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首页> 外文期刊>Analytical chemistry >Investigation of Solid-Phase Peptide Synthesis by the Near-Infrared Multispectral Imaging Technique: A Detection Method for Combinatorial Chemistry
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Investigation of Solid-Phase Peptide Synthesis by the Near-Infrared Multispectral Imaging Technique: A Detection Method for Combinatorial Chemistry

机译:近红外多光谱成像技术研究固相肽合成:组合化学检测方法

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摘要

A near-infrared (NIR) multispectral imaging spectrometer was used to monitor solid-phase peptide synthesis. This imaging spectrometer has fast scanning ability and high sensitivity because it is based on an acousto-optic tunable filter and a NIR InGaAs focal plane array camera. This NIR imaging instrument possesses all the advantages of conventional NIR spectrometers; namely, it can be used for noninvasive monitoring of the reactions and identification of the products during the solid-phase peptide synthesis of glycine, alanine, and valine mediated by aminomethylstyrene resin beads. The reaction was determined by monitoring either the decrease of the band at 1529 nm, which is due to the amine group on the beads, or the increase of the amide band generated at 1483 nm. The amine band at 1529 nm was also used to determine the presence of the Fmoc protecting groups and the efficiency of its removal. More importantly, this NIR imaging spectrometer has additional features that conventional NIR spectrometers cannot offer; namely, its ability to measure spectra at different positions within a sample. This feature was utilized for the first demonstration in which reactions of three different solid-phase peptide syntheses (in a three-compartment cell) were simultaneously monitored. As expected, the kinetics obtained for three reactions are similar to those obtained when the each of the reactions was individually determined. In this study, data recorded by 16 × 16 pixels were used to calculate a spectrum for each sample. However, a relatively good spectrum can be obtained by using data recorded by a single pixel. Since the NIR camera used in this camera is equipped with 240 × 320 pixels, this NIR mutispectral imaging technique is not limited to the three-compartment cell used in this study but rather can be used as the detection method for the solid-phase peptide synthesis in combinatorial chemistry.
机译:使用近红外(NIR)多光谱成像光谱仪监测固相肽合成。该成像光谱仪基于声光可调滤光片和近红外InGaAs焦平面阵列相机,因此具有快速的扫描能力和高灵敏度。该NIR成像仪具有常规NIR光谱仪的所有优点;即,它可以用于氨基甲基苯乙烯树脂珠介导的甘氨酸,丙氨酸和缬氨酸的固相肽合成过程中反应的无创监测和产物鉴定。通过监测由于在珠子上的胺基引起的在1529 nm处谱带的减少或在1483 nm处产生的酰胺谱带的增加来确定反应。 1529 nm处的胺带也用于确定Fmoc保护基的存在及其去除效率。更重要的是,这种近红外成像光谱仪具有常规近红外光谱仪无法提供的其他功能;也就是说,它具有测量样品内不同位置光谱的能力。此功能用于首次演示,其中同时监测了三种不同固相肽合成(在三室单元中)的反应。不出所料,三个反应获得的动力学与分别确定每个反应时获得的动力学相似。在这项研究中,以16×16像素记录的数据用于计算每个样品的光谱。但是,通过使用单个像素记录的数据可以获得相对较好的光谱。由于此摄像机使用的NIR摄像机配备了240×320像素,因此该NIR多光谱成像技术不仅限于本研究中使用的三室单元,而且可以用作固相肽合成的检测方法在组合化学中。

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