Skip to search boxSkip to navigationSkip to main content

Morphological, microbiological and ultrastructural aspects of sepsis by Aeromonas hydrophila in Piaractus mesopotamicus

  • Fausto A. Marinho-Neto
    ,
  • Gustavo S. Claudiano
    ,
  • ,
  • Victor A. Cueva-Quiroz
    ,
  • Karina K. Kobashigawa
    ,
  • Nathan R.N. Cruz
*Corresponding author for this work
  • São Paulo State University (UNESP)
    ,
  • Federal University of Western Pará
    ,
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

e0222626

Journal (Volume, Issue Number)

PLoS ONE (Volume 14, Issue 9)

Publication milestones

  • Published - 01/09/2019

Publication status

Published - 01/09/2019

Publication IDs

  • Scopus: 85072520404
  • PubMed: 31539396

Abstract

Aeromonas bacteria can cause an infection characterized by septicemia and is one of the most common pathogens in tropical fish. This disease is responsible for high morbidity and mortality rates, causing considerable losses in aquaculture. Thus, the understanding of its pathophysiology is crucial to develop control strategies of this bacterial infection in farmed fish. This study aimed to characterize early pathological aspects of acute sepsis in pacu (Piaractus mesopotamicus) experimentally infected with Aeromonas hydrophila. A total of 160 juvenile pacus were inoculated intraperitoneally with A. hydrophila (1.78 x 109 CFU/mL) and at 0 (control), 1, 3, 6, and 9 hours post-inoculation (hpi), animals were anesthetized and samples were collected for microbiological, light microscopy and transmission electron microscopy (TEM) analyzes. The results showed the occurrence of hemodynamic alterations, such as hemorrhage and congestion, which were observed mainly after 6 and 9 hpi. It was possible to re-isolate Aeromonas at all sampling times except in control group. However, just after 9 hpi it was possible to find the bacteria in all fish and tissues. Light microscopy analyses revealed a degenerative process, necrosis and vascular damage mainly at 6 and 9 hpi. According to the ultrastructural examination, areas of cellular death were identified in all examined tissues, especially at 6 and 9 hpi. However, the most severe, related to necrosis, were observed after 6 and 9 hpi. The findings suggested that this bacterium spreads in the first hpi through the fish organs, mainly affecting spleen, liver and kidney, causing irreversible lesions at the molecular level.

Funding Details

The authors are grateful for the support of the São Paulo State Research Support Foundation - FAPESP projects n 2014/10231-2 and 2011/20280-2 and the National Council for Scientific and Technological Development - CNPq (process 441054/2014-5). All grants were awarded to JREM. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
FundersFunding numbers
São Paulo State Research Support Foundation
-
FAPESP
2014/10231-2, 2011/20280-2
CNPq
441054/2014-5