Pregled bibliografske jedinice broj: 963671
Level of antibiotic resistance gene contamination as a result of discharge of pharmaceutical effluents
Level of antibiotic resistance gene contamination as a result of discharge of pharmaceutical effluents // Programme and Abstracts of 6th Central European Symposium on Antimicrobials and Antimicrobial Resistance CESAR 2018 / Abram, Maja ; Bielen, Ana ; Kifer, Domagoj ; Maravić Vlahoviček, Gordana ; Šegvić Klarić, Maja (ur.).
Zagreb: Hrvatsko mikrobiološko društvo, 2018. str. 93-93 (poster, međunarodna recenzija, sažetak, znanstveni)
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Naslov
Level of antibiotic resistance gene contamination as a result of discharge of pharmaceutical effluents
Autori
Šimatović, Ana ; Milaković, Milena ; Sviličić Petrić, Ines ; Gonzalez Plaza, Juan Jose ; Udiković Kolić, Nikolina
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Programme and Abstracts of 6th Central European Symposium on Antimicrobials and Antimicrobial Resistance CESAR 2018
/ Abram, Maja ; Bielen, Ana ; Kifer, Domagoj ; Maravić Vlahoviček, Gordana ; Šegvić Klarić, Maja - Zagreb : Hrvatsko mikrobiološko društvo, 2018, 93-93
ISBN
978-953-7778-16-3
Skup
6th Central European Symposium on Antimicrobials and Antimicrobial Resistance (CESAR 2018)
Mjesto i datum
Sveti Martin na Muri, Hrvatska, 19.09.2018. - 22.09.2018
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Antibiotic resistance ; Macrolide-resistance genes ; Pharmaceutical effluents ; Sediments
(Antibiotic resistance ; Antibiotic resistance genes ; Pharmaceutical effluents ; Sediments)
Sažetak
Discharge of effluents from pharmaceutical industries pose a significant public health concern as they could promote spread of antibiotic resistance ; however, effects of such discharges were rarely studied. In our previous studies we have showed that effluents from two Croatian pharmaceutical industries are contaminated with high levels of antibiotics and culturable antibiotic resistant bacteria. We also identified antibiotic resistance genes (ARGs) present in these effluents and sediments at the discharge sites by functional metagenomic approach. In this study, we used quantitative PCR to examine the relative abundance of ARGs (ratio of ARGs/16S rRNA gene) and class 1 integron-integrase gene (intl1) in sediments of receiving water bodies during winter and summer season 2016. In Industry 1 research area (azithromycin production), the relative abundances of intl1 gene and all 4 targeted macrolide-resistance genes (msrE, mphG, mefC and ermB) were significantly increased in river sediments at different locations downstream the discharge site compared with reference upstream location (p <0.05 ; ANOVA) during both seasons. In Industry 2 research area (formulation of veterinary antibiotics), the relative abundances of genes conferring resistance to sulfonamides (sul2), tetracyclines (tetC and tet39), β-lactams (blaOXA1 and blaOXA10) and trimethoprim (dfr14) were enriched in receiving stream sediments as compared with the upstream sediment, but only in the summer samples. Regarding intI gene, no significant differences were observed in relative abundances between upstream and downstream locations neither in winter nor summer samples. Overall, our results show that freshwater sediments impacted by pharmaceutical effluents are an important reservoirs for ARGs, which could potentially be transferred to susceptible pathogens at these sites.
Izvorni jezik
Engleski
Znanstvena područja
Interdisciplinarne prirodne znanosti
POVEZANOST RADA
Projekti:
UIP-2014-09-9350 - Istraživanje utjecaja otpadnih voda iz farmaceutskih industrija na sastav i profil antibiotičke rezistencije izloženih mirkobnih zajednica u slatkovodnim sedimentima (WINAR) (Udiković Kolić, Nikolina, HRZZ - 2014-09) ( CroRIS)
Ustanove:
Institut "Ruđer Bošković", Zagreb
Profili:
Nikolina Udiković Kolić (autor)
Milena Milaković Obradović (autor)
Ana Šimatović (autor)
Juan Jose Gonzalez Plaza (autor)
Ines Sviličić Petrić (autor)