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Sample processing approach for detection of ricin in surface samples

机译:样品处理方法,用于检测表面样品中的蓖麻植物

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摘要

Abstract With several ricin contamination incidents reported over the past decade, rapid and accurate methods are needed for environmental sample analysis, especially after decontamination. A sample processing method was developed for common surface sampling devices to improve the limit of detection and avoid false negative/positive results for ricin analysis. Potential assay interferents from the sample matrix (bleach residue, sample material, wetting buffer), including reference dust, were tested using a Time-Resolved Fluorescence (TRF) immunoassay. Test results suggested that the sample matrix did not cause the elevated background fluorescence sometimes observed when analyzing post-bleach decontamination samples from ricin incidents. Furthermore, sample particulates (80mg/mL Arizona Test Dust) did not enhance background fluorescence or interfere with ricin detection by TRF. These results suggested that high background fluorescence in this immunoassay could be due to labeled antibody quality and/or quantity issues. Centrifugal ultrafiltration devices were evaluated for ricin concentration as a part of sample processing. Up to 30-fold concentration of ricin was observed by the devices, which serve to remove soluble interferents and could function as the front-end sample processing step to other ricin analytical methods. The procedure has the potential to be used with a broader range of environmental sample types and with other potential interferences and to be followed by other ricin analytical methods, although additional verification studies would be required.
机译:摘要与过去十年报告的几个蓖麻污染事件,环境样品分析需要快速和准确的方法,特别是在去污之后。开发了一种用于共同表面采样装置的样品处理方法,以改善检测极限,避免针对蓖麻素分析的假阴性/阳性结果。使用时间分辨的荧光(TRF)免疫测定,测试来自样品基质(漂白残留物,样品材料,润湿缓冲剂),包括参考粉尘的潜在测定干扰。测试结果表明,当分析来自蓖麻素事件的漂白后净化样品时,样品基质没有引起升高的背景荧光。此外,样品颗粒(80mg / ml亚利桑那州试验粉尘)未增强背景荧光或干扰TRF的蓖麻毒素检测。这些结果表明,该免疫测定中的高背景荧光可能是由于标记的抗体质量和/或数量问题。评估离心超滤装置的蓖麻浓度作为样品加工的一部分。通过该装置观察到高达30倍的蓖麻植物浓度,该装置用于去除可溶性干扰物,并且可以用作其他蓖及分析方法的前端样品处理步骤。该程序具有更广泛的环境样品类型和其他潜在干扰的可能性,并且其他蓖及分析方法尤其是需要进行额外的验证研究。

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