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Updated: Jun 23, 2026

Phosphopeptide Analysis of Rodent Epididymal Spermatozoa
Published on: December 30, 2014
Proteomic analysis of fipronil-induced molecular defects in spermatozoa
Jeong-Won Bae1, Woo-Sung Kwon2,3
1Department of Animal Science and Biotechnology, Kyungpook National University, Sangju, Republic of Korea.
Abstract:
The phenylpyrazole insecticide fipronil has wide-ranging applications from agriculture to public health to control undesirable organisms. However, several studies have reported the residual environmental hazards of fipronil and demonstrated its harmful effects even in mammalian reproduction. Therefore, this study was conducted to demonstrate the mode of action of fipronil on mouse spermatozoa. We treated fipronil to spermatozoa and performed comprehensive function evaluations. Moreover, proteomic analyses were conducted to identify the alteration of protein expression levels in spermatozoa. Most of sperm motility and kinematic parameters and intracellular ATP levels were diminished, and the spontaneous acrosome reaction was promoted after treatment with fipronil. Proteomic analyses revealed altered expression levels of 14 proteins after treatment. These proteins have been reported to be associated with sperm-specific pathways, prominently the cytoskeleton of the sperm, "9 + 2" axoneme composition, metabolism, and fertility. Collectively, our results showed that fipronil alters sperm functional-related proteins and therefore influences male fertility. This study elucidates the possible reproductive toxic hazards associated with male infertility through aberrant suppression of sperm proteins.
Insights
The insecticide fipronil negatively impacts mouse sperm function and fertility by altering key proteins. This study reveals fipronil
Area of Science:
- Environmental Toxicology
- Reproductive Biology
- Proteomics
Background:
- Fipronil, a phenylpyrazole insecticide, is widely used but poses environmental risks.
- Previous studies indicate fipronil's adverse effects on mammalian reproduction.
Purpose of the Study:
- To investigate the specific mode of action of fipronil on mouse spermatozoa.
- To identify protein expression changes in spermatozoa following fipronil exposure.
Main Methods:
- Exposure of mouse spermatozoa to fipronil.
- Comprehensive evaluation of sperm function (motility, kinematics, ATP levels, acrosome reaction).
- Proteomic analysis to identify differentially expressed proteins.
Main Results:
- Fipronil treatment significantly reduced sperm motility, kinematic parameters, and intracellular ATP levels.
- Spontaneous acrosome reaction was increased post-fipronil exposure.
- Proteomic analysis identified 14 proteins with altered expression, linked to sperm cytoskeleton, axoneme, metabolism, and fertility.
Conclusions:
- Fipronil exposure alters critical sperm proteins, impacting male fertility.
- The study elucidates potential reproductive hazards of fipronil, contributing to male infertility through aberrant protein suppression.
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