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Nanomaterials in the aquatic environment: A European Union-United States perspective on the status of ecotoxicity testing, research priorities, and challenges ahead. | LitMetric

AI Article Synopsis

  • The European Union-United States Communities of Research, established in 2012, aims to improve collaborative efforts in nanotechnology environmental health and safety (nanoEHS) by creating standardized research methods.
  • This Focus article reviews current knowledge about the impact of nanomaterials (NMs) in aquatic environments, highlighting challenges like measuring toxicity, bioaccumulation, and the effectiveness of existing test protocols.
  • The authors emphasize the need to investigate the ecological impacts of various forms of NMs, urging research on topics such as NM characterization, transformation in the environment, alternative exposure assessment methods, and the development of realistic bioassays to enhance ecological risk assessments.

Article Abstract

The European Union-United States Communities of Research were established in 2012 to provide a platform for scientists to develop a "shared repertoire of protocols and methods to overcome nanotechnology environmental health and safety (nanoEHS) research gaps and barriers" (www.us-eu.org/). Based on work within the Ecotoxicology Community of Research (2012-2015) the present Focus article provides an overview of the state of the art of nanomaterials (NMs) in the aquatic environment by addressing different research questions, with a focus on ecotoxicological test systems and the challenges faced when assessing NM hazards (e.g., uptake routes, bioaccumulation, toxicity, test protocols, and model organisms). The authors' recommendation is to place particular importance on studying the ecological effects of aged/weathered NMs, as-manufactured NMs, and NMs released from consumer products in addressing the following overarching research topics: 1) NM characterization and quantification in environmental and biological matrices; 2) NM transformation in the environment and consequences for bioavailability and toxicity; 3) alternative methods to assess exposure; 4) influence of exposure scenarios on bioavailability and toxicity; 5) development of more environmentally realistic bioassays; and 6) uptake, internal distribution, and depuration of NMs. Research addressing these key topics will reduce uncertainty in ecological risk assessment and support the sustainable development of nanotechnology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4992942PMC
http://dx.doi.org/10.1002/etc.3385DOI Listing

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