Article: Marine Mammal Brucella Reference Strains Are Attenuated in a BALB/c Mouse Model

 

Authors: Nymo, Arias,Pardo, Alvarez, Alcaraz, Godfroid, Jiménez de Bagüés

 

Journal: PLOS ONE, DOI: 10.1371/journal.pone.0150432

 

Available here: http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0150432

 

Abstract:

 

Brucellosis is a zoonosis of worldwide distribution with numerous animal host species. Since the novel isolation of Brucella spp. from marine mammals in 1994 the bacteria have been isolated from various marine mammal hosts. The marine mammal reference strains Brucella pinnipedialis 12890 (harbour seal, Phoca vitulina) and Brucella ceti 12891 (harbour porpoise,Phocoena phocoena) were included in genus Brucella in 2007, however, their pathogenicity in the mouse model is pending. Herein this is evaluated in BALB/c mice with Brucella suis 1330 as a control. Both marine mammal strains were attenuated, however, Bceti was present at higher levels than Bpinnipedialis in blood, spleen and liver throughout the infection, in additionBsuis and Bceti were isolated from brains and faeces at times with high levels of bacteraemia. In Bsuis-infected mice serum cytokines peaked at day 7. In Bpinnipedialis-infected mice, levels were similar, but peaked predominantly at day 3 and an earlier peak in spleen weight likewise implied an earlier response. The inflammatory response induced pathology in the spleen and liver. In Bceti-infected mice, most serum cytokine levels were comparable to those in uninfected mice, consistent with a limited inflammatory response, which also was indicated by restricted spleen and liver pathology. Specific immune responses against all three strains were detected in vitro after stimulation of splenocytes from infected mice with the homologous heat-killed brucellae. Antibody responses in vivo were also induced by the three brucellae. The immunological pattern of Bceti in combination with persistence in organs and limited pathology has heretofore not been described for other brucellae. These two marine mammal wildtype strains show an attenuated pattern in BALB/c mice only previously described for Brucella neotomea.

 

Ingebjørg Helena Nymo

DVM, PhD

 

Post Doctoral Researcher

Research Group of Arctic Infection Biology

Department of Arctic and Marine Biology

Faculty of Biosciences, Fisheries and Economics

University of Tromsø – The Arctic University of Norway

Phone: +47 918 38 421 / mail: ingebjorg.h.nymo@uit.no

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