4.7 Article

Development of an antibody-free ID-LC MS method for the quantification of procalcitonin in human serum at sub-microgram per liter level using a peptide-based calibration

期刊

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 413, 期 19, 页码 4707-4725

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-021-03361-0

关键词

Procalcitonin; Sepsis; Isotope dilution mass spectrometry; Peptide-based calibration

资金

  1. European Metrology Programme for Innovation and Research (EMPIR) [15HLT07, 18HLT03]
  2. EMPIR programme
  3. European Union
  4. CIFRE scholarship by ANRT (Association Nationale de la Recherche et de la Technologie)
  5. Conseil Regional d'Ile-de-France [10022268]

向作者/读者索取更多资源

An optimized method for quantifying PCT in human serum at sub-microgram per liter level was developed using LC-MS/MS, with linearity established through peptide-based calibration curves and accuracy evaluated using quality control materials. A correction factor was applied to compensate for digestion incompleteness and material loss, enabling accurate quantification with results traceable to SI units. The method showed a twofold lower PCT concentration compared to immunoassay results when applied to serum samples from sepsis patients.
The quantification of low abundant proteins in complex matrices by liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) remains challenging. A measurement procedure based on optimized antibody-free sample preparation and isotope dilution coupled to LC-MS/MS was developed to quantify procalcitonin (PCT) in human serum at sub-microgram per liter level. A combination of sodium deoxycholate-assisted protein precipitation with acetonitrile, solid-phase extraction, and trypsin digestion assisted with Tween-20 enhanced the method sensitivity. Linearity was established through peptide-based calibration curves in the serum matrix (0.092-5.222 mu g/L of PCT) with a good linear fit (R2 >= 0.999). Quality control materials spiked with known amounts of protein-based standards were used to evaluate the method's accuracy. The bias ranged from -2.6 to +4.3%, and the intra-day and inter-day coefficients of variations (CVs) were below 2.2% for peptide-based quality controls. A well-characterized correction factor was determined and applied to compensate for digestion incompleteness and material loss before the internal standards spike. Results with metrological traceability to the SI units were established using standard peptide of well-characterized purity determined by peptide impurity corrected amino acid analysis. The validated method enables accurate quantification of PCT in human serum at a limit of quantification down to 0.245 mu g/L (bias -1.9%, precision 9.1%). The method was successfully applied to serum samples obtained from patients with sepsis. Interestingly, the PCT concentration reported implementing the isotope dilution LC-MS/MS method was twofold lower than the concentration provided by an immunoassay.

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