Studies
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Aim: To investigate whether Atlantic cod that feed close to aquatic breeding facilities are affected by chlorpyrifos-methyl. Feeding experiment with chlorpyrifos-methyl, an organophosphorous pesticide detected in plant based salmon feed. Based on previous experiments using salmon.
Doses: 0, 0.5, 5.0, 25 mg/kg) chlorpyrifos-methyl. Duration: 30 days Set-up: Three tanks per treatment (12 in total)
Samples include: Liver, plasma, bile, brain. Analysis include:
- Have RNAseq and metabolomics from 36 ...
Submitter: Marta Eide
Investigation: 1 hidden item
Assays: Chemical analyses, EROD activity, Fish biometrics in vivo Nord, Metabolomics, Plasma parameters, Transcriptomics
Interspecies differences in sensitivity to chemical exposures pose a great challenge in toxicological risk assessments. How an organism copes with chemicals is largely determined by the genes and proteins that collectively function to defend against, detoxify and eliminate chemical stressors. This integrative network includes receptors and transcription factors, biotransformation enzymes, transporters, antioxidants, and metal- and heat-responsive genes, and is collectively known as the chemical ...
Submitter: Sofie Söderström
Investigation: 1 hidden item
Assays: Chemical defensome genes for five fish species, Exposure response of defensome genes, Expression of defensome genes in early development of fish
Location: UiB Date: 8-20 June 2017 Compounds tested: WY-14,643 (PPAR alpha agonist), GW501516 (PPAR beta agonist) No. of test groups: 5 (Control 1: DMSO/saline/PEG, WY-14.643 High (40 mg/kg), WY-14.643 Low (4.0 mg/kg), GW501516 High (4.0 mg/kg), GW501516 Low (0.4 mg/kg)) No. of fish per group: 22
Aim: *To investigate effects on lipid metabolism in Atlantic cod ( Gadus morhua) mediated by peroxisome proliferator-activated receptors (Ppars) by in vivo exposure to two mammalian PPAR agonists.
Submitter: Marta Eide
Investigation: 1 hidden item
Assays: In vivo II - GW and WY Biometric data, Proteomics data, RNA sequencing, Targeted lipidomics, Untargeted lipidomics