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Temperature is an important ecological condition, and sudden temperature changes in soil can induce stress in soil-dwelling invertebrates. Soil animals can move to more favorable habitats and/or adapt physiologically to a stressful environment. Hyperthermic conditions will impact gene expression as ...
ORGANISM(S): Folsomia candida 
Environmental pollution is a worldwide problem, and metals are the largest group of contaminants in soil. Microarray toxicogenomic studies with ecologically relevant organisms such as springtails, supplement traditional ecotoxicological research, but are presently rather descriptive. Classifier anal...
ORGANISM(S): Folsomia candida 
Polycyclic aromatic hydrocarbons are common pollutants in soil, have negative effects on soil ecosystems, and are potentially carcinogenic. The Springtail (Collembola) Folsomia candida is often used as an indicator species for soil toxicity. Here we report a toxicogenomic study that translates the e...
ORGANISM(S): Folsomia candida 
Folsomia candida (Collembola) is able to survive dryer conditions by absorbing water vapour from its surroundings. To unravel the genomic responses underlying this intriguing water-absorption mechanism, we exposed the species to 98.2% Relative Humidity (eight, 27, 53 and 174 hours respectively) and ...
ORGANISM(S): Folsomia candida 
Ecotoxicological tests may be biased by the use of laboratory strains that usually contain very limited genetic diversity. It is therefore essential to study how genetic variation influences stress tolerance relevant for toxicity outcomes. To that end we studied sensitivity to cadmium in two distinc...
ORGANISM(S): Folsomia candida 
Human monocyte-derived DC were cultured at a density of 0.5x10E6 cells/ml in RPMI-1640 supplemented with 10% FCS, 1% Pen/Strep, 10 ng/ml GM-CSF and 10 ng/ml IL4. At day 7, they were stimulated or not with 500 ng/ml LPS. Cells were collected at day 10. Whole cell lystaes from 2x10E8 cells were used f...
ORGANISM(S): Homo Sapiens 
2018-11-30 | MSV000083175 | MassIVE
Mouse bone marrow derived dendritic cells were generated by culturing bone marrow cells at a density of 0.5x10E6 cells/ml in RPMI-1640 supplemented with 5% FCS, 1% Pen/Strep, 5microM 2-mercaptoethanol, 20ng/ml GM-CSF. At day 7 dendritic cells were stimulated or not with 500 ng/ml LPS, and collected ...
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2018-11-30 | MSV000083176 | MassIVE
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