Javascript must be enabled to continue!
Molecular prevalence of Borrelia burgdorferi, Ehrlichia canis, and Coxiella burnetii in dogs and associated ticks in Egypt: Emerging One Health challenging zoonoses
View through CrossRef
Background and Aim: Tick-borne pathogens pose a significant problem in canines, other animals, and humans worldwide. This study aimed to estimate the prevalence of Borrelia burgdorferi, Ehrlichia canis, and Coxiella burnetii in dogs and associated ticks in Egypt.
Materials and Methods: Blood samples from 110 tick-infested dogs and 550 whole ticks (divided into 110 pools) were collected and tested for the targeted pathogens using polymerase chain reaction (PCR).
Results: Of the 110 dog blood samples, B. burgdorferi DNA was detected in three samples, E. canis in six samples, and C. burnetii in one kenneled dog. Among the 110 tick pools, B. burgdorferi was detected in four pools, E. canis in 12 pools, and C. burnetii in three pools from kenneled dogs. The overall prevalence of the three agents in dog and tick samples were 3.18%, 8.18%, and 1.81%, respectively. Simultaneous positive PCR reactions in both dogs and their associated tick pools were observed in four cases. B. burgdorferi and E. canis were simultaneously detected in two dogs and two tick pools, whereas C. burnetii was detected in one dog but not in any tick pools. The three agents were simultaneously detected in one dog, but none were found in the corresponding tick pools. A mixed infection of C. burnetii and B. burgdorferi was observed in one dog and one tick pool.
Conclusion: Molecular diagnosis is the most reliable method for detecting B. burgdorferi, E. canis, and C. burnetii in dogs and associated ticks. E. canis showed the highest prevalence in both dog and tick samples followed by B. burgdorferi while C. burnetti showed the lowest prevalence. The potential transmission of these diseases from companion dogs to humans through ticks presents a significant challenge for the One Health concept.
Keywords: borreliosis, coxillosis, ehrlichiosis, pets, Rhipicephalus
Title: Molecular prevalence of Borrelia burgdorferi, Ehrlichia canis, and Coxiella burnetii in dogs and associated ticks in Egypt: Emerging One Health challenging zoonoses
Description:
Background and Aim: Tick-borne pathogens pose a significant problem in canines, other animals, and humans worldwide.
This study aimed to estimate the prevalence of Borrelia burgdorferi, Ehrlichia canis, and Coxiella burnetii in dogs and associated ticks in Egypt.
Materials and Methods: Blood samples from 110 tick-infested dogs and 550 whole ticks (divided into 110 pools) were collected and tested for the targeted pathogens using polymerase chain reaction (PCR).
Results: Of the 110 dog blood samples, B.
burgdorferi DNA was detected in three samples, E.
canis in six samples, and C.
burnetii in one kenneled dog.
Among the 110 tick pools, B.
burgdorferi was detected in four pools, E.
canis in 12 pools, and C.
burnetii in three pools from kenneled dogs.
The overall prevalence of the three agents in dog and tick samples were 3.
18%, 8.
18%, and 1.
81%, respectively.
Simultaneous positive PCR reactions in both dogs and their associated tick pools were observed in four cases.
B.
burgdorferi and E.
canis were simultaneously detected in two dogs and two tick pools, whereas C.
burnetii was detected in one dog but not in any tick pools.
The three agents were simultaneously detected in one dog, but none were found in the corresponding tick pools.
A mixed infection of C.
burnetii and B.
burgdorferi was observed in one dog and one tick pool.
Conclusion: Molecular diagnosis is the most reliable method for detecting B.
burgdorferi, E.
canis, and C.
burnetii in dogs and associated ticks.
E.
canis showed the highest prevalence in both dog and tick samples followed by B.
burgdorferi while C.
burnetti showed the lowest prevalence.
The potential transmission of these diseases from companion dogs to humans through ticks presents a significant challenge for the One Health concept.
Keywords: borreliosis, coxillosis, ehrlichiosis, pets, Rhipicephalus.
Related Results
Altering lipid droplet homeostasis affects
Coxiella burnetii
intracellular growth
Altering lipid droplet homeostasis affects
Coxiella burnetii
intracellular growth
ABSTRACT
Coxiella burnetii
is an obligate intracellular bacterial pathogen and a causative agent of culture-negative endocardit...
Screening and phylogenetic characterization of tick-borne pathogens in a population of dogs and associated ticks in Egypt
Screening and phylogenetic characterization of tick-borne pathogens in a population of dogs and associated ticks in Egypt
Abstract
Background
The incidence or recurrence of tick-borne diseases (TBDs) in animals and humans is increasing rapidly worldwide, but there is in...
SERO-MOLECULAR INVESTIGATION OF COXIELLA BURNETII INFECTION IN DOMESTIC RUMINANTS AND HUMANS AND ASSOCIATED RISK FACTORS BASED ON ‘ONE HEALTH’ PERSPECTIVES IN BANGLADESH
SERO-MOLECULAR INVESTIGATION OF COXIELLA BURNETII INFECTION IN DOMESTIC RUMINANTS AND HUMANS AND ASSOCIATED RISK FACTORS BASED ON ‘ONE HEALTH’ PERSPECTIVES IN BANGLADESH
Background: Q-fever is an important zoonotic disease caused by the bacterium Coxiella burnetii with wide host range of mammals, birds and arthropods worldwide. The prevalence of C....
Multiple spacer sequence typing of Coxiella burnetii carried by ticks in Gansu, China
Multiple spacer sequence typing of Coxiella burnetii carried by ticks in Gansu, China
BackgroundCoxiella burnetii is a zoonotic pathogen that causes Q fever and is found worldwide. Ticks serve as the primary reservoir, playing an important role in maintaining the na...
Real-time PCR Biochip for On-Site Detection of Coxiella Burnetii in Ticks
Real-time PCR Biochip for On-Site Detection of Coxiella Burnetii in Ticks
Abstract
Background: Q fever, a zoonosis caused by Coxiella burnetii, has adverse effects on public health. Ticks are the natural reservoirs of C. burnetii and they contrib...
Coxiella burnetii infection in a patient did not involve tick bite
Coxiella burnetii infection in a patient did not involve tick bite
Abstract
Background: Coxiella burnetii that causes Q fever in humans is transmitted through contaminated aerosols or consumption of raw milk from infected animals. Ticks ar...
Molecular-based detection of Ehrlichia spp. in stray dogs-infesting Rhipicephalus ticks in high-altitude of northern Pakistan
Molecular-based detection of Ehrlichia spp. in stray dogs-infesting Rhipicephalus ticks in high-altitude of northern Pakistan
Although ticks are recognized as carriers of zoonotic pathogens, the risks of tick-borne infections associated with dogs have received limited attention. The close interaction betw...
Molecular detection of Coxiella burnetii in ticks collected from animals and the environment in Uganda
Molecular detection of Coxiella burnetii in ticks collected from animals and the environment in Uganda
AbstractAimsCoxiella burnetii is a highly infectious organism that is easily spread through aerosols causing Q fever in humans. Ticks can harbour and transmit C. burnetii to animal...

