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Is there a role for Serratia marcescens in male infertility: An experimental study?
Kalpana Rana1, Deepali Thaper1, Vijay Prabha1
1Department of Microbiology, Panjab University, Chandigarh 160014, India.
Objective:
Establishment of a male BALB/c mouse model to study the role of sperm impairing S. marcescens on mouse reproductive potential. The current study can add to use of reliable animal models to provide a noteworthy evidence for the microbial cause of infertility.
Methods:
The mice in the test groups II, III, IV were intraperitoneally administered with different doses (104, 106 or 108 cfu) of S. marcescens whereas, group I serving as control, received PBS, for 10 consecutive days. The groups were evaluated for any change in body weight, tissue somatic index (%), seminal parameters and histology. Confirmation of S. marcescens from reproductive organs was done by reisolating the same by cultural characteristics and biochemical tests.
Results:
The results showed that weight gain was evident only in mice receiving PBS (group I), whereas a decrease was recorded in the test groups (group II, III and IV). Only testes of test groups showed significant changes in TSI values whereas, no change in TSI was observed in any reproductive organ of any test group. Seminal parameters viz. sperm count, motility and viability were found to decrease in test groups II, III and IV as compared to control group I. Interestingly, the number of pus cells and percent decapitation was more prominent in test groups which received higher doses (i.e. group III and group IV). The histopathological examination revealed mild to dense inflammation in vas deferens and caudal epididymis in all test groups except hypospermatogenesis which was observed only in test group III and IV. However, in group I, neither adverse changes nor any sign of inflammation were observed.
Conclusion:
Intraperitoneal inoculation of S. marcescens could lead to alteration of semen parameters, induction of decapitation in spermatozoa and histopathological changes, thereby decreasing the reproductive potential of male mice.
Insights
Serratia marcescens infection in male mice impaired reproductive potential by reducing sperm count, motility, and viability. Histopathological analysis revealed inflammation and hypospermatogenesis, confirming microbial infertility in this animal model.
Area of Science:
- Microbiology
- Reproductive Biology
- Animal Models
Background:
- Microbial infections can impact male reproductive health.
- Establishing reliable animal models is crucial for studying infertility causes.
- Serratia marcescens is a bacterium with potential implications for reproductive function.
Purpose of the Study:
- To develop a male BALB/c mouse model to investigate the effects of *Serratia marcescens* on reproductive potential.
- To provide evidence for the microbial etiology of infertility using a validated animal model.
Main Methods:
- Male BALB/c mice were intraperitoneally administered varying doses of *Serratia marcescens* (10^4, 10^6, 10^8 CFU) or PBS (control) daily for 10 days.
- Evaluations included body weight, tissue somatic index, seminal parameters (count, motility, viability), and histopathology of reproductive organs.
- Confirmation of *S. marcescens* was achieved through reisolation and biochemical testing.
Main Results:
- *Serratia marcescens* administration led to decreased body weight gain and significant changes in testicular somatic index.
- Semen analysis revealed reduced sperm count, motility, and viability in infected mice, with increased pus cells and decapitation at higher doses.
- Histopathology showed inflammation in the vas deferens and caudal epididymis, with hypospermatogenesis observed in groups receiving higher bacterial doses.
Conclusions:
- Intraperitoneal inoculation of *Serratia marcescens* negatively impacts male mouse reproductive parameters.
- The bacterium induces semen alterations, sperm decapitation, and histopathological changes, ultimately decreasing reproductive capacity.
- This study establishes a relevant mouse model for understanding microbial contributions to male infertility.
Related Concept Videos
Infertility in Males
Spermatogenesis

