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Use of a water-soluble fullerene derivative as precipitating reagent and matrix-assisted laser desorption/ionization matrix to selectively detect charged species in aqueous solutions

机译:水溶性富勒烯衍生物作为沉淀剂和基质辅助激光解吸/电离基质的用途,可选择性地检测水溶液中的带电物质

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A starlike water-soluble fullerene derivative, hexa(sulfon-butyl)fullerene (C-60[(CH2)(4)SO3-](6); HSBF), consisting of a C-60 cage covalently bonded with six negatively charged sulfonate arms, was synthesized and used to selectively precipitate positively charged surfactants, amino acids, peptides, and proteins. The affinity of HSBF to the analytes depends on the charge, structure, and hydrophobic characteristics of the analytes. The ion pair precipitate was easily removed from the solution by centrifugation. After washing, the precipitate was redissolved in the solvent or buffer solution and the analyte was characterized by laser desorption ionization-time-of-flight mass spectrometry (LD-TOF). HSBF shows strong optical absorbance in the UV range, so no additional organic matrix was required to conduct LD-TOF analysis of small analytes. For the solution that contained five quaternary amines differing only in alkyl chain length, HSBF exhibits the highest affinity to the amine with the longest alkyl chain. Only the arginine signal was detected from the solution that contained 14 amino acids. The peptides with arginine as the end groups interacted most strongly with HSBF and could be selectively precipitated from a solution of a mixture of five peptides. The signals associated with a trace amount of charged peptides derived from the digestion of proteins by trypsin were greatly enhanced after concentration with HSBF. Among eight proteins in the sample solution, insulin had the strongest affinity to the HSBF and exhibited the strongest signal on the matrix-assisted laser desorption/ionization mass spectrum. [References: 35]
机译:一种星形水溶性富勒烯衍生物,六(磺丁基丁基)富勒烯(C-60 [(CH2)(4)SO3-](6); HSBF),由与六个带负电荷的磺酸盐共价结合的C-60笼组成臂被合成并用于选择性沉淀带正电荷的表面活性剂,氨基酸,肽和蛋白质。 HSBF对分析物的亲和力取决于分析物的电荷,结构和疏水特性。通过离心很容易从溶液中除去离子对沉淀物。洗涤后,沉淀物重新溶解在溶剂或缓冲溶液中,分析物通过激光解吸电离飞行时间质谱(LD-TOF)进行表征。 HSBF在紫外范围内显示出很强的吸光度,因此不需要其他有机基质即可对小量分析物进行LD-TOF分析。对于包含五个仅在烷基链长度上不同的季胺的溶液,HSBF对具有最长烷基链的胺表现出最高的亲和力。从包含14个氨基酸的溶液中仅检测到精氨酸信号。以精氨酸为末端基团的肽与HSBF相互作用最强,可以选择性地从5种肽的混合物溶液中沉淀出来。用HSBF浓缩后,与通过胰蛋白酶消化蛋白质而产生的微量带电肽有关的信号大大增强。在样品溶液中的八种蛋白质中,胰岛素对HSBF具有最强的亲和力,并且在基质辅助激光解吸/电离质谱上显示出最强的信号。 [参考:35]

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