Ecotoxicological potential of antibiotic pollution–industrial wastewater: bioavailability, biomarkers, and occurrence in Mytilus galloprovincialis
Environmental pollution by pharmaceutical residues has become a major problem in many countries worldwide. However, little is known about the concentrations of pharmaceuticals in water sources in Tunisia. Residues in the natural environment have been of increasing concern due to their impact on bact...
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| Published in: | Environmental science and pollution research international Vol. 23; no. 15; pp. 15343 - 15350 |
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| Main Authors: | , , , , |
| Format: | Journal Article |
| Language: | English |
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Berlin/Heidelberg
Springer Berlin Heidelberg
01.08.2016
Springer Nature B.V |
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| ISSN: | 0944-1344, 1614-7499 |
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| Abstract | Environmental pollution by pharmaceutical residues has become a major problem in many countries worldwide. However, little is known about the concentrations of pharmaceuticals in water sources in Tunisia. Residues in the natural environment have been of increasing concern due to their impact on bacteria resistance development and toxicity to natural communities and ultimately to public health. In this work, we collected the wastewater sample from a pharmaceutical industry, which specializes in the antibiotics manufacture, during the years 2014–2015. Generally, this effluent is discharged into the marine environment and causes environmental problems. The Mediterranean mussel
Mytilus galloprovincialis
was commonly used as a model organism for its peculiar morphofunctional properties which also make it an excellent marine environmental biomonitoring species. The histological sections of mussel, which are exposed at different dilutions of pharmaceutical wastewater (PW), indicate a large pathological power revealed on the gills. On the other hand, genotoxicity of the studied effluent was evaluated using comet assay for quantification of DNA fragmentation in gill cells. Results show that PW exhibited a statistically significant (
p
< 0.001) genotoxic effect in a dose-dependent manner. However, the toxic effects of PW decreased significantly after its treatment with
Bacillus atrophaeus
. Toxicities can be imputed to the presence of antibiotics. In fact, chemical analysis of the gills of mussel
M. galloprovincialis
using ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) showed the presence of some antibiotic residues. These concentrations decrease to half in mussels treated with PW biodegraded by
B. atrophaeus
. |
|---|---|
| AbstractList | Environmental pollution by pharmaceutical residues has become a major problem in many countries worldwide. However, little is known about the concentrations of pharmaceuticals in water sources in Tunisia. Residues in the natural environment have been of increasing concern due to their impact on bacteria resistance development and toxicity to natural communities and ultimately to public health. In this work, we collected the wastewater sample from a pharmaceutical industry, which specializes in the antibiotics manufacture, during the years 2014–2015. Generally, this effluent is discharged into the marine environment and causes environmental problems. The Mediterranean mussel Mytilus galloprovincialis was commonly used as a model organism for its peculiar morphofunctional properties which also make it an excellent marine environmental biomonitoring species. The histological sections of mussel, which are exposed at different dilutions of pharmaceutical wastewater (PW), indicate a large pathological power revealed on the gills. On the other hand, genotoxicity of the studied effluent was evaluated using comet assay for quantification of DNA fragmentation in gill cells. Results show that PW exhibited a statistically significant (p < 0.001) genotoxic effect in a dose-dependent manner. However, the toxic effects of PW decreased significantly after its treatment with Bacillus atrophaeus. Toxicities can be imputed to the presence of antibiotics. In fact, chemical analysis of the gills of mussel M. galloprovincialis using ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) showed the presence of some antibiotic residues. These concentrations decrease to half in mussels treated with PW biodegraded by B. atrophaeus. Environmental pollution by pharmaceutical residues has become a major problem in many countries worldwide. However, little is known about the concentrations of pharmaceuticals in water sources in Tunisia. Residues in the natural environment have been of increasing concern due to their impact on bacteria resistance development and toxicity to natural communities and ultimately to public health. In this work, we collected the wastewater sample from a pharmaceutical industry, which specializes in the antibiotics manufacture, during the years 2014–2015. Generally, this effluent is discharged into the marine environment and causes environmental problems. The Mediterranean mussel Mytilus galloprovincialis was commonly used as a model organism for its peculiar morphofunctional properties which also make it an excellent marine environmental biomonitoring species. The histological sections of mussel, which are exposed at different dilutions of pharmaceutical wastewater (PW), indicate a large pathological power revealed on the gills. On the other hand, genotoxicity of the studied effluent was evaluated using comet assay for quantification of DNA fragmentation in gill cells. Results show that PW exhibited a statistically significant ( p < 0.001) genotoxic effect in a dose-dependent manner. However, the toxic effects of PW decreased significantly after its treatment with Bacillus atrophaeus . Toxicities can be imputed to the presence of antibiotics. In fact, chemical analysis of the gills of mussel M. galloprovincialis using ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) showed the presence of some antibiotic residues. These concentrations decrease to half in mussels treated with PW biodegraded by B. atrophaeus . |
| Author | Reyns, Tim Zouiten, Amina Van Loco, Joris Mansour, Hedi Ben Beltifa, Asma |
| Author_xml | – sequence: 1 givenname: Amina surname: Zouiten fullname: Zouiten, Amina organization: Research Unit of Analysis and Process Applied to the Environmental –APAE Higher Institute of Applied Sciences and Technology Mahdia, University of Monastir – sequence: 2 givenname: Asma surname: Beltifa fullname: Beltifa, Asma organization: Research Unit of Analysis and Process Applied to the Environmental –APAE Higher Institute of Applied Sciences and Technology Mahdia, University of Monastir, Laboratory of Chemical Residues and Contaminants, Direction of Food, Medicines and Consumer Safety, Scientific Institute of Public Health – sequence: 3 givenname: Joris surname: Van Loco fullname: Van Loco, Joris organization: Laboratory of Chemical Residues and Contaminants, Direction of Food, Medicines and Consumer Safety, Scientific Institute of Public Health – sequence: 4 givenname: Hedi Ben surname: Mansour fullname: Mansour, Hedi Ben email: hdbenmansour@gmail.com organization: Research Unit of Analysis and Process Applied to the Environmental –APAE Higher Institute of Applied Sciences and Technology Mahdia, University of Monastir, Higher Institute of Applied Sciences and Technology Mahdia “ISSAT”, Monastir University – sequence: 5 givenname: Tim surname: Reyns fullname: Reyns, Tim organization: Laboratory of Chemical Residues and Contaminants, Direction of Food, Medicines and Consumer Safety, Scientific Institute of Public Health |
| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/27109112$$D View this record in MEDLINE/PubMed |
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| Copyright | Springer-Verlag Berlin Heidelberg 2016 Environmental Science and Pollution Research is a copyright of Springer, 2016. |
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| DOI | 10.1007/s11356-016-6713-2 |
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| SubjectTerms | Analytical chemistry Animals Anti-Bacterial Agents - analysis Anti-Bacterial Agents - metabolism Anti-Bacterial Agents - toxicity antibiotic residues Antibiotics Aquatic Pollution Atmospheric Protection/Air Quality Control/Air Pollution Bacillus Bacillus - metabolism Bacillus atrophaeus bacteria Bioassays Bioavailability Biodegradation Biodegradation, Environmental Biomarkers Biomarkers - metabolism Biomonitoring Chemical analysis Chromatography Comet assay DNA Fragmentation dose response Earth and Environmental Science Ecotoxicology Effluents Environment Environmental Chemistry Environmental Health Environmental impact Functional morphology Genotoxicity Gills Gills - drug effects Gills - metabolism Industrial pollution Industrial wastewater Liquid chromatography Male manufacturing Marine environment Mass spectrometry Mass spectroscopy Medical wastes Metabolites Mollusks mussels Mytilus - drug effects Mytilus - genetics Mytilus - metabolism Mytilus galloprovincialis Natural environment Pharmaceutical industry Pharmaceutical industry wastes Pollution Public health Research Article Scientific imaging Statistical analysis Tandem Mass Spectrometry Toxicity Tunisia Waste Water - analysis Waste Water Technology Wastewater Water Management Water Pollutants, Chemical - analysis Water Pollutants, Chemical - metabolism Water Pollutants, Chemical - toxicity Water Pollution Control Water Quality |
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| Title | Ecotoxicological potential of antibiotic pollution–industrial wastewater: bioavailability, biomarkers, and occurrence in Mytilus galloprovincialis |
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