Waters Corporation, Stamford Rd, Wilmslow, SK9 4AX, UK.
Sorbonne Université, Campus Pierre et Marie Curie, IBPS-BIOSIPE, 75005 PARIS, France.
J Chromatogr B Analyt Technol Biomed Life Sci. 2022 Jun 1;1200:123265. doi: 10.1016/j.jchromb.2022.123265. Epub 2022 Apr 27.
Reversed-phase high performance thin-layer chromatography (RP-HPTLC) on C18 bonded silica gel was combined with desorption electrospray ionization (DESI) and high resolution time of flight mass spectrometry (HRToFMS) to detect, characterize and image (MSI) phytoecdysteroids (plant-derived insect moulting hormones) in ethanolic extracts of members of the Silene plant family. As seen previously for silica gel, DESI provided a simple and convenient method for recovering polar polyhydoxysteroids from RP-HPTLC plates for the purposes of both the MS and MSI of extracts obtained from three species of the Silene family (Silene otites, S. nutans and S. viridiflora). Using RP-HPTLC/DESI/MSI/HRToFMS a number of ecdysteroids, including 20-hydroxyecdysone, polypodine-B, 2-deoxy-20-hydroxyecdysone and 2-deoxyecdysone were identified in these extracts. Differences were noted in the mass spectra obtained depending upon both the stationary phase on which they were separated, and the temperatures used in the heated transfer line used for introduction into the ion source. Ecdysteroids detected after chromatography on C18 bonded silica showed increased fragmentation due to water loss compared to those imaged from silica. In addition, the benefits of the additional resolution provided by 2-dimensional TLC for increasing spectral quality compared to a 1-dimensional separation are demonstrated.
反相高效薄层色谱(RP-HPTLC)在 C18 键合硅胶上与解吸电喷雾电离(DESI)和高分辨飞行时间质谱(HRToFMS)相结合,用于检测、表征和成像(MSI)来自石竹科植物乙醇提取物中的植物源性蜕皮激素(植物来源的昆虫蜕皮激素)。如以前在硅胶上看到的那样,DESI 为从 RP-HPTLC 板上回收极性多羟基甾醇提供了一种简单方便的方法,用于对从石竹科三种植物(拟南芥、多穗石竹和石竹)获得的提取物进行 MS 和 MSI。使用 RP-HPTLC/DESI/MSI/HRToFMS,在这些提取物中鉴定出了几种蜕皮激素,包括 20-羟基蜕皮激素、多刺素-B、2-脱氧-20-羟基蜕皮激素和 2-脱氧蜕皮激素。根据它们分离的固定相以及用于引入离子源的加热传输线中使用的温度,在获得的质谱中注意到了差异。与从硅胶成像的那些相比,在 C18 键合硅胶上色谱分离后检测到的蜕皮激素由于失水而导致碎片化增加。此外,还证明了二维 TLC 提供的额外分辨率相对于一维分离增加光谱质量的好处。