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Showing posts with label E. coli. Show all posts
Showing posts with label E. coli. Show all posts

Thursday, June 10, 2010

Antimicrobial Resistance in Cats

Shaheen BW, Boothe DM, Oyarzabal OA et al: Antimicrobial resistance profiles and clonal relatedness of canine and feline Escherichia coli pathogens expressing multidrug resistance in the United States, J Vet Intern Med 24:323, 2010.

Antibiotic resistance has been documented in E. coli isolates from human, animal and environmental resources. An emerging health concern is the multidrug resistant (MDR) strains of Eshcerichia coli. There have been a number of studies that demonstrate an increase in MDR E. coli associated with infections in dogs and cats throughout the United States and Europe. In this study, 376 isolates of E. coli were collected from dogs and cats from the South, West, Northeast, and Midwest regions of the United States from May to September 2005. 51% of the isolates expressed resistance to at least one drug and 44% of those isolates were single drug resistant (SDR), most commonly amoxicillin. The MDR isolates (56%) were resistant to amoxicillin, amoxicillin-clavulanate, and enrofloxacin; 18% were resistant to all drugs tested. The majority of the E.coli isolates were genetically and phenotypically distinct from one another. The frequency of MDR did not differ regionally in the United States. The study underscores the need to understand that MDR isolates are not only resistant to many drugs, but the level of resistance to those drugs is very high and thus might not be overcome by increasing doses, nor combination antimicrobial therapy. Therefore, implementation of a robust surveillance program for antimicrobial resistance is recommended. [VT]

Related articles:
Murphy C, Reid-Smith R, Prescott J et al: Occurrence of antimicrobial resistant bacteria in healthy dogs and cats presented to private veterinary hospitals in southern Ontario: a preliminary study, Can Vet J 50:1047, 2009.

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Shaheen BW, Boothe DM, Oyarzabal OA et al: Antimicrobial resistance profiles and clonal relatedness of canine and feline Escherichia coli pathogens expressing multidrug resistance in the United States, J Vet Intern Med 24:323, 2010.

Antibiotic resistance has been documented in E. coli isolates from human, animal and environmental resources. An emerging health concern is the multidrug resistant (MDR) strains of Eshcerichia coli. There have been a number of studies that demonstrate an increase in MDR E. coli associated with infections in dogs and cats throughout the United States and Europe. In this study, 376 isolates of E. coli were collected from dogs and cats from the South, West, Northeast, and Midwest regions of the United States from May to September 2005. 51% of the isolates expressed resistance to at least one drug and 44% of those isolates were single drug resistant (SDR), most commonly amoxicillin. The MDR isolates (56%) were resistant to amoxicillin, amoxicillin-clavulanate, and enrofloxacin; 18% were resistant to all drugs tested. The majority of the E.coli isolates were genetically and phenotypically distinct from one another. The frequency of MDR did not differ regionally in the United States. The study underscores the need to understand that MDR isolates are not only resistant to many drugs, but the level of resistance to those drugs is very high and thus might not be overcome by increasing doses, nor combination antimicrobial therapy. Therefore, implementation of a robust surveillance program for antimicrobial resistance is recommended. [VT]

Related articles:
Murphy C, Reid-Smith R, Prescott J et al: Occurrence of antimicrobial resistant bacteria in healthy dogs and cats presented to private veterinary hospitals in southern Ontario: a preliminary study, Can Vet J 50:1047, 2009.

More on cat health: Winn Feline Foundation Library
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Thursday, July 31, 2008

Bacteremia in Cats

Greiner, M., G. Wolf, et al. (2008). "A retrospective study of the clinical presentation of 140 dogs and 39 cats with bacteraemia." J Small Anim Pract 49(8): 378-383.

Bacteremia is the presence of viable bacteria in the bloodstream. Bacteremia may develop in animals with impaired immune defenses, and is a common cause of sepsis. Sepsis is the systemic inflammatory response to infection. Bacteremia is associated with a high mortality rate in animals so that early diagnosis and intervention is very important. The aim of this study was to determine the bacterial species that can be isolated from blood cultures in dogs and cats with bacteremia. Retrospective data from 39 cats (and 140 dogs) with positive blood cultures presented to the University of Munich were evaluated. Sepsis was diagnosed in 59.5% of the cats with bacteremia. The most commonly isolated organism was E. coli, accounting for 30% of the isolates in cats. Cats in this study had a higher mortality rate than dogs. The authors conclude that clinical and laboratory findings are not helpful in determining the type of bacteria involved and blood cultures need to be performed to guide therapy.
>> PubMed Abstract

Related articles:
Greiner, M., G. Wolf, et al. (2007). "Bacteraemia in 66 cats and antimicrobial susceptibility of the isolates (1995-2004)." J Feline Med Surg 9(5): 404-10.
>> PubMed Abstract

More on cat health: Winn Feline Foundation Library
Greiner, M., G. Wolf, et al. (2008). "A retrospective study of the clinical presentation of 140 dogs and 39 cats with bacteraemia." J Small Anim Pract 49(8): 378-383.

Bacteremia is the presence of viable bacteria in the bloodstream. Bacteremia may develop in animals with impaired immune defenses, and is a common cause of sepsis. Sepsis is the systemic inflammatory response to infection. Bacteremia is associated with a high mortality rate in animals so that early diagnosis and intervention is very important. The aim of this study was to determine the bacterial species that can be isolated from blood cultures in dogs and cats with bacteremia. Retrospective data from 39 cats (and 140 dogs) with positive blood cultures presented to the University of Munich were evaluated. Sepsis was diagnosed in 59.5% of the cats with bacteremia. The most commonly isolated organism was E. coli, accounting for 30% of the isolates in cats. Cats in this study had a higher mortality rate than dogs. The authors conclude that clinical and laboratory findings are not helpful in determining the type of bacteria involved and blood cultures need to be performed to guide therapy.
>> PubMed Abstract

Related articles:
Greiner, M., G. Wolf, et al. (2007). "Bacteraemia in 66 cats and antimicrobial susceptibility of the isolates (1995-2004)." J Feline Med Surg 9(5): 404-10.
>> PubMed Abstract

More on cat health: Winn Feline Foundation Library
Read More