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Association of Aeromonas sobria with human infection
Abstract:
Fifteen Aeromonas isolates from various human infections and nine isolates from polluted water were identified as either Aeromonas hydrophila or Aeromonas sobria and examined for cytotoxigenicity, enterotoxigenicity, adherence to epithelial cells, and other virulence-associated factors, including proteases, lipases, elastases, and hemolysins. Two groups of organisms (I and II) were distinguishable based on differences in median lethal doses in mice and cytotoxicity for Y-1 adrenal cells. Group I clinical and environmental strains had median lethal doses of less than 10(7) colony-forming units, were cytotoxic, frequently possessed several virulence-associated factors, and had lysine decarboxylase-positive or Voges-Proskauer-positive phenotypes or both. Piliation of Aeromonas was associated strongly with ability to adhere to human buccal cells, and these characteristics were associated with group I strains. Group II clinical and environmental strains had median lethal doses of greater than or equal to 10(7) colony-forming units, were not cytotoxic, and usually were lysine decarboxylase negative or Voges-Proskauer negative or both. Clinical strains in group II exhibited enterotoxigenicity, which was not detected in group II environmental strains. A sobria was more frequently associated with human infections; 13 of the 15 clinical strains were A. sobria, and 2 were A. hydrophila. On the other hand, the majority of the environmental strains (seven of nine) were A. hydrophila.
Insights
Aeromonas hydrophila and Aeromonas sobria strains were categorized into two groups based on virulence factors and mouse lethality. Group I strains showed higher virulence, while Group II strains, particularly clinical Aeromonas sobria, exhibited enterotoxigenicity.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- Aeromonas species are emerging opportunistic pathogens.
- Understanding Aeromonas virulence factors is crucial for clinical management.
Purpose of the Study:
- To characterize Aeromonas isolates from human infections and water.
- To differentiate Aeromonas strains based on virulence and pathogenicity.
Main Methods:
- Identification of Aeromonas hydrophila and Aeromonas sobria.
- Assessment of cytotoxigenicity, enterotoxigenicity, and adherence.
- Analysis of virulence factors (proteases, lipases, elastases, hemolysins).
- Determination of median lethal doses in mice and phenotypic characterization.
Main Results:
- Two distinct groups (I and II) of Aeromonas strains were identified.
- Group I strains exhibited higher cytotoxicity, virulence factors, and adherence.
- Aeromonas sobria was more prevalent in clinical isolates, while Aeromonas hydrophila dominated environmental isolates.
- Group II clinical strains showed enterotoxigenicity, unlike environmental strains.
Conclusions:
- Aeromonas virulence is strain-dependent and can be categorized.
- Piliation correlates with adherence and virulence in Group I strains.
- Aeromonas sobria is a significant cause of human infections, with specific pathogenic potential.