Cordero Chiara, Rubiolo Patrizia, Reichenbach Stephen E, Carretta Andrea, Cobelli Luigi, Giardina Matthew, Bicchi Carlo
Università degli Studi di Torino, Turin, Italy.
Università degli Studi di Torino, Turin, Italy.
J Chromatogr A. 2017 Jan 13;1480:70-82. doi: 10.1016/j.chroma.2016.12.011. Epub 2016 Dec 9.
The possibility to transfer methods from thermal to differential-flow modulated comprehensive two-dimensional gas chromatographic (GC×GC) platforms is of high interest to improve GC×GC flexibility and increase the compatibility of results from different platforms. The principles of method translation are here applied to an original method, developed for a loop-type thermal modulated GC×GC-MS/FID system, suitable for quali-quantitative screening of suspected fragrance allergens. The analysis conditions were translated to a reverse-injection differential flow modulated platform (GC×2GC-MS/FID) with a dual-parallel secondary column and dual detection. The experimental results, for a model mixture of suspected volatile allergens and for raw fragrance mixtures of different composition, confirmed the feasibility of translating methods by preserving D elution order, as well as the relative alignment of resulting 2D peak patterns. A correct translation produced several benefits including an effective transfer of metadata (compound names, MS fragmentation pattern, response factors) by automatic template transformation and matching from the original/reference method to its translated counterpart. The correct translation provided: (a) 2D pattern repeatability, (b) MS fragmentation pattern reliability for identity confirmation, and (c) comparable response factors and quantitation accuracy within a concentration range of three orders of magnitude. The adoption of a narrow bore (i.e. 0.1mm d) first-dimension column to operate under close-to-optimal conditions with the differential-flow modulation GC×GC platform was also advantageous in halving the total analysis under the translated conditions.
将方法从热调制转移到分流调制全二维气相色谱(GC×GC)平台,对于提高GC×GC的灵活性和增强不同平台结果的兼容性具有重要意义。方法转移的原理在此应用于一种原始方法,该方法是为一种适用于疑似香料过敏原定性定量筛选的环型热调制GC×GC-MS/FID系统开发的。分析条件被转移到一个具有双平行二级柱和双检测的反吹分流调制平台(GC×2GC-MS/FID)上。对于疑似挥发性过敏原的模型混合物和不同组成的原始香料混合物的实验结果,证实了通过保留洗脱顺序以及所得二维峰型的相对对齐来转移方法的可行性。正确的转移带来了几个好处,包括通过自动模板转换和从原始/参考方法到其转移对应方法的匹配有效地转移元数据(化合物名称、质谱碎片模式、响应因子)。正确的转移提供了:(a)二维峰型的重复性,(b)用于身份确认的质谱碎片模式的可靠性,以及(c)在三个数量级的浓度范围内具有可比的响应因子和定量准确性。采用窄内径(即0.1mm内径)的一维柱在分流调制GC×GC平台接近最佳条件下运行,在转移条件下还具有将总分析时间减半的优势。