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Utilization of hydralazine as a reactive matrix for enhanced detection and on-MALDI-target derivatization of saccharides
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作者 Dan Ouyang Huan Huang +5 位作者 yanting he Jiajing Chen Jiali Lin Zhuling Chen Zongwei Cai Zian Lin 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第5期386-391,共6页
Saccharides are a sort of ubiquitous and vital molecules within the whole life.However,the application of saccharides analysis with matrix-assisted laser desorption/ionization mass spectrometry(MALDI-MS)is restricted ... Saccharides are a sort of ubiquitous and vital molecules within the whole life.However,the application of saccharides analysis with matrix-assisted laser desorption/ionization mass spectrometry(MALDI-MS)is restricted by their low ionization efficiency and the instability of the sialic acid fraction.Derivatization strategy based on nonreductive amination provides a good solution,however,this is often time consuming and may result in sample loss due to removal of excessive derivatization reagents.Herein,hydralazine(HZN)was utilized as a reactive matrix for labeling reducing saccharides directly on MALDI target which eliminated tedious sample preparation and avoided sample loss.After optimization,effective and reproducible on-MALDI-target derivatization of neutral and acidic saccharides was achieved in both positive and negative modes.Compared with 2,5-dihydroxybenzoic acid(DHB)and 9-aminoacridine(9-AA),HZN improved the detection sensitivity of reducing saccharides and provided more abundant fragment ions in MS/MS analysis.Moreover,26 kinds of neutral glycans and 5 kinds of sialic glycans were identified from ovalbumin(OVA)and bovine fetuin,respectively.Combined with the statistical models,this strategy could be used to distinguish and predict samples of 6 brands of beer,and discriminate 2 kinds of beer fermentation modes.In addition,HZN was applied for quantitative analysis of glucose in urine samples,and the obtained urine glucose concentrations of diabetic patients were consistent with the clinical test results,showing the potential of qualitative and quantitative analysis of reducing saccharides in complex samples. 展开更多
关键词 HYDRALAZINE Reactive matrix On-MALDI-target derivatization Saccharides
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基于分子印迹的蛋白质识别及应用研究进展 被引量:8
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作者 贺燕庭 白璟 林子俺 《科学通报》 EI CAS CSCD 北大核心 2019年第13期1392-1406,共15页
分子印迹是制备具有模拟抗体分子识别特性材料的技术,其制备方法简单、成本低、材料稳定性好,已广泛应用于固相萃取、色谱分离、模拟酶催化、生物化学传感器、药物递送等领域.分子印迹发展至今,小分子印迹技术发展迅速,而蛋白质分子印... 分子印迹是制备具有模拟抗体分子识别特性材料的技术,其制备方法简单、成本低、材料稳定性好,已广泛应用于固相萃取、色谱分离、模拟酶催化、生物化学传感器、药物递送等领域.分子印迹发展至今,小分子印迹技术发展迅速,而蛋白质分子印迹研究发展相对缓慢,这主要和蛋白质复杂的自然属性有关.虽然蛋白质分子印迹挑战巨大,但是在国内外科研工作者的不懈努力下,近年来蛋白质分子印迹已取得一定的研究进展,其中不乏一些成功的新型蛋白质印迹策略.这些性能优异、功能独特的新型蛋白质印迹材料,已成功应用于蛋白组学、疾病诊断/治疗、生物成像等领域,并表现出巨大的潜在应用价值.本文总结了近10年以来蛋白质分子印迹的新方法、新策略和潜在应用前景,分析了蛋白质分子印迹领域的发展现状及存在的挑战,并展望了该领域的机遇和前景. 展开更多
关键词 分子印迹 蛋白质 分子识别 应用前景
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