Related Experiment Video
Updated: Jun 21, 2026

Mouse Models of Epididymitis Induced by Pathogen-Associated Molecular Patterns
Published on: December 12, 2025
Short- and long-term effects of lipopolysaccharide-induced inflammation on rabbit sperm quality
G Brecchia1, R Cardinali, E Mourvaki
1Department of Biopathological Science, Animal and Food Production Hygiene, University of Perugia, Perugia, Italy.
Abstract:
Infections and resulting inflammation are widely known to cause transient or permanent male infertility. The objectives of this study were (1) to provide a suitable animal model of a sub-acute inflammatory state by intraperitoneally inoculating bacterial lipopolysaccharides (LPS) and (2) to define the short- and long-term effects of this state on the sperm quality of rabbit bucks. Two series of experiments were performed to accomplish these objectives. In experiment 1, 15 healthy New Zealand White rabbit bucks were divided into five homogeneous groups, receiving 25, 50, 100 and 150 microg/kg body weight (b.w.) of E. coli LPS dissolved in 2ml of sterile saline or only saline (control), respectively. White blood cells (WBC), rectal temperature, feed intake and mating ability were observed for 3 consecutive days following inoculation. Inoculation of 50 microg/kg b.w. produces a reversible inflammation-like state that lasts for about 3 days, with minimal distress to the animals, and therefore it was used in our experiment. The major symptoms were fever and anorexia. Changes in WBC count and a moderate reduction in reproductive activity also occurred. In experiment 2, two groups of five rabbit bucks each were treated with 50 microg/kg b.w. E. coli LPS diluted in 2ml of saline or only saline (controls), respectively. Semen samples were collected weekly up to 56 days after inoculation and the changes in semen characteristics were examined. During the first 3 days, semen volume and concentration decreased in both experimental groups, probably due to the high collection frequency. Sperm membrane integrity and the number of necrotic sperm were seriously affected 30 days after the LPS challenge, reaching a maximum at the end of the spermatogenic cycle (56 days). These results suggest that a sub-acute inflammation may cause infertility by compromising sperm membrane integrity which decreases a month after LPS-treatment. In addition, the rabbit could be a useful LPS animal model for further study of the effects of inflammation and the underlying mechanisms on sperm characteristics.
Insights
Bacterial lipopolysaccharides (LPS) induced a reversible inflammation-like state in rabbits, causing significant long-term damage to sperm membrane integrity and increasing necrotic sperm count, leading to male infertility.
Area of Science:
- Reproductive Biology
- Immunology
- Animal Models
Background:
- Inflammation from infections can cause male infertility.
- Establishing reliable animal models is crucial for studying infertility mechanisms.
Purpose of the Study:
- To develop a rabbit model for sub-acute inflammation using bacterial lipopolysaccharides (LPS).
- To investigate the short- and long-term effects of LPS-induced inflammation on rabbit sperm quality.
Main Methods:
- Rabbits were inoculated with varying doses of E. coli LPS to establish an optimal inflammatory model (50 microg/kg b.w.).
- Semen was collected weekly for 56 days post-LPS challenge to assess sperm parameters.
- Key indicators monitored included white blood cell count, rectal temperature, and sperm membrane integrity.
Main Results:
- A 50 microg/kg b.w. LPS dose induced a reversible inflammation-like state for approximately 3 days.
- Sperm membrane integrity was significantly compromised, and the necrotic sperm count increased by 30 days post-LPS, peaking at 56 days.
- Initial semen volume and concentration decreased transiently, likely due to frequent collection.
Conclusions:
- Sub-acute inflammation, modeled by LPS in rabbits, can lead to male infertility.
- Compromised sperm membrane integrity is a key factor in LPS-induced infertility.
- The rabbit serves as a valuable model for studying inflammation's impact on sperm characteristics.
More Related Videos
13:00Intranasal Immunization and Milk Collection in Studies of Maternal Immunization in New Zealand White Rabbits (Oryctolagus cuniculus)
Published on: July 31, 2021
07:36Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015