Bajaj Amol O, Parker Rebecca, Farnsworth Candice, Law Christian, Johnson-Davis Kamisha L
ARUP Institute for Clinical and Experimental Pathology, Salt Lake City, UT, United States.
ARUP Laboratories, Salt Lake City, UT, United States.
J Mass Spectrom Adv Clin Lab. 2022 Dec 17;27:33-39. doi: 10.1016/j.jmsacl.2022.12.005. eCollection 2023 Jan.
Analytical methods to measure trace and toxic elements are essential to evaluate exposure and nutritional status. A ten-element panel was developed and validated for clinical testing in whole blood. Retrospective data analysis was conducted on patient samples performed at ARUP Laboratories.
A method was developed and validated to quantify ten elements in whole blood by ICP-MS. Fifty microliters of sample were extracted with 950 μL of diluent containing 1 % ammonium hydroxide, 0.1 % Triton X-100, 1.75 % EDTA along with spiked internal standards. Four calibrators were used for each element and prepared in goat blood to match the patient specimen matrix. Samples were analyzed with an Agilent 7700 ICP-MS with a Cetac MVX 7100 μL Workstation autosampler.
The assay was linear for all elements with inter- and intra-assay imprecision less than or equal to 11% CV at the low end of the analytical measurement range (AMR) and less than or equal to 4% CV at the upper end of the AMR for all elements. Accuracy was checked with a minimum of 40 repeat patient samples, proficiency testing samples, and matrix-matched spikes. The linear slopes for the ten elements ranged from 0.94 to 1.03 with intercepts below the AMR and R ranging from 0.97 to 1.00.
The multi-element panel was developed to analyze ten elements in whole blood to unify the sample preparation and increase batch run efficiency. The improved analytical method utilized matrix-matched calibrators for accurate quantification to meet regulatory requirements. The assay was validated according to guidelines for CLIA-certified clinical laboratories and was suitable for clinical testing to assess nutritional status and toxic exposure.
测量痕量和有毒元素的分析方法对于评估暴露情况和营养状况至关重要。已开发并验证了一个包含十种元素的检测组合,用于全血的临床检测。对在ARUP实验室进行检测的患者样本进行了回顾性数据分析。
开发并验证了一种通过电感耦合等离子体质谱法(ICP-MS)对全血中的十种元素进行定量的方法。取50微升样本,用950微升含有1%氢氧化铵、0.1% Triton X-100、1.75%乙二胺四乙酸(EDTA)以及添加的内标的稀释剂进行提取。每种元素使用四个校准品,并在山羊血中制备以匹配患者标本基质。使用配备Cetac MVX 7100微升工作站自动进样器的安捷伦7700 ICP-MS对样本进行分析。
该检测方法对所有元素均呈线性,在分析测量范围(AMR)低端的批内和批间不精密度小于或等于11%变异系数(CV),在AMR高端所有元素的不精密度小于或等于4% CV。通过至少40个重复的患者样本、能力验证样本和基质匹配加标样本检查准确性。十种元素的线性斜率范围为0.94至1.03,截距低于AMR,相关系数(R)范围为0.97至1.00。
开发了多元素检测组合以分析全血中的十种元素,从而统一样本制备并提高批量运行效率。改进的分析方法采用基质匹配校准品进行准确定量,以满足监管要求。该检测方法根据临床实验室改进修正案(CLIA)认证临床实验室的指南进行了验证,适用于临床检测以评估营养状况和有毒物质暴露情况。