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首页> 外文期刊>Clinica chimica acta: International journal of clinical chemistry and applied molecular biology >Individualized correction of neuron-specific enolase (NSE) measurement in hemolyzed serum samples
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Individualized correction of neuron-specific enolase (NSE) measurement in hemolyzed serum samples

机译:溶血血清样品中神经元特异性烯醇化酶(NSE)测量的个体化校正

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摘要

Background: Accuracy of serum neuron-specific enolase (NSE) measurement is paramount, particularly in the context of neurological outcome prognostication. However, NSE measurements are compromised by even slight hemolysis, as it is abundant in red blood cells (RBCs). We derived and validated an individualized hemolysis correction equation in an attempt to reduce the current rejection rate of 14% at our institution. Methods: Intracellular NSE was measured in RBC lysates to determine concentration variability. A correction equation was derived, accounting for both RBC-derived NSE false-elevation and hemoglobin-derived signal quenching. The performance of this individualized correction was evaluated in intentionally hemolyzed samples and accuracy was compared to a generalized correction. Results: Significant inter-individual variability of RBC NSE was observed, with an almost two-fold range (15.7-28.5ng NSE/mg Hb, p0.001); intra-individual variability was insignificant. The individualized hemolysis correction equation derived: NSEcorr=NSEmeas-(Hbserum)(NSERBCs/Hb)+0.0844(Hbserum)+1.1 corrected 95% of the intentionally hemolyzed samples to within ±5ng/ml of corresponding baseline NSE concentrations, compared to 74% using a generalized formula. Conclusions: The individualized hemolysis correction provides increased accuracy in the estimation of true serum NSE concentrations for hemolyzed samples, compared to a generalized approach, by accounting for inter-individual RBC NSE variability. Incorporating this correction should reduce sample rejection rates and overall health care costs.
机译:背景:血清神经元特异性烯醇化酶(NSE)测量的准确性至关重要,尤其是在神经系统预后的情况下。但是,NSE的测量甚至会因轻微的溶血而受损,因为它在红细胞(RBC)中含量很高。我们推导并验证了一个个性化的溶血校正方程,以期在我们的机构中​​将目前的排斥率降低14%。方法:在RBC裂解液中测定细胞内NSE,以测定浓度变异性。得出了一个校正方程,说明了RBC衍生的NSE假高和血红蛋白衍生的信号猝灭。在故意溶血的样品中评估了这种个性化校正的性能,并将准确性与广义校正进行了比较。结果:观察到RBC NSE的个体间显着差异,几乎是两倍(15.7-28.5ng NSE / mg Hb,p <0.001);个体内部变异性微不足道。得出的个体化溶血校正方程式:NSEcorr = NSEmeas-(Hbserum)(NSERBCs / Hb)+0.0844(Hbserum)+1.1将95%的故意溶血样品校正为相应基线NSE浓度的±5ng / ml以内使用广义公式。结论:与通用方法相比,通过考虑个体之间的RBC NSE变异性,与常规方法相比,个性化溶血校正可以提高估计溶血样品的真实NSE浓度的准确性。纳入此校正应降低样品拒绝率和整体医疗保健成本。

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