causes of SDF; mitochondrial injury, ROS production; and impaired sperm motility. Furthermore, optimal antioxidants and their concentrations that could further enhance the reduction in SDF were determined for future clinical application in ART and underwent the same functional evaluations. CPLL can reduce SDF via inhibition of intracytoplasmic ROS and LPO. Furthermore, the addition of 0.1 mM resveratrol avoided the enhancement of SDF, which potentially affects mitochondrial and cytoplasmic ROS and LPO. This novel human sperm cryopreservation reagent containing CPLL and resveratrol has the potential to improve treatment outcomes in ART using frozen sperm.

Details

Language :
English
ISSN :
12222585 and 20734409
Volume :
12
Issue :
22
Database :
Directory of Open Access Journals
Journal :
Cells
Publication Type :
Academic Journal
Accession number :
edsdoj.b3912201c0d248069db59293d2c76cf3
Document Type :
article
Full Text :
https://doi.org/10.3390/cells12222585