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A multi-detector chromatographic approach for characterization and quantitation of botanical constituents to enable in silico safety assessments

机译:多探测器色谱方法,用于植物成分的表征和定量,使硅安全评估能够实现

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摘要

An approach has been developed to characterize the individual chemical constituents of botanicals. The challenge was to identify and quantitate the significant analytes in these complex mixtures, largely in the absence of authentic standards. The data-rich information content generated by this three-detector configuration was specifically intended to be used to conduct safety and/or quality evaluations for complex botanical mixtures, on a chemical constituent basis. The approach utilized a broad gradient UHPLC chromatographic separation. Following the chromatographic separation and UV detection, the eluent was split and sent into a charged aerosol detector (CAD), for quantitation, and a quadrupole/time-of-flight high-resolution mass spectrometer for component identification. The known bias of the otherwise universal CAD response, for organic solvent composition of the mobile phase, was compensated by the addition of an inverse gradient make-up stream. This approach and the orthogonal information content from the chromatography and three different detectors was specifically designed to enable in-silico safety assessments. These guide, minimize, or even eliminate the need for in vivo and in vitro safety assessments. The methodology was developed and demonstrated using standardized extracts of Ginkgo biloba. Results from the development of this novel approach and the characterization example reported here demonstrate the suitability of this instrumental configuration for enabling in-silico safety assessments and proving general quality assessments of botanicals.
机译:已经开发了一种方法来表征植物的个体化学成分。挑战是识别和定量这些复杂混合物中的重要分析物,主要是在没有真实标准的情况下。该三个检测器配置产生的富含数据的信息内容专门用于对化学构成基础进行复杂植物混合物进行安全性和/或质量评估。该方法利用广泛的梯度UHPLC色谱分离。在色谱分离和UV检测之后,将洗脱液分开并送入带电的气溶胶检测器(CAD),用于定量,以及用于组分识别的四极/飞行时间高分辨率质谱仪。通过添加逆梯度构成流来补偿其他通用CAD反应的已知偏差,用于流动相的有机溶剂组合物。这种方法和来自色谱和三种不同探测器的正交信息内容专门设计成在硅中进行In-Silico安全评估。这些指导,最小化,甚至消除体内和体外安全评估的需要。使用Ginkgo Biloba的标准化提取物开发并证明了方法。本新方法的发展结果和本文报告的表征示例展示了这种乐器配置的适用性,以实现硅烷值的安全评估,并证明植物的一般质量评估。

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