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SHR Neuro Cancer Cardio Lipid Metab Microb

Kittinger, C; Kirschner, A; Lipp, M; Baumert, R; Mascher, F; Farnleitner, AH; Zarfel, GE.
Antibiotic Resistance of Acinetobacter spp. Isolates from the River Danube: Susceptibility Stays High
INT J ENV RES PUB HE. 2018; 15(1): 52 Doi: 10.3390/ijerph15010052 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

Leading authors Med Uni Graz
Kittinger Clemens
Zarfel Gernot
Co-authors Med Uni Graz
Baumert Rita
Lipp Michaela
Mascher Franz
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Abstract:
Acinetobacter spp. occur naturally in many different habitats, including food, soil, and surface waters. In clinical settings, Acinetobacter poses an increasing health problem, causing infections with limited to no antibiotic therapeutic options left. The presence of human generated multidrug resistant strains is well documented but the extent to how widely they are distributed within the Acinetobacter population is unknown. In this study, Acinetobacter spp. were isolated from water samples at 14 sites of the whole course of the river Danube. Susceptibility testing was carried out for 14 clinically relevant antibiotics from six different antibiotic classes. Isolates showing a carbapenem resistance phenotype were screened with PCR and sequencing for the underlying resistance mechanism of carbapenem resistance. From the Danube river water, 262 Acinetobacter were isolated, the most common species was Acinetobacter baumannii with 135 isolates. Carbapenem and multiresistant isolates were rare but one isolate could be found which was only susceptible to colistin. The genetic background of carbapenem resistance was mostly based on typical Acinetobacter OXA enzymes but also on VIM-2. The population of Acinetobacter (baumannii and non-baumannii) revealed a significant proportion of human-generated antibiotic resistance and multiresistance, but the majority of the isolates stayed susceptible to most of the tested antibiotics.

Find related publications in this database (Keywords)
Acinetobacter
JDS3
river
water
carbapenemases
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