| Literature DB >> 34505166 |
Alexander Winckelmann1,2, Dalia Morcillo1,2, Silke Richter2, Sebastian Recknagel2, Jens Riedel2, Jochen Vogl2, Ulrich Panne1,2, Carlos Abad3.
Abstract
The therapeutic dose of lithium (Li) compounds, which are widely used for the treatment of psychiatric and hematologic disorders, is close to its toxic level; therefore, drug monitoring protocols are mandatory. Herein, we propose a fast, simple, and low-cost analytical procedure for the traceable determination of Li concentration in human serum, based on the monitoring of the Li isotope dilution through the partially resolved isotope shift in its electronic transition around 670.80 nm using a commercially available high-resolution continuum source graphite furnace atomic absorption spectrometer. With this technique, serum samples only require acidic digestion before analysis. The procedure requires three measurements-an enriched 6Li spike, a mixture of a certified standard solution and spike, and a mixture of the sample and spike with a nominal 7Li/6Li ratio of 0.82. Lanthanum has been used as an internal spectral standard for wavelength correction. The spectra are described as the linear superposition of the contributions of the respective isotopes, each consisting of a spin-orbit doublet, which can be expressed as Gaussian components with constant spectral position and width and different relative intensity, reflecting the isotope ratio in the sample. Both the spectral constants and the correlation between isotope ratio and relative band intensity have been experimentally obtained using commercially available materials enriched with Li isotopes. The Li characteristic mass (mc) obtained corresponds to 0.6 pg. The procedure has been validated using five human serum certified reference materials. The results are metrologically comparable and compatible to the certified values. The measurement uncertainties are comparable to those obtained by the more complex and expensive technique, isotope dilution mass spectrometry.Entities:
Keywords: Atomic absorption spectrometry; High-resolution continuum source graphite furnace atomic absorption spectrometry; Human serum; Isotope dilution; Lithium
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Year: 2021 PMID: 34505166 PMCID: PMC8748318 DOI: 10.1007/s00216-021-03636-6
Source DB: PubMed Journal: Anal Bioanal Chem ISSN: 1618-2642 Impact factor: 4.142
Fig. 1Use of La as an internal spectral standard in a 7Li-enriched sample
Fig. 2Representation of the isotope dilution high-resolution continuum source graphite furnace atomic absorption spectrometry-based approach for determination of Li by its isotope shift in the atomic spectra. (a) Spectrum of a sample with a naturally occurring isotopic composition (Li inductively coupled plasma standard) added to a 6Li-enriched spike (b). The combination of (a) and (b) produced the spectrum of the mixture (c). On the top left corner of each spectrum, schematic representation of the isotope amount fractions of Li is provided
Results of isotope dilution high-resolution continuum source graphite furnace atomic absorption spectrometry (ID-HR-CS-GFAAS) and certified Li content in human serum certified reference materials (CRMs)
| CRM | Certified Li content | ID-AAS without correction | ID-AAS with La correction | |||||
|---|---|---|---|---|---|---|---|---|
| Molarity | Molarity | Molarity | ||||||
| BCR 304 | 0.985 | 0.029 | 0.92 | 0.09 | 0.69 | 0.976 | 0.022 | 0.25 |
| ERM-DA250a | 0.98* | 0.06* | 0.94 | 0.09 | 0.37 | 0.983 | 0.018 | 0.05 |
| ERM-DA251a | 0.66* | 0.04* | 0.62 | 0.07 | 0.50 | 0.663 | 0.022 | 0.07 |
| Seronorm L1 | 0.73 | 0.15 | 0.82 | 0.06 | 0.57 | 0.830 | 0.016 | 0.68 |
| Seronorm L2 | 1.45 | 0.29 | 1.52 | 0.13 | 0.22 | 1.463 | 0.028 | 0.04 |
The expanded uncertainties are expressed at the 95% confidence level (k = 2)
*Calculated from the certified mass fraction and its density. ERM-DA250a: 1.0294 ± 0.0014 kg L−1, ERM-DA251a: 1.0175 ± 0.0013 kg L−1. Atomic weight of lithium: 6.941 ± 0.003 g mol−1 [25]