Several functional and biochemical parameters have been proposed as biomarkers of effect of environmental pollutants. A rapid biosensor working with immobilizer human U-937cells was developed and applied to environmentally relevant chemicals with different structures and toxicological pathways, i.e.benzalkonium chloride, clofibri cacid, diclofenac, mercury nitrate, ofloxacin, and sodium dodecyl sulphate. Respiration of cells was relied upon as a comprehensive biochemical effect for screening purposes. Analytical parameter(?ppmO2) and toxicological index (respiratory inhibition, ?%) measured after1h of exposure were utilized for dose-response relationship study. Results (toxicity rating scales based on ?50% and steepness) were compared with those obtained by the same approach previously optimized on Saccharomyces cerevisiae. The toxicity rating scale obtained by the biomarker based on human mitochondrial and cell metabolic activities compared well with previous scale obtained on yeast cells and with available in-vivo acute toxicity indexes; respiration was confirmed as toxicological endpoint reliably measurable by the biosensor.

A new respirometric endpoint-based biosensor to assess the relative toxicity of chemicals on immobilized human cells

Roberto Dragone;
2009

Abstract

Several functional and biochemical parameters have been proposed as biomarkers of effect of environmental pollutants. A rapid biosensor working with immobilizer human U-937cells was developed and applied to environmentally relevant chemicals with different structures and toxicological pathways, i.e.benzalkonium chloride, clofibri cacid, diclofenac, mercury nitrate, ofloxacin, and sodium dodecyl sulphate. Respiration of cells was relied upon as a comprehensive biochemical effect for screening purposes. Analytical parameter(?ppmO2) and toxicological index (respiratory inhibition, ?%) measured after1h of exposure were utilized for dose-response relationship study. Results (toxicity rating scales based on ?50% and steepness) were compared with those obtained by the same approach previously optimized on Saccharomyces cerevisiae. The toxicity rating scale obtained by the biomarker based on human mitochondrial and cell metabolic activities compared well with previous scale obtained on yeast cells and with available in-vivo acute toxicity indexes; respiration was confirmed as toxicological endpoint reliably measurable by the biosensor.
2009
Istituto dei Sistemi Complessi - ISC
Biosensors
Biomarker
Mitochondrial dysfunction
Toxicity test
Human cells
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/224639
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