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E-test determination of antifungal susceptibility of Candida species isolated from turkeys
2020
Sokół, Ireneusz | Tokarzewski, Stanisław | Bobrek, Kamila | Gaweł, Andrzej
Candida species are a natural component of the intestinal tract microflora, but in favourable conditions they can cause superficial, mucosal, or even systemic candidiasis. Poultry production might be a source of human drug-resistant yeast infections, including Candida spp. The limited data concerning the antifungal susceptibility of poultry Candida isolates prompted us to carry out research to determine the susceptibility of isolates from turkey intestinal tracts. The beak cavity, crop and cloaca were swabbed of 580 turkeys from 58 flocks in western Poland. The susceptibility tests were conducted using the E-test method with amphotericin B, fluconazole, itraconazole, and voriconazole on 52 isolates of C. albicans, C. catenulata, C. glabrata, C. palmioleophila, C. rugosa, C. krusei and C. lusitaniae. All isolates were susceptible to voriconazole. According to the MIC values obtained for amphotericin B and fluconazole, all Candida spp. isolates were classified as susceptible according to the described breakpoints except for C. krusei, which was the only isolate that was amphotericin B-, fluconazole- and itraconazole-resistant. The susceptibility to itraconazole varied: 11 of the Candida isolates were susceptible (21.1%), 29 were dose-dependently susceptible (55.8%), and 12 isolates were resistant (23.1%). There are few resistant strains of Candida in turkeys, and the drug resistance varies. When Candida passes from turkeys to humans, there is a wide range of antifungal treatment options.
Afficher plus [+] Moins [-]Colistin resistance of non-pathogenic strains of Escherichia coli occurring as natural intestinal flora in broiler chickens treated and not treated with colistin sulphate
2020
Majewski, Michał | Łukomska, Anna | Wilczyński, Jarosław | Wystalska, Danuta | Racewicz, Przemysław | Nowacka-Woszuk, Joanna | Pszczola, Marcin | Anusz, Krzysztof
A significant threat to public health is presented by antibiotic-resistant strains of bacteria, selective pressure on which results from antibiotic use. Colistin is an antibiotic commonly used in veterinary medicine, but also one of last resort in human medicine. Since the 2015 discovery in China of the mcr-1 gene encoding colistin resistance in Enterobacteriaceae, other countries have noted its presence. This study was to find the mcr-1 gene prevalence in E. coli isolated from poultry slaughtered in Poland. Cloacal swabs were taken from December 2017 to October 2018 from broiler chickens in three regions. The samples (n = 158) were grouped as flocks treated with colistin sulphate (n = 87) and those not treated (n = 71). Resistance to antimicrobials commonly used in poultry was evaluated by minimum inhibitory concentration. The presence of the mcr-1 gene was confirmed by PCR. Isolates containing the mcr-1 gene were yielded by 11.27% of the samples from not treated flocks and 19.54% of those from treated flocks, but no statistically significant difference in the prevalence of the gene was seen between the groups. The results clearly preclude intensification of selective pressure for colistin resistance due to colistin sulphate treatment because they show that the avian gastrointestinal tract was already inhabited by colistin-resistant E. coli by the time the chickens came to the poultry house.
Afficher plus [+] Moins [-]Microbiome and antimicrobial resistance genes in microbiota of cloacal samples from European herring gulls (Larus argentatus)
2017
Merkeviciene, Lina | Ruzauskaite, Neda | Klimiene, Irena | Siugzdiniene, Rita | Dailidaviciene, Jurgita | Virgailis, Marius | Mockeliunas, Raimundas | Ruzauskas, Modestas
Introduction: The aim of the study was to determine microbiota in the cloacal samples of European herring gulls (Larus argentatus) and to compare a variety of genes encoding antimicrobial resistance in cultivable and non-cultivable bacteria. Material and Methods: Cloacal samples from European herring gulls were collected from a Kaunas city dump. Cultivable microbiota were isolated, their microbial susceptibility was tested, and genes encoding antimicrobial resistance were detected. Additionally, a metagenomic study was performed using Next-Generation Sequencing (NGS). Results: In total, 697 different operational taxonomic units at genus level were detected; however, only 63 taxonomic units were detected at the amount of ≥0.1% of the total number of DNA copies. Catellicoccus marimammalium was found to have the highest prevalence. The bacterial amount of other genera was up to 5% with the most highly prevalent being Psychrobacter (4.7%), Helicobacter (4.5%), unclassified Enterococcaceae (3.2%), Pseudomonas (2.9%), and Brachyspira (2.6%). Conclusions: C. marimammalium are predominant microbiota in the cloacal samples of Larus argentatus. This species of gulls is a reservoir of bacteria carrying a wide-spectrum of genes encoding antimicrobial resistance. The same genes were detected in both cultivable microbiota and in the total DNA of the samples.
Afficher plus [+] Moins [-]Prevalence and risk factors for Campylobacter spp., Salmonella spp., Coxiella burnetii, and Newcastle disease virus in feral pigeons (Columba livia) in public areas of Montreal, Canada
2016
Gabriele-Rivet, Vanessa | Fairbrother, Julie-Helene | Tremblay, Donald | Harel, Josee | Cote, Nathalie | Arsenault, Julie
Feral pigeons (Columbia livia) can harbor a range of zoonotic pathogens. A transversal study was undertaken to estimate the prevalence of feral pigeons infected by various pathogens in public areas in Montreal, Quebec. Cloacal swabs from captured birds were cultured for Salmonella spp. and Campylobacter spp. and tested by real-time polymerase chain reaction (RT-PCR) for the detection of Coxiella burnetii. An oropharyngeal swab was also submitted to real-time reverse-transcription polymerase chain reaction (RRT-PCR) for the detection of Newcastle disease virus. Among the 187 pigeons tested from 10 public areas, 9.1% (95% CI: 3.0 to 15.2) were positive for Campylobacter spp. with all strains identified as Campylobacter jejuni. The Campylobacter status of birds was not associated with individual characteristics of birds, with the exception of body score. None of the pigeons tested positive for the other pathogens. Direct or indirect contacts with feral pigeons may constitute a potential risk for Campylobacter infection in humans.
Afficher plus [+] Moins [-]Resistance to fecal shedding of salmonellae in pigs and chickens vaccinated with an aromatic-dependent mutant of Salmonella typhimurium
1991
Lumsden, J.S. | Wilkie, B.N. | Clarke, R.C.
The purpose of this study was to evaluate the effectiveness of an aromatic-dependent mutant of Salmonella typhimurium as a parenteral vaccine for prevention of fecal shedding of Salmonella spp. Pigs and chickens were vaccinated IM, with 1 X 10(9) and 1 X 10(8) organisms, respectively, followed by a second identical vaccination 2 weeks later. Salmonella organisms were not detected by analysis of fecal or cloacal swab specimens from any animal after vaccination. Deleterious side effects were not noticed after vaccination. Pigs were challenge-inoculated PO with 1 X 10(12) virulent S typhimurium 1 week after the second vaccination. Chickens were challenge-inoculated PO with 3 X 10(8) organisms of either S enteritidis or the virulent parent strain of S typhimurium 3 weeks after the second vaccination. Vaccinated pigs shed Salmonella spp significantly less frequently than did nonvaccinated pigs. Vaccinated chickens challenge-inoculated with either S enteritidis or S typhimurium also shed Salmonella less frequently than the corresponding nonvaccinated control birds; however, the difference was not significant.
Afficher plus [+] Moins [-]Assessment of sedation after intranasal administration of midazolam and midazolam-butorphanol in cockatiels (Nymphicus hollandicus)
2018
Doss, Grayson A. | Fink, Dustin M. | Mans, Christoph
OBJECTIVE To compare sedation in cockatiels (Nymphicus hollandicus) after intranasal administration of midazolam and midazolam-butorphanol. ANIMALS 9 healthy adult cockatiels. PROCEDURES A randomized, controlled, blinded, complete crossover study was conducted. Birds were assigned to 3 treatment groups. Midazolam (3 mg/kg), midazolam-butorphanol (3 mg/kg for each drug), or sterile saline (0.9% NaCl) solution (control treatment) was administered intranasally. Sedation quality was assessed at 3 time points by use of eye and body position; response to visual, auditory, and tactile stimulation; and response during manual restraint on the basis of eye position and struggling intensity. To evaluate attenuation of the manual restraint–induced stress response, heart rate, respiratory rate, and cloacal temperature were measured over a 15-minute period. Treatments were repeated after a minimum washout period of 7 days. RESULTS Median onset of first sedation effects was 85 seconds (range, 60 to 120 seconds) for midazolam and 90 seconds (range, 45 to 180 seconds) for midazolam-butorphanol. Midazolam-butorphanol resulted in significantly less vigorous struggling during restraint than did midazolam or the control treatment. Heart rate did not differ significantly among treatments. The stress-induced increase in respiratory rate was significantly attenuated by midazolam and midazolam-butorphanol, whereas the increase in cloacal temperature was not attenuated by midazolam or midazolam-butorphanol. CONCLUSIONS AND CLINICAL RELEVANCE Intranasal administration of midazolam and midazolam-butorphanol resulted in a rapid onset of sedation in cockatiels. Midazolam-butorphanol resulted in deeper sedation in both restrained and unrestrained birds than did midazolam alone. Midazolam and midazolam-butorphanol both provided safe and effective sedation in cockatiels.
Afficher plus [+] Moins [-]Evidence for cryptosporidial infection as a cause of prolapse of the phallus and cloaca in ostrich chicks (Struthio camelus)
1994
Penrith, M.-L. | Putterill, J.F. (Onderstepoort Veterinary Inst. (South Africa). Pathology Section) | Bezuidenhout, A.J. | Burger, W.P.