Steroid hormone concentrations in dried blood spots: A comparison between capillary and venous blood samples.

IF 3.2 3区 医学 Q2 MEDICAL LABORATORY TECHNOLOGY Clinica Chimica Acta Pub Date : 2025-02-01 Epub Date: 2024-12-17 DOI:10.1016/j.cca.2024.120099
Anouk Olthof, Vera H de Kleijne, Anita Boelen, Annemieke C Heijboer
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Abstract

Background: An important aspect of the shift towards dried blood spots (DBS) as a sample matrix for laboratory measurements, is the availability of robust liquid chromatography-tandem mass spectrometry (LC-MS/MS) methods that can reliably quantify analyte concentrations in DBS. The development and validation of these LC-MS/MS methods, however, concerns an extensive process, for which large amounts of DBS samples are required. DBS are usually obtained from capillary blood samples, but they can also be prepared from venous (residual) blood samples, which are widely available in clinical laboratories. Therefore, we aimed to determine whether DBS prepared from (residual) venous blood samples, collected in EDTA blood tubes, can be used for future development and validation of LC-MS/MS methods to quantify steroid hormones in DBS.

Methods: Capillary DBS and venous blood samples (EDTA tube and tube without additives) were collected from twenty healthy volunteers (12F/8M). From both venous blood samples, DBS were prepared volumetrically. Samples were analyzed using in-house developed LC-MS/MS methods for testosterone, androstenedione, 17-hydroxyprogesterone (17-OHP), cortisol, cortisone, corticosterone, and for dehydroepiandrosterone sulfate (DHEA-S).

Results: DBS made from venous blood collected in EDTA tubes compared with capillary blood showed a correlation coefficient of ≥ 0.89 for all steroid hormones except corticosterone (0.67). DBS made from venous blood collected in tubes without additives showed a strong correlation with both DBS made from venous blood collected in EDTA tubes (≥0.97 for all steroid hormones) and capillary DBS (>0.90) except corticosterone (0.64).

Conclusion: DBS prepared from (residual) venous blood collected in EDTA blood tubes can be used for future development and validation of LC-MS/MS methods to quantify steroid hormones, except for corticosterone, in capillary DBS.

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干血斑中的类固醇激素浓度:毛细管和静脉血样本的比较。
背景:将干血斑(DBS)作为实验室测量的样品基质的一个重要方面是可靠的液相色谱-串联质谱(LC-MS/MS)方法的可用性,该方法可以可靠地定量DBS中的分析物浓度。然而,这些LC-MS/MS方法的开发和验证涉及一个广泛的过程,需要大量的DBS样品。DBS通常从毛细血管血液样本中获得,但也可以从临床实验室广泛使用的静脉(残余)血液样本中制备。因此,我们的目的是确定从EDTA血管中收集的(残余)静脉血样品制备的DBS是否可以用于未来LC-MS/MS方法的开发和验证,以定量DBS中的类固醇激素。方法:采集健康志愿者20例(12F/8M)毛细血管DBS和静脉血(EDTA管和无添加剂管)。从两种静脉血样本中,定量制备DBS。样品采用自行开发的LC-MS/MS方法分析睾酮、雄烯二酮、17-羟基孕酮(17-OHP)、皮质醇、可的松、皮质酮和硫酸脱氢表雄酮(DHEA-S)。结果:EDTA管静脉血与毛细管血DBS的相关系数均为 ≥ ,除皮质酮(0.67)外,其余甾体激素的相关系数均为0.89。无添加剂管静脉血DBS与EDTA管静脉血DBS(所有类固醇激素≥0.97)和除皮质酮(0.64)外的毛细血管DBS(>0.90)均有较强的相关性。结论:EDTA血管中收集的静脉血制备的DBS可用于未来LC-MS/MS方法的开发和验证,用于定量毛细管DBS中除皮质酮外的类固醇激素。
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来源期刊
Clinica Chimica Acta
Clinica Chimica Acta 医学-医学实验技术
CiteScore
10.10
自引率
2.00%
发文量
1268
审稿时长
23 days
期刊介绍: The Official Journal of the International Federation of Clinical Chemistry and Laboratory Medicine (IFCC) Clinica Chimica Acta is a high-quality journal which publishes original Research Communications in the field of clinical chemistry and laboratory medicine, defined as the diagnostic application of chemistry, biochemistry, immunochemistry, biochemical aspects of hematology, toxicology, and molecular biology to the study of human disease in body fluids and cells. The objective of the journal is to publish novel information leading to a better understanding of biological mechanisms of human diseases, their prevention, diagnosis, and patient management. Reports of an applied clinical character are also welcome. Papers concerned with normal metabolic processes or with constituents of normal cells or body fluids, such as reports of experimental or clinical studies in animals, are only considered when they are clearly and directly relevant to human disease. Evaluation of commercial products have a low priority for publication, unless they are novel or represent a technological breakthrough. Studies dealing with effects of drugs and natural products and studies dealing with the redox status in various diseases are not within the journal''s scope. Development and evaluation of novel analytical methodologies where applicable to diagnostic clinical chemistry and laboratory medicine, including point-of-care testing, and topics on laboratory management and informatics will also be considered. Studies focused on emerging diagnostic technologies and (big) data analysis procedures including digitalization, mobile Health, and artificial Intelligence applied to Laboratory Medicine are also of interest.
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