Suitability of Standardized Acute Toxicity Tests for Marine Sediment Assessment: Pharmaceutical Contamination
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  • 作者:L. A. Maranho ; M. C. Garrido-Pérez ; T. A. DelValls…
  • 关键词:Marine sediment ; Benthic organisms ; Short ; term toxicity ; Pharmaceuticals ; Environmental concentrations
  • 刊名:Water, Air, and Soil Pollution
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:226
  • 期:3
  • 全文大小:1,037 KB
  • 参考文献:1. Aguirre-Martínez, GV, Buratti, S, Fabbri, E, DelValls, TA, Martín-Díaz, ML (2013) Using lysosomal membrane stability of haemocytes in Ruditapes philippinarum as a biomarker of cellular stress to assess contamination by caffeine, ibuprofen, carbamazepine and novobiocin. Journal of Environmental Sciences 25: pp. 1408-1418 CrossRef
    2. Aguirre-Martínez, GV, Valls, TA, Martín-Díaz, ML (2013) Early responses measured in the brachyuran crab Carcinus maenas exposed to carbamazepine and novobiocin: application of a 2-tier approach. Ecotoxicology and Environmental Safety 97: pp. 47-58 CrossRef
    3. American Society for Testing and Materials (ASTM) (1993). Standard guide for conducting 10-day static sediment toxicity tests with marine and estuarine amphipods. 1367-2 Publ. E. Philadelphia, 26p.
    4. American Society for Testing and Materials (ASTM) (2000). Standard guide for collection, storage, characterization, and manipulation of sediments for toxicological testing. E1391-94. In: / Annual Book of ASTM Standards, Vol. 11.05, West Conshohocken, PA.
    5. Andreozzi, R, Marotta, R, Pinto, G, Pollio, A (2002) Carbamazepine in water: persistence in the environment, ozonation treatment and preliminary assessment on algal toxicity. Water Research 36: pp. 2869-2877 CrossRef
    6. Atkinson, R, Arey, J (2003) Atmospheric degradation of volatile organic compounds. Chemical Reviews 103: pp. 4605-4638 CrossRef
    7. AZUR Environmental (1998). Microtox M500 manual. Carlsbad, CA, USA.
    8. Barbaglio, A, Sugni, M, Benedetto, C, Bonasoro, F, Schnell, S, Lavado, R, Porte, C (2007) Gametogenesis correlated with steroid levels during the gonadal cycle of the sea urchin Paracentrotus lividus (Echinodermata: Echinoidea). Comparative Biochemistry and Physiology A 147: pp. 466-474 CrossRef
    9. Basallote, MD, Rodríguez-Romero, A, Blasco, J, DelValls, TA, Riba, I (2012) Lethal effects on different marine organisms, associated with sediment-seawater acidification deriving from CO2 leakage. Environmental Science and Pollution Research International 19: pp. 2550-2560 CrossRef
    10. Beausse, J (2004) Selected drugs in solid matrices: a review of environmental determination, occurrence and properties of principal substances. Trend in Analytical Chemistry 23: pp. 753-761 CrossRef
    11. Beiras, R, Durán, I, Bellas, J, Sánchez‐Marín, P (2012) Biological effects of contaminants: Paracentrotus lividus sea urchin embryo test with marine sediment elutriates. ICES Techniques in Marine Environmental Science 51: pp. 13
    12. Bradley, PM, Barber, LB, Kolpin, DW, McMahon, PB, Chapelle, FH (2007) Biotransformation of caffeine, cotinine, and nicotine in stream sediments: implications for use as wastewater indicators. Environmental Toxicology and Chemistry 26: pp. 1116-1121 CrossRef
    13. Brooks, B. W., Dzialowski, E. M., Turner, P. K., Stanley, J. K., Glidewell, E. A. (2003). Pharmaceutical effects on freshwater invertebrates. / Annual Meeting of the American Society of Limnology and Oceanography, Salt Lake City, UT.
    14. Carballeira, C, Ramos-Gómez, J, Martín-Díaz, L, DelValls, TA (2012) Identification of specific malformations of sea urchin larvae for toxicity assessment: application to marine pisciculture effluents. Marine Environmental Research 77: pp. 12-22 CrossRef
    15. Casado-Martínez, MC, Buceta, JL, Forja, JM, DelValls, TA (2006) Inter-laboratory assessment of marine bioassays to evaluate environmental quality of coastal sediments in Spain: I. Exercise description and sediment quality. Ciencias Marinas 32: pp. 121-128
    16. Casado-Martínez, MC, Fernández, N, Lloret, J, Marín, A, Martínez-Gómez, C, Riba, I, Beiras, R, Saco-álvarez, L, DelValls, TA (2006) Interlaboratory assessment of marine bioassays to evaluate the environmental quality of coastal sediments in Spain. III. Bioassay using embryos of the sea urchin Paracentro
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Environment
    Atmospheric Protection, Air Quality Control and Air Pollution
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Terrestrial Pollution
    Hydrogeology
  • 出版者:Springer Netherlands
  • ISSN:1573-2932
文摘
Pharmaceutical products are found in low concentrations constantly released into the environment, which contribute to their persistence. In this study, a battery of recognized short-term bioassays was applied to evaluate the risk assessment of sediment samples spiked with pharmaceutical products: carbamazepine, ibuprofen, fluoxetine, 17α-ethynylestradiol, propranolol, and caffeine, including the environmental concentrations. Two phases of the sediments (elutriate and whole sediment) were evaluated through the determination of seven endpoints: bioluminescence inhibition of the bacteria Vibrio fischeri, mortality rate of the amphipods Ampelisca brevicornis, spermiotoxicity and embryotoxicity of the sea urchins Paracentrotus lividus, and microalgae growth rate of Isochrysis galbana and Tetraselmis chuii. Lethal and sublethal responses were analysed after short-term exposure. Results refuted the fact that Microtox? procedures (SPT and Basic phase) and microalgae and amphipods bioassays tested in this study for the quality assessment of pharmaceutical-spiked sediments were sufficient for the protection of the aquatic environment. Between the bioassays used in the present study, sea urchin tests were the most sensitive endpoints, which embryotoxicity showed more sensitive to evaluate the contamination by pharmaceutical products than the spermiotoxicity bioassay. Sea urchin bioassays are recommendable for the quality assessment of sediment contaminated by pharmaceutical products.

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