Literature DB >> 23290118

The role of dogs in the eco-epidemiology of Rickettsia typhi, etiological agent of Murine typhus.

María-Mercedes Nogueras1, Immaculada Pons, Júlia Pla, Anna Ortuño, Jaime Miret, Isabel Sanfeliu, Ferran Segura.   

Abstract

Rickettsia typhi, etiological agent of Murine typhus (MT), is transmitted to humans from an animal reservoir through two cycles: a classic rat-flea-rat cycle, and a peridomestic animal cycle. There are not many studies concerning which animals are involved in the peridomestic cycle, and most of them are focused on cats. The aim of this study was to determine the presence of R. typhi in dogs, not only by serological methods but also by direct methods such as culture and molecular detection. Two hundred and one dog blood samples were collected from Veterinary clinics, kennels, and shelters in Northeastern Spain (2006-2008). Age, sex, municipality, living place, healthy status, contact with animals, and ectoparasite infestations were surveyed. IgG was measured by IFA. Titers ≥ 1/64 were considered positive. Cultures were carried out using samples of dogs with titers ≥ 1/128. The molecular detection was performed by real-time PCR. Nine dogs (4.5%) were positive according to IFA (5: 1/64; 3: 1/128; 1: 1/512). There were no significant differences in the rates of antibodies related to any of the variables. Rickettsial DNA was detected in two cultures. Sequences obtained were identical to those of R. typhi. The results show direct and indirect evidences of the presence of R. typhi infection in dogs.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 23290118     DOI: 10.1016/j.vetmic.2012.11.043

Source DB:  PubMed          Journal:  Vet Microbiol        ISSN: 0378-1135            Impact factor:   3.293


  8 in total

1.  Molecular and serological study of rickettsial infection in humans, and in wild and farm animals, in the province of Burgos, Spain.

Authors:  Lourdes Lledó; Gerardo Domínguez-Peñafiel; Consuelo Giménez-Pardo; Isabel Gegúndez; Rosario González; José Vicente Saz
Journal:  Vector Borne Zoonotic Dis       Date:  2014-05-27       Impact factor: 2.133

2.  Shell-vial culture and real-time PCR applied to Rickettsia typhi and Rickettsia felis detection.

Authors:  Ferran Segura; Immaculada Pons; Júlia Pla; María-Mercedes Nogueras
Journal:  World J Microbiol Biotechnol       Date:  2015-08-20       Impact factor: 3.312

3.  Direct evidence of Rickettsia typhi infection in Rhipicephalus sanguineus ticks and their canine hosts.

Authors:  Karla Dzul-Rosado; Cesar Lugo-Caballero; Raul Tello-Martin; Karina López-Avila; Jorge Zavala-Castro
Journal:  Open Vet J       Date:  2017-06-11

4.  Significance of major international seaports in the distribution of murine typhus in Taiwan.

Authors:  Chi-Chien Kuo; Nicola Wardrop; Chung-Te Chang; Hsi-Chieh Wang; Peter M Atkinson
Journal:  PLoS Negl Trop Dis       Date:  2017-03-06

5.  Risk Factors for Scrub Typhus, Murine Typhus, and Spotted Fever Seropositivity in Urban Areas, Rural Plains, and Peri-Forest Hill Villages in South India: A Cross-Sectional Study.

Authors:  Carol S Devamani; Wolf-Peter Schmidt; Koya Ariyoshi; Arumugam Anitha; Saravanan Kalaimani; John A J Prakash
Journal:  Am J Trop Med Hyg       Date:  2020-05-21       Impact factor: 2.345

6.  Screening of Forestry Workers in Guadalajara Province (Spain) for Antibodies to Lymphocytic Choriomeningitis Virus, Hantavirus, Rickettsia spp. and Borrelia burgdorferi.

Authors:  Lourdes Lledó; Consuelo Giménez-Pardo; María Isabel Gegúndez
Journal:  Int J Environ Res Public Health       Date:  2019-11-15       Impact factor: 3.390

Review 7.  Vector-borne diseases of small companion animals in Namibia: Literature review, knowledge gaps and opportunity for a One Health approach.

Authors:  Bruce H Noden; Minty Soni
Journal:  J S Afr Vet Assoc       Date:  2015-11-06       Impact factor: 1.474

8.  Murine typhus mistaken for COVID-19 in a young man.

Authors:  Hemesh Mahesh Patel
Journal:  BMJ Case Rep       Date:  2020-11-03
  8 in total

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