Toxicity of three types of arsenolipids: species-specific effects in Caenorhabditis elegans

Author:

Bornhorst Julia1,Ebert Franziska2,Meyer Sören2,Ziemann Vanessa2,Xiong Chan3,Guttenberger Nikolaus3,Raab Andrea4ORCID,Baesler Jessica12,Aschner Michael56,Feldmann Jörg4ORCID,Francesconi Kevin3,Raber Georg3,Schwerdtle Tanja2ORCID

Affiliation:

1. Food Chemistry, Faculty of Mathematics and Natural Sciences, University of Wuppertal, Gaußstr. 20, 42119 Wuppertal, Germany

2. Institute of Nutritional Science, University of Potsdam, Arthur-Scheunert-Allee 114-116, 14558 Nuthetal, Germany

3. Institute of Chemistry – Analytical Chemistry, University of Graz, Universitätsplatz 1, 8010 Graz , Austria

4. TESLA (Trace Element Speciation Laboratory), Department of Chemistry, University of Aberdeen, Aberdeen Scotland AB24 3UE, UK

5. Department of Molecular Pharmacology, Neuroscience, and Pediatrics, Albert Einstein College of Medicine, 1300 Morris Park Avenue, 10461 Bronx, NY, USA

6. I. M. Sechenov First Moscow State Medical University (Sechenov University), Moscow, Russia

Abstract

Abstract Although fish and seafood are well known for their nutritional benefits, they contain contaminants that might affect human health. Organic lipid-soluble arsenic species, so called arsenolipids, belong to the emerging contaminants in these food items; their toxicity has yet to be systematically studied. Here, we apply the in vivo model Caenorhabditis elegans to assess the effects of two arsenic-containing hydrocarbons (AsHC), a saturated arsenic-containing fatty acid (AsFA), and an arsenic-containing triacylglyceride (AsTAG) in a whole organism. Although all arsenolipids were highly bioavailable in Caenorhabditis elegans, only the AsHCs were substantially metabolized to thioxylated or shortened metabolic products and induced significant toxicity, affecting both survival and development. Furthermore, the AsHCs were several fold more potent as compared to the toxic reference arsenite. This study clearly indicates the need for a full hazard identification of subclasses of arsenolipids to assess whether they pose a risk to human health.

Funder

Deutsche Forschungsgemeinschaft

Austrian Science Fund

National Institute of Environmental Health Sciences

Publisher

Oxford University Press (OUP)

Subject

Metals and Alloys,Biochemistry,Biomaterials,Biophysics,Chemistry (miscellaneous)

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