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Pyrolytic Methylation-Gas Chromatography of Whole Bacterial Cells for Rapid Profiling of Cellular Fatty Acids

机译:全细菌细胞的热解甲基化-气相色谱法用于细胞脂肪酸的快速分析

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摘要

A novel, on-line derivatization technique has been developed which enables generation of fatty acid methyl ester (FAME) profiles from microorganisms by gas chromatography-mass spectrometry without the need for laborious and time-consuming sample preparation. Microgram amounts of bacterial cells are directly applied to a thin ferromagnetic filament and covered with a single drop of methanolic solution of tetramethylammonium hydroxide. After air drying, the filament is inserted into a special gas chromatograph inlet equipped with a high-frequency coil, thus enabling rapid inductive heating of the ferromagnetic filament. This so-called Curie-point heating technique is shown to produce patterns of bacterial FAMEs which are qualitatively and quantitatively nearly identical to those obtained from extracts of methylated lipids prepared by conventional sample pretreatment methods. Relatively minor differences involve the loss of hydroxy-substituted fatty acids by the pyrolytic approach as well as strongly enhanced signals of FAMEs derived from mycolic acids. This type of pyrolysis enables on-line derivatization and thermal extraction of volatile derivatives for analysis, whereas the residual components remain on a disposable probe (ferromagnetic wire) of a pyrolytic device. The reduced sample size (micrograms instead of milligrams) and the lack of sample preparation requirements open up the possibility of rapid microbiological identification of single colonies (thus overcoming the need for time-consuming subculturing) as well as analysis of FAME profiles directly from complex environmental samples.
机译:已经开发出一种新颖的在线衍生技术,该技术能够通过气相色谱-质谱法从微生物产生脂肪酸甲酯(FAME)谱,而无需费力且费时的样品制备。将微克量的细菌细胞直接施加到细的铁磁丝上,并用一滴氢氧化四甲铵的甲醇溶液覆盖。空气干燥后,将灯丝插入配备有高频线圈的特殊气相色谱仪进口中,从而可以快速感应加热铁磁灯丝。已显示出这种所谓的居里点加热技术可产生细菌FAME的模式,该模式在质量和数量上几乎与从通过常规样品预处理方法制备的甲基化脂质提取物中获得的模式相同。相对较小的差异涉及通过热解方法损失的羟基取代脂肪酸,以及衍生自霉菌酸的FAME的信号大大增强。这种类型的热解可以在线衍生和分析挥发性衍生物,以进行分析,而残留的组分则保留在热解设备的一次性探针(铁磁线)上。样品量的减少(用微克代替毫克)和样品制备要求的缺乏为单个菌落的快速微生物鉴定(从而克服了耗时的继代培养)以及直接从复杂环境中分析FAME谱提供了可能性样品。

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