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Intracranial Subarachnoidal Route of Infection for Investigating Roles of Streptococcus suis Biofilms in Meningitis in a Mouse Infection Model
Published on: July 1, 2018
Biofilm is associated with chronic streptococcal meningoencephalitis in fish
A I Isiaku1, M Y Sabri1, M Y Ina-Salwany2
1Molecular Pathology Laboratory, Department of Veterinary Pathology and Microbiology, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Abstract:
Biofilms are aggregates of attached microbial organisms whose existence on tissues is often recognised as a mechanism for the establishment of most chronic diseases. Herein we investigated the ability of piscine Streptococcus agalactiae, an important aquatic pathogen, for adaptation to this sessile lifestyle in vitro and in the brain of a tilapia fish model. Piscine S. agalactiae exhibited a weak attachment to polystyrene plates and expressed a low biofilm phenotype under the study conditions. Furthermore, fluorescent in situ hybridization and confocal laser scanning microscopy revealed discrete aggregates of attached S. agalactiae within brain tissues and around meningeal surfaces. They were embedded in an exopolysaccharide containing matrix, intractable to inflammatory response and showed some level of resistance to penicillin despite proven susceptibility on sensitivity test. Intracellular bacterial aggregates were also observed, moreover, antibody mediated response was not demonstrated during infection. Nucleated erythrocytes appear to facilitate brain invasion possibly via the Trojan horse mechanism leading to a granulomatous inflammation. We have demonstrated that biofilm is associated with persistence of S. agalactiae and the development of chronic meningoencephalitis in fish.
Insights
Piscine Streptococcus agalactiae forms biofilms in fish brains, causing chronic meningoencephalitis. This bacterial adaptation enhances persistence and resistance to antibiotics, impacting aquatic animal health.
Area of Science:
- Microbiology
- Aquatic Pathogen Research
- Fish Disease
Background:
- Biofilms, microbial aggregates on tissues, are linked to chronic diseases.
- Piscine Streptococcus agalactiae is a significant aquatic pathogen.
Purpose of the Study:
- To investigate the biofilm-forming capacity of piscine S. agalactiae in vitro.
- To examine the role of biofilms in S. agalactiae infection in a tilapia brain model.
Main Methods:
- In vitro biofilm assays on polystyrene plates.
- Fluorescent in situ hybridization (FISH) and confocal laser scanning microscopy in fish brain tissue.
- Assessment of bacterial resistance and host inflammatory response.
Main Results:
- Piscine S. agalactiae showed weak in vitro biofilm formation but formed aggregates in fish brains.
- Bacterial aggregates were embedded in an exopolysaccharide matrix, resistant to inflammation and penicillin.
- Intracellular aggregates and erythrocyte-mediated invasion (Trojan horse mechanism) were observed, with no antibody response.
Conclusions:
- Biofilm formation is associated with the persistence of S. agalactiae in fish.
- Biofilms contribute to the development of chronic meningoencephalitis in tilapia.
- Bacterial adaptation to biofilms aids in evading host defenses and treatment.

