Comparing plasma, serum and whole blood indium concentrations from workers at an indium-tin oxide (ITO) production facility.

Harvey, R Reid; Virji, M Abbas; Edwards, Nicole T; Cummings, Kristin J · Occup Environ Med · 2016

cross_sectional · Level IV

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Abstract

Occupational exposure to indium compounds including indium-tin oxide (ITO) can result in potentially fatal indium lung disease. We compared plasma, serum and whole blood indium concentrations (In<sub>P</sub>, In<sub>S</sub> and In<sub>B</sub>) from workers at a single ITO production facility to assess the comparability of these matrices used for biological monitoring of indium exposure. In<sub>P</sub>, In<sub>S</sub> and In<sub>B</sub> were measured using inductively coupled mass spectrometry from consenting workers at an ITO production facility with specimen collection occurring during June-July 2014. Matched pairs from workers were assessed to determine the matrix relationships using the Pearson correlation, paired t-tests, per cent difference, linear regression and κ statistics. Indium matrices were collected from 80 workers. Mean (SD) In<sub>P</sub>, In<sub>S</sub> and In<sub>B</sub> were 3.48 (3.84), 3.90 (4.15) and 4.66 (5.32) mcg/L, respectively. The In<sub>S</sub>-In<sub>P</sub> difference was 14%; In<sub>S</sub> was higher in all but two workers. In<sub>P</sub> and In<sub>S</sub> were highly correlated (r=>0.99). The In<sub>B</sub>-In<sub>S</sub> difference was 19%; In<sub>B</sub> was higher in 85% of workers. The In<sub>B</sub>-In<sub>P</sub> difference was 34%; In<sub>B</sub> was higher in 66% of workers. In<sub>B</sub> was highly correlated with both In<sub>P</sub> and In<sub>S</sub> (r=0.97 and 0.96, respectively). κ Statistics were 0.84, 0.83 and 0.82 for In<sub>P</sub>, In<sub>S</sub> and In<sub>B</sub>, respectively, for individuals with each matrix ≥1 mcg/L (p<0.01). While all matrices were highly correlated, we encourage the use of In<sub>P</sub> and In<sub>S</sub> to reliably compare studies across different populations using different matrices. The higher per cent difference and increased variability of In<sub>B</sub> may limit its utility in comparisons with In<sub>P</sub> and In<sub>S</sub> in different populations.

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