Herbert Galler
Medical University of Graz
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Featured researches published by Herbert Galler.
Water Research | 2010
Franz F. Reinthaler; Gebhard Feierl; Herbert Galler; Doris Haas; Eva Leitner; Franz Mascher; Angelika Melkes; Josefa Posch; Ingrid Winter; Gernot Zarfel; Egon Marth
The aim of this study was to investigate the degree of contamination of sewage sludge with ESBL-producing Escherichia coli strains and the effectiveness of different sewage sludge treatment methods. Monthly sewage sludge samples were collected between January and September 2009 in 5 different sewage treatment plants and tested for the presence of ESBL E. coli. In addition, the number of colony forming units (CFU) of E. coli and coliform bacteria before and after the different sludge treatment methods (aerobic/anaerobic digestion, lime stabilization, and thermal treatment) was investigated. Of the 72 sewage sludge samples investigated, ESBL-positive E. coli were found in 44 (61.1%) sewage sludge samples. The classification of beta-lactamase groups was carried out in 15 strains resulting in the detection of 2 different groups (CTX-M and TEM) of bla genes. All 15 of them had a CTX-M gene and 4 of these strains furthermore carried a TEM gene. With regard to the CFU of E. coli and coliform bacteria, thermal treatment and lime stabilization following dehydration sufficiently reduced pathogen concentrations. The plants using merely stabilization and dehydration showed an increase of E. coli and coliform bacteria and thus also an increase in ESBL-producing E. coli.
Environmental Pollution | 2013
Gernot Zarfel; Herbert Galler; Gebhard Feierl; Doris Haas; Clemens Kittinger; Eva Leitner; Andrea J. Grisold; Franz Mascher; Josefa Posch; Brigitte Pertschy; Egon Marth; Franz F. Reinthaler
For many years, extended-spectrum-beta-lactamase (ESBL) producing bacteria were a problem mainly located in medical facilities. Within the last decade however, ESBL-producing bacteria have started spreading into the community and the environment. In this study, ESBL-producing Escherichia coli from sewage sludge were collected, analysed and compared to ESBL-E. coli from human urinary tract infections (UTIs). The dominant ESBL-gene-family in both sample groups was bla(CTX-M), which is the most prevalent ESBL-gene-family in human infection. Still, the distribution of ESBL genes and the frequency of additional antibiotic resistances differed in the two sample sets. Nevertheless, phenotyping did not divide isolates of the two sources into separate groups, suggesting similar strains in both sample sets. We speculate that an exchange is taking place between the ESBL E. coli populations in infected humans and sewage sludge, most likely by the entry of ESBL E. coli from UTIs into the sewage system.
International Journal of Food Microbiology | 2010
Doris Haas; Herbert Galler; Juliana Habib; Angelika Melkes; R. Schlacher; Walter Buzina; H. Friedl; Egon Marth; Franz F. Reinthaler
In wineries, unwanted microorganisms present not only hygienic problems but also have a negative influence on wine quality. An evaluation of Austrian/Styrian wine cellars with regard to the volume and the composition of the mycoflora is very important both for the process of wine production and for occupational safety. Thirty-six wine cellars of 20 vintners were investigated with regard to microorganisms in the air and on material surfaces. Moreover, the presence of trichloroanisole in the air was determined by means of solid-phase micro-extraction. Microorganisms were sampled using the six-stage Andersen-Cascade impactor. The results showed that the concentrations of xerophilic fungi in the air of cellars with large visible mold areas (> 80%) reached values up to 1.4 × 10⁴ colony forming units per m³. In the wine cellars fourteen predominant fungal genera were found in the indoor air, the most frequent was Penicillium. Trichloroanisole was detected in the air of wine cellars with large visible moldy patches. The spore concentrations in the cellar air were two times higher in cellars with Zasmidium cellare growth than in cellars without Z. cellare. These results will serve as a database for further studies.
Journal of Water and Health | 2013
Franz F. Reinthaler; Herbert Galler; Gebhard Feierl; Doris Haas; Eva Leitner; Franz Mascher; Angelika Melkes; Josefa Posch; Brigitte Pertschy; Ingrid Winter; Wilhelm Himmel; Egon Marth; Gernot Zarfel
For some time now, antibiotic-resistant bacterial strains have been found in the human population, in foods, in livestock and wild animals, as well as in surface waters. The entry of antibiotics and resistant bacterial strains into the environment plays an important role in the spread of antibiotic resistance. The goal of the present study was to monitor the entry of antibiotic resistances into the environment through the contamination of wastewater. To assess the extent of transmission of antibiotic resistances from human sources into the environment, the resistance patterns of Escherichia coli strains isolated from human patients have been compared to those found in strains isolated from sewage sludge. Our results may indicate if resistances to particular antibiotics are more prone than others to spread into the environment. To monitor the increase of specific resistances over time, samples taken in the years 2000 and 2009 were analysed. Our study shows that for some antibiotics a parallel development of resistance patterns has taken place in both patient and environmental samples over time. For other sets of antibiotics, independent developments have occurred in the samples. A clear increase of multi-resistant E. coli strains over time was observed in samples from both sources.
PLOS ONE | 2016
Clemens Kittinger; Michaela Lipp; Bettina Folli; Alexander K. T. Kirschner; Rita Baumert; Herbert Galler; Andrea J. Grisold; Josefa Luxner; Melanie Weissenbacher; Andreas H. Farnleitner; Gernot Zarfel
In a clinical setting it seems to be normal these days that a relevant proportion or even the majority of different bacterial species has already one or more acquired antibiotic resistances. Unfortunately, the overuse of antibiotics for livestock breeding and medicine has also altered the wild-type resistance profiles of many bacterial species in different environmental settings. As a matter of fact, getting in contact with resistant bacteria is no longer restricted to hospitals. Beside food and food production, the aquatic environment might also play an important role as reservoir and carrier. The aim of this study was the assessment of the resistance patterns of Escherichia coli and Klebsiella spp. out of surface water without prior enrichment and under non-selective culture conditions (for antibiotic resistance). In addition, the presence of clinically important extended spectrum beta lactamase (ESBL) and carbapenmase harboring Enterobacteriaceae should be investigated. During Joint Danube Survey 3 (2013), water samples were taken over the total course of the River Danube. Resistance testing was performed for 21 different antibiotics. Samples were additionally screened for ESBL or carbapenmase harboring Enterobacteriaceae. 39% of all isolated Escherichia coli and 15% of all Klebsiella spp. from the river Danube had at least one acquired resistance. Resistance was found against all tested antibiotics except tigecycline. Taking a look on the whole stretch of the River Danube the proportion of multiresistances did not differ significantly. In total, 35 ESBL harboring Enterobacteriaceae, 17 Escherichia coli, 13 Klebsiella pneumoniae and five Enterobacter spp. were isolated. One Klebsiella pneumoniae harboring NMD-1 carbapenmases and two Enterobacteriaceae with KPC-2 could be identified. Human generated antibiotic resistance is very common in E. coli and Klebsiella spp. in the River Danube. Even isolates with resistance patterns normally associated with intensive care units are present.
International Journal of Environmental Research and Public Health | 2014
Gernot Zarfel; Herbert Galler; Josefa Luxner; Christian Petternel; Franz F. Reinthaler; Doris Haas; Clemens Kittinger; Andrea J. Grisold; Peter Pless; Gebhard Feierl
Multidrug resistant bacteria (MDR bacteria), such as extended spectrum beta-lactamase (ESBL) Enterobacteriaceae, methicillin resistant Staphylococcus aureus (MRSA), and vancomycin-resistant Enterococci (VRE), pose a challenge to the human health care system. In recent years, these MDR bacteria have been detected increasingly outside the hospital environment. Also the contamination of food with MDR bacteria, particularly of meat and meat products, is a concern. The aim of the study was to evaluate the occurrence of MDR bacteria in chicken meat on the Austrian market. For this study, 50 chicken meat samples were analysed. All samples originated from chickens slaughtered in Austrian slaughterhouses and were marked as produced in Austria. Samples were analysed for the presence of ESBL Enterobacteriaceae, methicillin resistant Staphylococci and VRE. Resistance genes of the isolated bacteria were characterised by PCR and sequencing. In the present study 26 ESBL producing E. coli, five mecA gene harbouring Staphylococci (but no MRSA), and four VRE were detected in chicken meat samples of Austrian origin. In 24 (48%) of the samples no ESBL Enterobacteriaceae, MRSA, methicillin resistant coagulase negative Staphylococcus (MRCNS) or VRE could be detected. None of the samples contained all three types of investigated multiresistant bacteria. In concordance to previous studies, CTX-M-1 and SHV-12 were the dominant ESBL genes.
Medical Mycology | 2016
Doris Haas; Susanne Lesch; Walter Buzina; Herbert Galler; Anna Maria Gutschi; Juliana Habib; Bettina Pfeifer; Josefa Luxner; Franz F. Reinthaler
In the present study the spectrum and the incidence of fungi in potting soils and compost was investigated. Since soil is one of the most important biotopes for fungi, relatively high concentrations of fungal propagules are to be expected. For detection of fungi, samples of commercial soils, compost and soils from potted plants (both surface and sub-surface) were suspended and plated onto several mycological media. The resulting colonies were evaluated qualitatively and quantitatively. The results from the different sampling series vary, but concentrations on the surface of potted plants and in commercial soils are increased tenfold compared to compost and sub-surface soils. Median values range from 9.5 × 10(4) colony forming units (CFU)/g to 5.5 × 10(5) CFU/g. The spectrum of fungi also varies in the soils. However, all sampling series show high proportion of Aspergillus and Penicillium species, including potentially pathogenic species such as Aspergillus fumigatus. Cladosporium, a genus dominant in the ambient air, was found preferably in samples which were in contact with the air. The results show that potentially pathogenic fungi are present in soils. Immunocompromised individuals should avoid handling soils or potted plants in their immediate vicinity.
International Journal of Environmental Research and Public Health | 2018
Herbert Galler; Gebhard Feierl; Christian Petternel; Franz F. Reinthaler; Doris Haas; Juliana Habib; Clemens Kittinger; Josefa Luxner; Gernot Zarfel
Wastewater contains different kinds of contaminants, including antibiotics and bacterial isolates with human-generated antibiotic resistances. In industrialized countries most of the wastewater is processed in wastewater treatment plants which do not only include commercial wastewater, but also wastewater from hospitals. Three multiresistant pathogens—extended spectrum β-lactamase (ESBL)-harbouring Enterobacteriaceae (Gram negative bacilli), methicillin resistant Staphylococcus aureus (MRSA) and vancomycin resistant Enterococci (VRE)—were chosen for screening in a state of the art wastewater treatment plant in Austria. Over an investigation period of six months all three multiresistant pathogens could be isolated from activated sludge. ESBL was the most common resistance mechanism, which was found in different species of Enterobacteriaceae, and in one Aeromonas spp. Sequencing of ESBL genes revealed the dominance of genes encoding members of CTX-M β-lactamases family and a gene encoding for PER-1 ESBL was detected for the first time in Austria. MRSA and VRE could be isolated sporadically, including one EMRSA-15 isolate. Whereas ESBL is well documented as a surface water contaminant, reports of MRSA and VRE are rare. The results of this study show that these three multiresistant phenotypes were present in activated sludge, as well as species and genes which were not reported before in the region. The ESBL-harbouring Gram negative bacilli were most common.
PLOS ONE | 2017
Doris Haas; Herbert Galler; Carola Fritz; Christina Hasler; Juliana Habib; Franz F. Reinthaler
[This corrects the article DOI: 10.1371/journal.pone.0187039.].
Archive | 2013
Peter Tappler; Felix Twrdik; Franz F. Reinthaler; Doris Haas; Herbert Galler; Markus Gorfer; Elisabeth Schüller; Joseph Strauss; Michael Sulyok; Martina Seibert; Sylvia Klaubauf; Robert A. Samson
Wenn in Innenraumen ein mikrobieller Befall vermutet wird oder wenn schon wahrnehmbare Hinweise auf diesen bestehen (beispielsweise makroskopisch sichtbarer Befall an Wanden oder schimmeltypische Geruche), sollte in jedem Fall eine Ortsbegehung stattfinden, um die Sachlage naher abzuklaren.