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Determination of hemolysis index thresholds for biochemical tests on Siemens Advia 2400 chemistry analyzer

机译:西门子促进2400化学分析仪对生物化学检验的溶血指数阈值的​​测定

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Background In vitro hemolysis is still the most common source of pre‐analytical nonconformities. This study aimed to investigate the hemolytic effects on commonly used biochemical tests as well as to determine the hemolysis index (HI) thresholds on Siemens Advia 2400 chemistry analyzer. Methods Peripheral blood samples were collected from forty healthy volunteers. Hemolysis was achieved using syringes. Five hemolysis levels were produced including the no hemolysis group, slight hemolysis group, mild hemolysis group, moderate hemolysis group, and heavy hemolysis group. We then used the bias from baseline (no hemolysis) and HI to construct regression functions. The HI corresponding to the bias limits was considered as HI thresholds. We chose the total allowable error (TAE) as the bias limit. Results Of the twenty‐eight analytes, ten analytes had clinical significance. Creatine kinase‐MB, creatine kinase, potassium, aspartate aminotransferase, and hydroxybutyrate dehydrogenase were all positively affected; the corresponding HI threshold was 45.2, 99.96, 4.07, 10.16, and 7.94, respectively. Lactate dehydrogenase was also positively interfered, but we failed to calculate the HI threshold. Total bile acid, uric acid, and sodium were all negatively affected, and the HI threshold was 42.23, 500 and 501.8, respectively. Glucose was also negatively interfered, but it failed to achieve the HI threshold. Conclusions When the HI value was higher than its threshold, the corresponding analyte was considered inappropriate for reporting. The implementation of the assay‐specific HI thresholds could provide an accurate method to identify analytes interfered by hemolysis, which would improve clinical interpretations and further boost laboratory quality by reducing errors associated with hemolysis.
机译:体外溶血中的背景仍然是预分析非圆形的最常见来源。本研究旨在探讨对常用生化试验的溶血作用,以及确定西门子Advia 2400化学分析仪上的溶血指数(HI)阈值。方法从四十个健康的志愿者收集外周血样品。使用注射器实现溶血。产生五种溶血水平,包括无溶血基,轻微溶血基,轻度溶血基,中等溶血基团和重溶血基团。然后,我们使用基线(无溶血)和致电的偏差来构建回归函数。对应于偏置限制的HI被认为是Hi阈值。我们选择了总允许的错误(TAE)作为偏置限制。 28分析物的结果,十个分析物具有临床意义。肌酸激酶-MB,肌酸激酶,钾,天冬氨酸氨基转移酶和羟丁丁脱氢酶均受积极影响;相应的HI阈值分别为45.2,99.96,4.07,10.16和7.94。乳酸脱氢酶也被呈正干扰,但我们未能计算HI阈值。总胆汁酸,尿酸和钠都受到负面影响,并且Hi阈值分别为42.23,500和501.8。葡萄糖也受到负面干扰,但它未能达到HI阈值。结论当Hi值高于其阈值时,相应的分析物被认为不适当地报告。测定特异性HI阈值的实施可以提供一种准确的方法,以鉴定受溶血干扰的分析物,这将通过减少与溶血相关的误差来改善临床解释和进一步提高实验室质量。

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