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纤维内管 SPME-CapLC-MS/MS 法测定阿尔茨海默病患者脑脊液中的 Aβ 肽。

Fiber-in-tube SPME-CapLC-MS/MS method to determine Aβ peptides in cerebrospinal fluid obtained from Alzheimer's patients.

机构信息

Departamento de Química da Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto (DQ-FFCLRP), Universidade de São Paulo, Ribeirão Preto, São Paulo, Brazil.

Instituto de Química de São Carlos (IQSC), Universidade de São Paulo, Ribeirão Preto, São Paulo, Brazil.

出版信息

J Chromatogr A. 2024 May 24;1723:464913. doi: 10.1016/j.chroma.2024.464913. Epub 2024 Apr 16.

Abstract

Mass spectrometry is characterized by its high sensitivity, ability to measure very low analyte concentrations, specificity to distinguish between closely related compounds, availability to generate high-throughput methods for screening, and high multiplexing capacity. This technique has been used as a platform to analyze fluid biomarkers for Alzheimer's disease. However, more effective sample preparation procedures, preferably antibody-independent, and more automated mass spectrometry platforms with improved sensitivity, chromatographic separation, and high throughput are needed for this purpose. This short communication discusses the development of a fiber-in-tube SPME-CapLC-MS/MS method to determine Aβ peptides in cerebrospinal fluid obtained from Alzheimer's disease patients. To obtain the fiber-in-tube SPME capillary, we longitudinally packed 22 nitinol fibers coated with a zwitterionic polymeric ionic liquid into the same length of the PEEK tube. In addition, this communication compares this fiber-in-tube SPME method with the conventional HPLC scale (HPLC-MS/MS) and when directly coupled to CapESI-MS/MS without chromatographic separation, and, as a case study, discusses the benefits and challenges inherent in miniaturizing the flow scale of the sample preparation technique (fiber-in-tube SPME) to the CapLC-MS/MS system. Fiber-in-tube SPME-CapLC-MS/MS provided LLOQ ranging from 0.09 to 0.10 ng mL, accuracy ranging from 91 to 117 % (recovery), and reproducibility of less than 18 % (RSD). Analysis of the cerebrospinal fluid samples obtained from Alzheimer's disease patients evidenced that the method is robust. At the capillary scale (10 µL min), this innovative method presented higher analytical sensitivity than the conventional HPLC-MS/MS scale. Although fiber-in-tube SPME directly coupled to CapESI-MS/MS offers advantages in terms of high throughput, the sample was dispersed and non-quantitatively desorbed from the capillary at low flow rate. These results highlighted that chromatographic separation is important to decrease the matrix effect and to achieve higher detectability, which is indispensable for bioanalysis.

摘要

质谱分析具有高灵敏度、能够测量非常低的分析物浓度、特异性以区分密切相关的化合物、能够生成高通量筛选方法以及高多重性等特点。该技术已被用于分析阿尔茨海默病的体液生物标志物。然而,为了达到这一目的,需要更有效的样品制备程序,最好是不依赖抗体的程序,以及更灵敏、色谱分离更好和高通量的自动化质谱平台。本简讯讨论了开发一种纤维内管 SPME-CapLC-MS/MS 方法来测定从阿尔茨海默病患者的脑脊液中获得的 Aβ肽。为了获得纤维内管 SPME 毛细管,我们将 22 根涂有两性离子聚合物离子液体的镍钛诺纤维纵向装入与 PEEK 管相同长度的毛细管中。此外,本简讯还比较了这种纤维内管 SPME 方法与传统的 HPLC 规模(HPLC-MS/MS)以及直接与 CapESI-MS/MS 耦合而无需色谱分离的方法,并作为案例研究,讨论了将样品制备技术(纤维内管 SPME)的流动规模缩小到 CapLC-MS/MS 系统的固有优势和挑战。纤维内管 SPME-CapLC-MS/MS 提供的LLOQ 范围为 0.09 至 0.10ng/mL,准确度范围为 91%至 117%(回收率),重现性小于 18%(RSD)。对从阿尔茨海默病患者获得的脑脊液样品的分析表明该方法具有稳健性。在毛细管规模(10μL/min)下,该创新方法比传统的 HPLC-MS/MS 规模具有更高的分析灵敏度。虽然纤维内管 SPME 直接与 CapESI-MS/MS 耦合具有高通量的优势,但在低流速下,样品从毛细管中分散并非定量解吸。这些结果表明,色谱分离对于降低基质效应和实现更高的检测能力非常重要,这对于生物分析是必不可少的。

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