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Published on: January 16, 2013
The Immune System Fails to Mount a Protective Response to Gram-Positive or Gram-Negative Bacterial Prostatitis
Federico Lupo1, Matthieu Rousseau1, Tracy Canton1
1Department of Immunology, Institut Pasteur, 75015 Paris, France; and INSERM U1223, 75015 Paris, France.
Abstract:
Bacterial prostatitis affects 1% of men, with increased incidence in the elderly. Acute bacterial prostatitis frequently progresses to chronicity, marked by recurrent episodes interspersed with asymptomatic periods of variable duration. Antibiotic treatment is standard of care; however, dissemination of antimicrobially resistant uropathogens threatens therapy efficacy. Thus, development of nonantibiotic-based approaches to treat chronic disease is a priority. Currently, why chronic prostatitis arises is unclear, as the immune response to prostate infection is incompletely understood. As 80% of prostatitis cases are caused by Gram-negative uropathogenic Escherichia coli (UPEC) or Gram-positive Enterococcus faecalis, we used a mouse transurethral instillation model to address the hypothesis that an innate immune response fails to develop following prostate infection with these uropathogens, leading to chronic disease. Surprisingly, infection induced robust proinflammatory cytokine expression and myeloid cell infiltration. Following a second infection, cytokine responses and innate cell infiltration were largely comparable to primary infection. Characteristic of memory responses, more lymphoid cells infiltrated the prostate in a second infection compared with a first, suggesting that adaptive immunity develops to eliminate the pathogens. Unexpectedly, bacterial burden in prostates challenged with either UPEC or E. faecalis was equal or greater than primary infection despite that a protective adaptive response to UPEC infection was evident in the bladder of the same animals. Our findings support that chronic or recurrent prostatitis develops despite strong innate immune responses and may be the result of a failure to develop immune memory to infection, pointing to actionable targets for immunotherapy.
Insights
Chronic bacterial prostatitis may arise from a failure to develop immune memory, not a weak innate response. This suggests new immunotherapy targets beyond antibiotics for recurrent prostate infections.
Area of Science:
- Immunology
- Urology
- Microbiology
Background:
- Bacterial prostatitis affects 1% of men, often becoming chronic and resistant to antibiotics.
- Understanding the immune response is key to developing new treatments for chronic prostatitis.
- Gram-negative uropathogenic Escherichia coli (UPEC) and Gram-positive Enterococcus faecalis cause 80% of prostatitis cases.
Purpose of the Study:
- To investigate the hypothesis that a failed innate immune response leads to chronic prostatitis.
- To understand the immune mechanisms underlying chronic or recurrent prostate infections.
Main Methods:
- A mouse transurethral instillation model was used to study prostate infections with UPEC and E. faecalis.
- Immune responses, including cytokine expression and immune cell infiltration, were analyzed after primary and secondary infections.
- Bacterial burden was quantified in the prostate and bladder.
Main Results:
- Prostate infections induced strong innate immune responses, including cytokine production and myeloid cell infiltration.
- Secondary infections showed comparable innate responses but increased lymphoid cell infiltration, suggesting adaptive immunity development.
- Despite evidence of adaptive immunity in the bladder, bacterial burden in the prostate remained high or increased after secondary infection.
- Chronic prostatitis may develop despite robust innate immunity, potentially due to a failure in immune memory development.
Conclusions:
- Chronic prostatitis is not caused by a deficient innate immune response.
- Immune memory failure may underlie chronic or recurrent prostatitis.
- These findings highlight potential targets for nonantibiotic immunotherapies.
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