Differentiation of oligosaccharide isomers by direct infusion multidimensional mass spectrometry†

IF 3.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Analyst Pub Date : 2024-10-01 DOI:10.1039/D4AN01142B
Enoch Amoah, Taghi Sahraeian, Ayesha Seth and Abraham K. Badu-Tawiah
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引用次数: 0

Abstract

Oligosaccharides demonstrate many bioactivities with applications in the pharmaceutical, cosmetic, and food industries. They also serve as biomarkers for various diseases including cancer and glycogen storage disorders. These make the structural characterization of oligosaccharides very important. Unfortunately, the structural diversity found in saccharides make their characterization challenging, necessitating the development of sophisticated instrumentation to enable isomer differentiation. Herein, we report the ability of halide (Cl and Br) adducts to enable direct differentiation of oligosaccharide isomers using conventional collision-induced dissociation (CID) tandem MS (MS/MS). The halide adducts were generated by direct infusion nano-electrospray ionization (nESI). For the first time, this traditional nESI CID MS/MS platform was used to differentiate stereoisomers of trisaccharides (cellotriose β(1 → 4) and maltotriose α(1 → 4), tetrasaccharides (cellotetraose and maltotetraose), and pentasaccharides (cellopentaose and maltopentaose)). In addition, the MS/MS of halide adducts enabled the differentiation of positional, structural, and linkage isomers from a total of 14 oligosaccharides. The isomer differentiation was realized by the generation of distinct diagnostic fragment ions in CID. We also performed principal component analysis using the entire range of MS/MS fragment ion profiles and found that negative-ion mode halide adduction provided more effective isomer differentiation compared with positive-ion mode sodium adduction. Finally, we demonstrated complex mixture analysis by spiking all 14 oligosaccharides into raw urine, of which we successfully distinguished species based on molecular weight (first dimension) and CID MS/MS fragmentation patterns as the second dimension separation. This work effectively showcases the potential to use direct infusion nESI-MS/MS to characterize synthetic oligosaccharide isomers in unpurified reaction mixture as well as from biofluids for diagnostic purposes.

Abstract Image

用直接注入多维质谱法区分低聚糖异构体
低聚糖具有多种生物活性,可应用于制药、化妆品和食品行业。它们还是癌症和糖原贮存紊乱等多种疾病的生物标记物。因此,低聚糖的结构表征非常重要。遗憾的是,由于糖类结构的多样性,对它们的表征具有挑战性,因此需要开发先进的仪器来区分异构体。在此,我们报告了卤化物(Cl- 和 Br-)加合物利用传统的碰撞诱导解离(CID)串联质谱(MS/MS)直接区分寡糖异构体的能力。卤化物加合物是通过直接注入纳米电喷雾离子化(nESI)产生的。这一传统的 nESI CID MS/MS 平台首次用于区分三茶醛糖(细胞三糖 β(1→4)和麦芽三糖 α(1→4))、四糖(细胞四糖和麦芽四糖)和五糖(细胞戊糖和麦芽戊糖)的立体二聚体。此外,通过对卤化物加合物的 MS/MS 分析,还可区分出 14 种低聚糖的位置、结构和连接异构体。异构体的区分是通过在 CID 中产生不同的诊断片段离子来实现的。我们还利用整个 MS/MS 片段离子谱进行了主成分分析,发现负离子模式的卤化物加成与正离子模式的钠加成相比,能更有效地区分异构体。最后,我们向原尿中添加了所有 14 种寡糖,演示了复杂混合物分析,我们成功地根据分子量(第一维度)和 CID MS/MS 片段模式(第二维度)区分了其中的物种。这项工作有效地展示了利用直接导流 nESI-MS/MS 分析未纯化反应混合物中的合成寡糖异构体以及生物流体中的合成寡糖异构体的潜力,从而达到诊断目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: "Analyst" journal is the home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences.
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