Related Experiment Video
Updated: Feb 11, 2026

Author Spotlight: Advanced Treatment of Seminal Duct Blockage Employing Endoscopy-Mediated Semen Channel Refluviation
Published on: December 8, 2023
Seminal fluid metabolome and epididymal changes after antibiotic treatment in mice
Cheryl S Rosenfeld1,2,3,4, Angela B Javurek5, Sarah A Johnson6,2,7
1Bond Life Sciences CenterUniversity of Missouri, Columbia, Missouri, USA rosenfeldc@missouri.edu.
Abstract:
Paternal environment can induce detrimental developmental origins of health and disease (DOHaD) effects in resulting offspring and even future descendants. Such paternal-induced DOHaD effects might originate from alterations in a possible seminal fluid microbiome (SFM) and composite metabolome. Seminal vesicles secrete a slightly basic product enriched with fructose and other carbohydrates, providing an ideal habitat for microorganisms. Past studies confirm the existence of a SFM that is influenced by genetic and nutritional status. Herein, we sought to determine whether treatment of male mice with a combination of antibiotics designed to target SFM induces metabolic alterations in seminal vesicle gland secretions (seminal fluid) and histopathological changes in testes and epididymides. Adult (10- to 12-week-old) National Institutes of Health (NIH) Swiss males (n = 10 per group) were treated with Clindamycin 0.06 mg/kg day, Unasyn (ampicillin/sulbactam) 40 mg/kg day and Baytril (enrofloxacin) 50 mg/kg day designed to target the primary bacteria within the SFM or saline vehicle alone. Fourteen-day antibiotic treatment of males induced metabolomic changes in seminal vesicles with inosine, xanthine and l-glutamic acid decreased but d-fructose increased in glandular secretions. While spermatogenesis was not affected in treated males, increased number of epididymal tubules showed cribriform growth in this group (7 antibiotic-treated males: 3 saline control males; P = 0.01). Antibiotic-treated males showed more severe cribriform cysts. Current findings suggest antibiotic treatment of male mice results in seminal fluid metabolome and epididymal histopathological alterations. It remains to be determined whether such changes compromise male reproductive function or lead to DOHaD effects in resulting offspring.
Insights
Antibiotic treatment in male mice altered seminal fluid metabolism and caused epididymal changes, potentially impacting reproductive health and offspring development. Further research is needed to confirm these effects.
Area of Science:
- Reproductive Biology
- Microbiome Research
- Developmental Origins of Health and Disease (DOHaD)
Background:
- Paternal environment influences offspring health, with potential links to seminal fluid microbiome (SFM) and metabolome.
- Seminal vesicles provide a suitable habitat for microorganisms, and SFM is known to be affected by genetics and nutrition.
Purpose of the Study:
- To investigate if antibiotic targeting of SFM in male mice induces metabolic changes in seminal fluid and histopathological alterations in reproductive tissues.
Main Methods:
- Adult male mice were treated with a combination of antibiotics (Clindamycin, Unasyn, Baytril) or saline for 14 days.
- Metabolomic analysis of seminal vesicle secretions and histopathological examination of testes and epididymides were performed.
Main Results:
- Antibiotic treatment led to decreased levels of inosine, xanthine, and L-glutamic acid, and increased d-fructose in seminal vesicle secretions.
- No significant impact on spermatogenesis was observed, but antibiotic-treated males showed a higher incidence of epididymal cribriform growth.
Conclusions:
- Antibiotic administration alters seminal fluid metabolome and induces histopathological changes in the epididymis of male mice.
- The long-term consequences on male reproductive function and potential DOHaD effects in offspring require further investigation.
Related Concept Videos
Antibiotic Selection
Development of Antibiotic Resistance
The Fluid Mosaic Model
Fluid Pressure
According to Pascal's law, a fluid at rest will generate equal pressure in all directions. This pressure is measured as a force per unit area, and its magnitude depends on the fluid's specific...
Accelerating Fluids
The motion of the liquid within this infinitesimal cylinder is considered to obtain the pressure difference. Three vertical forces act on this liquid:
Cerebrospinal Fluid
CSF Production
CSF is produced mainly in the choroid plexus, a network of capillaries and ependymal cells located within the ventricular system of the brain....

