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  • P-ISSN 2233-4203
  • E-ISSN 2093-8950

Screening Analysis of 10 Adrenal Steroids by Matrix-Assisted Laser Desorption Ionization-Tandem Mass Spectrometry

Mass Spectrometry Letters / Mass Spectrometry Letters, (P)2233-4203; (E)2093-8950
2011, v.2 no.3, pp.69-72
https://doi.org/10.5478/MSL.2011.2.3.069
Sun Ju Kim (Korea Institute of Science and Technolog)
Hyun-Jin Jung (Korea Institute of Science and Technolog)
Bong Chul Chung (Korea Institute of Science and Technolog)
Man Ho Choi (Korea Institute of Science and Technology)
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Abstract

Defective synthesis of the steroid hormones by the adrenal cortex has profound effects on human development andhomeostasis. Due to the time-consuming chromatography procedure combined with mass spectrometry, the matrix-assisted laserdesorption ionization method coupled to the linear ion-trap tandem mass spectrometry (MALDI-LTQ-MS/MS) was developedfor quantitative analysis of 10 adrenal steroids in human serum. Although MALDI-MS can be introduced for its applicability asa high-throughput screening method, it has a limitation on reproducibility within and between samples, which renders poorreproducibility for quantification. For quantitative MALDI-MS/MS analysis, the stable-isotope labeled internal standards wereused and the conditions of crystallization were tested. The precision and accuracy were 3.1~35.5% and 83.8~138.5%, respectively,when a mixture of 10 mg/mL α-cyano-4-hydroxycinnamic acid in 0.2% TFA of 70% acetonitrile was used as the MALDImatrix. The limit of quantification ranged from 5 to 340 ng/mL, and the linearity as a correlation coefficient was higher than0.988 for all analytes in the calibration range. Clinical applications include quantitative analyses of patients with congenital adrenalhyperplasia. The devised MALDI-MS/MS technique could be successfully applied to diagnosis of clinical samples.

keywords
Adrenal steroid, Congenital adrenal hyperplasia, MALDI-MS, Newborn screening


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투고일Submission Date
2011-09-03
수정일Revised Date
2011-09-13
게재확정일Accepted Date
2011-09-13
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