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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:溶血性血清样品中神经元特异性烯醇酶(NSE)测量的个性化校正

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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 he-molysis 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 (15.7-28.5 ng NSE/mg Hb, p < 0.001); intra-individual variability was insignificant. The individualized hemolysis correction equation derived: NSE_(corr) = NSE_(meas) - (Hb_(serum))(NSE_(RBCs/hB)) + 0.0844(Hb_(serum)) + 1.1 corrected 95% of the intentionally hemolyzed samples to within ?5 ng/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酶(NSE)测量的准确性至关重要,特别是在神经政治结果预后的背景下。然而,NSE测量甚至轻微溶血损害,因为它在红细胞(RBCS)中丰富。我们得出并验证了个性化的He-Moleysis校正方程,以试图在我们机构降低当前的拒绝率为14%。方法:在RBc裂解物中测量细胞内NSE以确定浓度变异性。导出校正方程,占RBC衍生的NSE假升高和血红蛋白衍生信号淬火的算法。在有意的溶血样品中评估了这种个性化校正的性能,并将精度与广义矫正进行了比较。结果:观察到RBC NSE的显着性间可变异性,具有几乎是两倍的范围(15.7-28.5nse / mg Hb ,p <0.001);个体内变异性是微不足道的。衍生的个体化溶解校正方程:nse_(corr)= nse_(meS) - (hb_(血清))(nse_(rbcs / hb))+ 0.0844(hb_(血清))+ 1.1校正了95%的有意溶血样品在α5ng/ ml的相应基线NSE浓度内,与使用通用式相比的74%。结论:与普遍的方法,通过会计,个体化溶解校正在溶血样品的真正血清NSE浓度估计中提供了提高的准确性。对于单独的RBC NSE可变性。纳入此修正应减少样品抑制率和整体医疗费用。

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