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Pharmaceutical identifier confirmation via DART-TOF

机译:通过Dart-Tof确认药物识别器确认

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Pharmaceutical analysis comprises a large amount of the casework in forensic controlled substances laboratories. In order to reduce the time of analysis for Pharmaceuticals, a Direct Analysis in Real Time ion source coupled with an accurate mass time-of-flight (DART-TOF) mass spectrometer was used to confirm identity. DART-TOF spectral data for pharmaceutical samples were analyzed and evaluated by comparison to standard spectra. Identical mass Pharmaceuticals were differentiated using collision induced dissociation fragmentation, present/absent ions, and abundance comparison box plots; principal component analysis (PCA) and linear discriminant analysis (LDA) were used for differentiation of identical mass mixed drug spectra. Mass assignment reproducibility and robustness tests were performed on the DART-TOF spectra. Impacts on the forensic science community include a decrease in analysis time over the traditional gas chromatograph/mass spectrometry (GC/MS) confirmations, better laboratory efficiency, and simpler sample preparation. Using physical identifiers and the DART-TOF to confirm pharmaceutical identity will eliminate the use of GC/MS and effectively reduce analysis time while still complying with accepted analysis protocols. This will prove helpful in laboratories with large backlogs and will simplify the confirmation process.
机译:药物分析包括法医控制物质实验室中的大量案例。为了减少药物的分析时间,使用实时离子源的直接分析,其与飞行准确的飞行时间(Dart-TOF)质谱仪进行了确认标识。通过与标准光谱进行分析和评估药物样品的Dart-TOF光谱数据。使用碰撞诱导的解离碎片,存在/不存在离子和丰度比较箱图来分化相同的大规模药物;主要成分分析(PCA)和线性判别分析(LDA)用于相同质量混合药物光谱的分化。在DART-TOF光谱上进行大规模分配再现性和鲁棒性测试。对法医科学界的影响包括在传统气相色谱/质谱(GC / MS)确认,更好的实验室效率和更简单的样品制备中减少分析时间。使用物理标识符和DART-TOF确认药物认同将消除GC / MS的使用,并有效降低分析时间,同时仍然符合公认的分析协议。这将在具有大积木的实验室中有助于帮助,并将简化确认过程。

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