Alterations in the ratio of glutathione(GSH) to glutathione disulfide(GSSG) reveal the cell living state and are associated with a variety of diseases. In this study, an Au NPs grafted nanoporous silicon chip was used...Alterations in the ratio of glutathione(GSH) to glutathione disulfide(GSSG) reveal the cell living state and are associated with a variety of diseases. In this study, an Au NPs grafted nanoporous silicon chip was used for surface assisted laser desorption ionization-mass spectrometry(SALDI-MS) detection of GSH. Due to the bond interaction between thiol of GSH and Au NPs modified on the chip surfaces, GSH could be captured from the complex cellular lysate. Meanwhile, the composite nanostructures of Au NPs grafted porous silicon surface presented good desorption/ionization efficiency for GSH detection. The GSH levels in different tumor cells were successfully detected. Chip-based SALDI-MS was optimized for quantification of intracellular GSH/GSSG ratio changing under drug stimulation in liver tumor cells, GSSG was reduced to GSH by reductant of tris(2-carboxyethyl)phosphine(TCEP) and isotope-labeling GSH was as an internal standard. It was found that the increasing concentration of drug irinotecan and hypoxia culture condition caused the rapid consumption of GSH and a decrease of GSH/GSSG ratio in liver tumor cells. The developed SALDI-MS method provided a convenient way to accurately measure and rapidly monitor cellular GSH value and the ratios of GSH/GSSG.展开更多
表面辅助激光解吸附/离子化质谱(Surface-assisted laser desorption/ionization mass spectrometry,SALDI-MS)是一种利用无机纳米粒子或纳米结构表面作为基质,辅助待测分子的解吸附和离子化的质谱技术。由于其具有灵敏度高、耐盐性好...表面辅助激光解吸附/离子化质谱(Surface-assisted laser desorption/ionization mass spectrometry,SALDI-MS)是一种利用无机纳米粒子或纳米结构表面作为基质,辅助待测分子的解吸附和离子化的质谱技术。由于其具有灵敏度高、耐盐性好、操作简便、重现性好、检测通量高等优势,已经被广泛应用于食品安全、环境监测、生命科学等诸多领域。该文总结了近5年来,SALDI基质材料(金属及金属氧化物材料、碳材料、硅材料、金属有机骨架化合物材料等)的最新研究进展及其在生物检测领域中的应用,并对SALDI-MS基质材料的发展及应用进行了展望。展开更多
We have applied surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) usingtitanium dioxide nanoparticles(TiO2NPs)as the matrix and captopril (CAP) as internal standard for the determination of the...We have applied surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) usingtitanium dioxide nanoparticles(TiO2NPs)as the matrix and captopril (CAP) as internal standard for the determination of the concentrations of theanine and four catechins—catechin, (_)-epigallocatechin (EGC), (_)-epicatechin gallate (ECG), and (_)-epigallocatechin gallate (EGCG).Under the optimal conditions (240 nM TiO2 NPs and 10 μM CAP), this SALDI-MS approach provides linearity of 0.3– 80 (r= 0.990), 1.2–100 (r= 0.987), 4–120 (r= 0.995), 6–120 (r= 0.983), and 2–120 μM (r= 0.991) for theanine, catechin, EGC, ECG, and EGCG, respectively. The limits of detection (LODs;S/N = 3)for theanine, catechin, EGC, ECG, and EGCG provided by this SALDI-MS approach are 0.1, 0.35, 1.0, 1.45, and 0.5 μM, respectively. This approach provides spot-to-spot and batch-to-batch variations of less than 10% and 13%, respectively, for the analysis of tea samples.With advantages of simplicity, accuracy, precision, and great reproducibility, we have applied the SALDI-MS approach for the analysis of tea samples, with identified peaks for theanine, catechin, EGC, ECG, and EGCG. Tea samples from Taiwan and four other areas have various SALDI-MS profiles, showing their potential for differentiation of tea samples from different sources. Our result also shows that tea samples harvested in different seasons and counties in Taiwan provide significantly different MS profiles. The amounts of theanine and EGC in the Oolong tea from Lishan are much higher than those in the other tea samples.展开更多
基金supported by the National Natural Science Foundation of China(21775086,21435002,21621003)
文摘Alterations in the ratio of glutathione(GSH) to glutathione disulfide(GSSG) reveal the cell living state and are associated with a variety of diseases. In this study, an Au NPs grafted nanoporous silicon chip was used for surface assisted laser desorption ionization-mass spectrometry(SALDI-MS) detection of GSH. Due to the bond interaction between thiol of GSH and Au NPs modified on the chip surfaces, GSH could be captured from the complex cellular lysate. Meanwhile, the composite nanostructures of Au NPs grafted porous silicon surface presented good desorption/ionization efficiency for GSH detection. The GSH levels in different tumor cells were successfully detected. Chip-based SALDI-MS was optimized for quantification of intracellular GSH/GSSG ratio changing under drug stimulation in liver tumor cells, GSSG was reduced to GSH by reductant of tris(2-carboxyethyl)phosphine(TCEP) and isotope-labeling GSH was as an internal standard. It was found that the increasing concentration of drug irinotecan and hypoxia culture condition caused the rapid consumption of GSH and a decrease of GSH/GSSG ratio in liver tumor cells. The developed SALDI-MS method provided a convenient way to accurately measure and rapidly monitor cellular GSH value and the ratios of GSH/GSSG.
文摘表面辅助激光解吸附/离子化质谱(Surface-assisted laser desorption/ionization mass spectrometry,SALDI-MS)是一种利用无机纳米粒子或纳米结构表面作为基质,辅助待测分子的解吸附和离子化的质谱技术。由于其具有灵敏度高、耐盐性好、操作简便、重现性好、检测通量高等优势,已经被广泛应用于食品安全、环境监测、生命科学等诸多领域。该文总结了近5年来,SALDI基质材料(金属及金属氧化物材料、碳材料、硅材料、金属有机骨架化合物材料等)的最新研究进展及其在生物检测领域中的应用,并对SALDI-MS基质材料的发展及应用进行了展望。
文摘We have applied surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) usingtitanium dioxide nanoparticles(TiO2NPs)as the matrix and captopril (CAP) as internal standard for the determination of the concentrations of theanine and four catechins—catechin, (_)-epigallocatechin (EGC), (_)-epicatechin gallate (ECG), and (_)-epigallocatechin gallate (EGCG).Under the optimal conditions (240 nM TiO2 NPs and 10 μM CAP), this SALDI-MS approach provides linearity of 0.3– 80 (r= 0.990), 1.2–100 (r= 0.987), 4–120 (r= 0.995), 6–120 (r= 0.983), and 2–120 μM (r= 0.991) for theanine, catechin, EGC, ECG, and EGCG, respectively. The limits of detection (LODs;S/N = 3)for theanine, catechin, EGC, ECG, and EGCG provided by this SALDI-MS approach are 0.1, 0.35, 1.0, 1.45, and 0.5 μM, respectively. This approach provides spot-to-spot and batch-to-batch variations of less than 10% and 13%, respectively, for the analysis of tea samples.With advantages of simplicity, accuracy, precision, and great reproducibility, we have applied the SALDI-MS approach for the analysis of tea samples, with identified peaks for theanine, catechin, EGC, ECG, and EGCG. Tea samples from Taiwan and four other areas have various SALDI-MS profiles, showing their potential for differentiation of tea samples from different sources. Our result also shows that tea samples harvested in different seasons and counties in Taiwan provide significantly different MS profiles. The amounts of theanine and EGC in the Oolong tea from Lishan are much higher than those in the other tea samples.
文摘利用大肠埃希菌(E.coli O111:B4)中提取精制的内毒素(Control standard endotoxin, CSE)为研究对象,以MnO2/石墨烯(MnO2/G)纳米复合材料为基质,建立了一种基于MnO2/G纳米材料的表面辅助激光解吸电离质谱(Surface-assisted laser desorption ionization mass spectrometry,SALDI-MS)的内毒素检测新方法.利用SALDI-MS方法可实现对不同注射液和饮用水中内毒素的快速鉴定与定量分析.与传统的鲎试剂检测方法相比,基于MnO2/G纳米复合材料的SALDI-MS方法具有操作简便、灵敏度高、分辨率高、检测速度快、高通量和耐盐性好等优点,有望应用于更多食品和药品中细菌内毒素的高通量快速筛查.