Determination of serum calcium levels by 42Ca isotope dilution inductively coupled plasma mass spectrometry

Author:

Han Bingqing12,Ge Menglei13,Zhao Haijian1,Yan Ying1,Zeng Jie1,Zhang Tianjiao1,Zhou Weiyan1,Zhang Jiangtao1,Wang Jing1,Zhang Chuanbao45

Affiliation:

1. National Center for Clinical Laboratories, Beijing Hospital, National Center of Gerontology, Beijing Engineering Research Center of Laboratory Medicine , No. 1 Dahua Road, Dongcheng District , Beijing 100730 , P.R. China

2. Chinese Academy of Medical Sciences and Peking Union Medical College , No. 9 Dongdan Santiao Road , Beijing 100005 , P.R. China

3. Department of Clinical Laboratory, Children’s Hospital, Capital Institute of Pediatrics , No.2 Yabao Road, Chaoyang District , Beijing 10020 , P.R. China

4. National Center for Clinical Laboratories, Beijing Hospital, National Center of Gerontology, Beijing Engineering Research Center of Laboratory Medicine , 1# Dahua Road, Dongcheng District , Beijing , P.R. China

5. Chinese Academy of Medical Sciences and Peking Union Medical College , No. 9 Dongdan Santiao Road , Beijing 100005 , P.R. China , Phone: +8601058115059

Abstract

Abstract Background: Serum calcium level is an important clinical index that reflects pathophysiological states. However, detection accuracy in laboratory tests is not ideal; as such, a high accuracy method is needed. Methods: We developed a reference method for measuring serum calcium levels by isotope dilution inductively coupled plasma mass spectrometry (ID ICP-MS), using 42Ca as the enriched isotope. Serum was digested with 69% ultrapure nitric acid and diluted to a suitable concentration. The 44Ca/42Ca ratio was detected in H2 mode; spike concentration was calibrated by reverse IDMS using standard reference material (SRM) 3109a, and sample concentration was measured by a bracketing procedure. We compared the performance of ID ICP-MS with those of three other reference methods in China using the same serum and aqueous samples. Results: The relative expanded uncertainty of the sample concentration was 0.414% (k=2). The range of repeatability (within-run imprecision), intermediate imprecision (between-run imprecision), and intra-laboratory imprecision were 0.12%–0.19%, 0.07%–0.09%, and 0.16%–0.17%, respectively, for two of the serum samples. SRM909bI, SRM909bII, SRM909c, and GBW09152 were found to be within the certified value interval, with mean relative bias values of 0.29%, −0.02%, 0.10%, and −0.19%, respectively. The range of recovery was 99.87%–100.37%. Results obtained by ID ICP-MS showed a better accuracy than and were highly correlated with those of other reference methods. Conclusions: ID ICP-MS is a simple and accurate candidate reference method for serum calcium measurement and can be used to establish and improve serum calcium reference system in China.

Publisher

Walter de Gruyter GmbH

Subject

Biochemistry (medical),Clinical Biochemistry,General Medicine

Reference13 articles.

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3. Sargent M, Harte R, Harrington C. Guidelines for achieving high accuracy in isotope dilution mass spectrometry (IDMS). RSC Analytical Methods Committee, 2002.

4. Yan Y, Ge M, Ma R, Zhao H, Wang D, Hu C, et al. A candidate reference method for serum calcium measurement by inductively coupled plasma mass spectrometry. Clin Chim Acta 2016;461:141–5.

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