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实验室和便携式衰减全反射红外光谱法在快速定量测定羊驼血清免疫球蛋白G中的应用。

Application of laboratory and portable attenuated total reflectance infrared spectroscopic approaches for rapid quantification of alpaca serum immunoglobulin G.

作者信息

Elsohaby Ibrahim, Burns Jennifer B, Riley Christopher B, Shaw R Anthony, McClure J Trenton

机构信息

Department of Health Management, Atlantic Veterinary College, University of Prince Edward Island, Charlottetown, Prince Edward Island, Canada.

Department of Animal Medicine, Division of Infectious Diseases, Faculty of Veterinary Medicine, Zagazig University, Zagazig City, Sharkia Province, Egypt.

出版信息

PLoS One. 2017 Jun 26;12(6):e0179644. doi: 10.1371/journal.pone.0179644. eCollection 2017.

Abstract

The objective of this study was to develop and compare the performance of laboratory grade and portable attenuated total reflectance infrared (ATR-IR) spectroscopic approaches in combination with partial least squares regression (PLSR) for the rapid quantification of alpaca serum IgG concentration, and the identification of low IgG (<1000 mg/dL), which is consistent with the diagnosis of failure of transfer of passive immunity (FTPI) in neonates. Serum samples (n = 175) collected from privately owned, healthy alpacas were tested by the reference method of radial immunodiffusion (RID) assay, and laboratory grade and portable ATR-IR spectrometers. Various pre-processing strategies were applied to the ATR-IR spectra that were linked to corresponding RID-IgG concentrations, and then randomly split into two sets: calibration (training) and test sets. PLSR was applied to the calibration set and calibration models were developed, and the test set was used to assess the accuracy of the analytical method. For the test set, the Pearson correlation coefficients between the IgG measured by RID and predicted by both laboratory grade and portable ATR-IR spectrometers was 0.91. The average differences between reference serum IgG concentrations and the two IR-based methods were 120.5 mg/dL and 71 mg/dL for the laboratory and portable ATR-IR-based assays, respectively. Adopting an IgG concentration <1000 mg/dL as the cut-point for FTPI cases, the sensitivity, specificity, and accuracy for identifying serum samples below this cut point by laboratory ATR-IR assay were 86, 100 and 98%, respectively (within the entire data set). Corresponding values for the portable ATR-IR assay were 95, 99 and 99%, respectively. These results suggest that the two different ATR-IR assays performed similarly for rapid qualitative evaluation of alpaca serum IgG and for diagnosis of IgG <1000 mg/dL, the portable ATR-IR spectrometer performed slightly better, and provides more flexibility for potential application in the field.

摘要

本研究的目的是开发并比较实验室级和便携式衰减全反射红外(ATR-IR)光谱方法结合偏最小二乘回归(PLSR)用于快速定量羊驼血清IgG浓度以及识别低IgG(<1000mg/dL)的性能,低IgG与新生儿被动免疫转移失败(FTPI)的诊断相符。从私人饲养的健康羊驼采集血清样本(n = 175),采用放射免疫扩散(RID)测定法的参考方法以及实验室级和便携式ATR-IR光谱仪进行检测。对与相应RID-IgG浓度相关的ATR-IR光谱应用了各种预处理策略,然后随机分为两组:校准(训练)组和测试组。将PLSR应用于校准组并建立校准模型,测试组用于评估分析方法的准确性。对于测试组,通过RID测定的IgG与实验室级和便携式ATR-IR光谱仪预测的IgG之间的Pearson相关系数为0.91。基于实验室和便携式ATR-IR检测的参考血清IgG浓度与两种基于红外的方法之间的平均差异分别为120.5mg/dL和71mg/dL。采用<1000mg/dL的IgG浓度作为FTPI病例的切点,通过实验室ATR-IR检测识别低于该切点的血清样本的敏感性、特异性和准确性分别为86%、100%和98%(在整个数据集中)。便携式ATR-IR检测的相应值分别为95%、99%和99%。这些结果表明,两种不同的ATR-IR检测在快速定性评估羊驼血清IgG以及诊断IgG<1000mg/dL方面表现相似,便携式ATR-IR光谱仪表现稍好,并且在现场潜在应用中提供了更大的灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f714/5484476/562b7525a008/pone.0179644.g001.jpg

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