A dried blood spot assay with UPLC–MS/MS for the simultaneous determination of E6005, a phosphodiesterase 4 inhibitor, and its metabolite in human blood

2018 ◽  
Vol 157 ◽  
pp. 208-216 ◽  
Author(s):  
Kenji Kita ◽  
Takuho Ishii ◽  
Koichiro Hotta ◽  
Yuji Mano
2021 ◽  
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pp. 105637
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Alan L. Vieira ◽  
Edilene C. Ferreira ◽  
Silvana R. Oliveira ◽  
Fernando Barbosa ◽  
José A. Gomes Neto

Heliyon ◽  
2021 ◽  
pp. e07558
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Yahdiana Harahap ◽  
Athalia Theda Tanujaya ◽  
Farhan Nurahman ◽  
Aurelia Maria Vianney ◽  
Denni Joko Purwanto

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Jelena Laketa ◽  
Milan Radovanovic ◽  
Tijana Kojic ◽  
Goran Stojanovic ◽  
Sasa Vukmirovic ◽  
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2010 ◽  
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Maysa Faisal Suyagh ◽  
Godwill Iheagwaram ◽  
Prashant Laxman Kole ◽  
Jeff Millership ◽  
Paul Collier ◽  
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2020 ◽  
Vol 58 (5) ◽  
pp. 817-827 ◽  
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Rosita Zakaria ◽  
Katrina J. Allen ◽  
Jennifer J. Koplin ◽  
Peter Roche ◽  
Ronda F. Greaves

AbstractBackgroundThe current millennium has seen an explosion in vitamin D testing with the overarching aim of requests to clinically stratify patients as replete or deficient in vitamin D. At a population level, dried blood spot (DBS) sampling offers a less invasive and more practical application for assessment of vitamin D status. We have therefore aimed to develop a sensitive and robust DBS vitamin D method that is traceable to serum for use in population-based studies.MethodsBlood spots, calibrators and controls were prepared by punching a 3.2 mm DBS from filter paper and placed into a 96-well micro-plate. The DBS disk was eluted with a combination of water-methanol and internal standard (ISTD) solution followed by supported-liquid extraction and derivatisation. The extract was analysed by liquid-chromatography tandem-mass spectrometry in positive electrospray-ionisation mode with 732.5 > 673.4 and 738.4 > 679.4 m/z ion-transitions for derivatised vitamin D and the ISTD, respectively. Vitamin D results were made traceable to the National Institute of Standards and Technology reference material through the inclusion of Chromsystems vitamin D calibrators.Results25-Hydroxy-vitamin D3 and its related ISTD were detected at a retention time of 7 min. The seven-point calibration-curve consistently demonstrated a coefficient of determination of 0.99 with an experimentally determined reportable range of 0.5–376 nmol/L. Method validation studies using DBS samples demonstrated 12.9% between-assay imprecision at 45 nmol/L, 84% average recovery and high correlation with plasma vitamin D (correlation coefficient = 0.86).ConclusionsWe have successfully developed an analytical method for vitamin D quantitation from DBSs which will be applied to our population-based vitamin D research study. This approach improves traceability of DBS results and potentially could be used broadly for other DBS measurands that require comparison to serum/plasma for their interpretation.


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