TALANTA | 卷:162 |
Analysis of whole human blood for Pb, Cd, Hg, Se, and Mn by ICP-DRC-MS for biomonitoring and acute exposures | |
Article | |
Jones, Deanna R.1  Jarrett, Jeffery M.1  Tevis, Denise S.1  Franklin, Melanie1,2  Mullinix, Neva J.1  Wallon, Kristen L.1  Quarles, C. Derrick, Jr.1,3,4  Caldwell, Kathleen L.1  Jones, Robert L.1  | |
[1] Ctr Dis Control & Prevent, Div Sci Lab, Natl Ctr Environm Hlth, Atlanta, GA 30341 USA | |
[2] Battelle Mem Inst, 2987 Clairmont Rd,Suite 450, Atlanta, GA 30329 USA | |
[3] Oak Ridge Inst Sci & Educ, POB 117, Oak Ridge, TN 37831 USA | |
[4] Appl Spectra Inc, 46665 Fremont Blvd, Fremont, CA 94538 USA | |
关键词: Biomonitoring; Reaction cell; ICP-MS; Whole blood; Blood lead; Manganese; Cadmium; Mercury; Selenium; | |
DOI : 10.1016/j.talanta.2016.09.060 | |
来源: Elsevier | |
【 摘 要 】
We improved our inductively coupled plasma mass spectrometry (ICP-MS) whole blood method [1] for determination of lead (Pb), cadmium (Cd), and mercury (Hg) by including manganese (Mn) and selenium (Se), and expanding the calibration range of all analytes. The method is validated on a PerkinElmer (PE) ELAN (R) DRC II ICP-MS (ICP-DRC-MS) and uses the Dynamic Reaction Cell (DRC) technology to attenuate interfering background ion signals via ion-molecule reactions. Methane gas (CH4) eliminates background signal from Ar-40(2)+ PO to permit determination of Se-80(+), and oxygen gas (O-2) eliminates several polyatomic interferences (e.g. (Ar15N+)-Ar-40, (FeH+)-Fe-54-H-1) on Mn-55(+). Hg sensitivity in DRC mode is a factor of two higher than vented mode when measured under the same DRC conditions as Mn due to collisional focusing of the ion beam. To compensate for the expanded method's longer analysis time (due to DRC mode pause delays), we implemented an SC4-FAST autosampler (ESI Scientific, Omaha, NE), which vacuum loads the sample onto a loop, to keep the sample-to-sample measurement time to less than 5 min, allowing for preparation and analysis of 60 samples in an 8-h work shift. The longer analysis time also resulted in faster breakdown of the hydrocarbon oil in the interface roughing pump. The replacement of the standard roughing pump with a pump using a fluorinated lubricant, Fomblin (R), extended the time between pump maintenance. We optimized the diluent and rinse solution components to reduce carryover from high concentration samples and prevent the formation of precipitates. We performed a robust calculation to determine the following limits of detection (LOD) in whole blood: 0.07 mu g dL(-1) for Pb, 0.10 mu g L-1 for Cd, 0.28 mu g L-1 for Hg, 0.99 mu g L-1 for Mn, and 24.5 mu g L-1 for Se.
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