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Development of a MALDI-TOF-MS Method for the Analysis of Cyanobacterial Neurotoxin β-N-Methylamino-L-alanine (BMAA) in Search of BMAA Incorporation in Biological Samples

机译:开发maLDI-TOF-ms分析蓝藻神经毒素β-N-甲氨基-L-丙氨酸(Bmaa)以寻找生物样品中的Bmaa

摘要

Beta-N-methylamino-L-alanine (BMAA) is a non-protein amino acid produced by many cyanobacteria, and thought to induce neurotoxic effects through excitotoxicity, contributing to neurodegenerative diseases such as Amyotrophic Lateral Sclerosis/Parkinsonism-dementia complex (ALS-PDC) and Alzheimer’s. The ubiquitous nature of cyanobacteria, and evidence of biomagnification through our food web, creates a dire need for the development of an analytical platform that will provide accurate identification and quantification of BMAA amounts in our ecosystem and potential food supply. The present study evaluated the ability of a MALDI-ToF-MS method to detect and quantify BMAA in a variety of biological matrices. Through validation procedures, it was demonstrated that this MALDI-ToF-MS method provided comparable data to currently accepted analytical methods, specifically LC-MS/MS. Further, the development of said method reduced sample preparation and data acquisition time (1-2 seconds per sample), while providing high throughput analysis and eliminating the need for derivatization, chromatographic separation, and modification of amino acids.
机译:β-N-甲基氨基-L-丙氨酸(BMAA)是许多蓝细菌产生的一种非蛋白质氨基酸,被认为会通过兴奋性毒性诱导神经毒性作用,从而导致神经退行性疾病,例如肌萎缩性侧索硬化/帕金森病-痴呆症复合体(ALS- PDC)和阿尔茨海默氏症。蓝藻的普遍性以及通过我们的食物网进行生物放大的证据,迫切需要开发一个分析平台,以提供对我们生态系统和潜在食物供应中BMAA含量的准确鉴定和定量。本研究评估了MALDI-ToF-MS方法检测和定量各种生物基质中BMAA的能力。通过验证程序,证明了这种MALDI-ToF-MS方法可提供与当前接受的分析方法(尤其是LC-MS / MS)相当的数据。此外,所述方法的发展减少了样品制备和数据采集时间(每个样品1-2秒),同时提供了高通量分析并且消除了衍生化,色谱分离和氨基酸修饰的需要。

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    Conklin Laura M;

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  • 年度 2015
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