Konieczna Lucyna, Pyszka Magdalena, Okońska Magdalena, Niedźwiecki Maciej, Bączek Tomasz
Department of Pharmaceutical Chemistry, Medical University of Gdańsk, Gen. J. Hallera 107, 80-416 Gdańsk, Poland.
Department of Pediatrics, Hematology, Oncology and Endocrinology, Medical University of Gdańsk, Dębinki 7, 80-211 Gdańsk, Poland.
J Chromatogr A. 2018 Mar 23;1542:72-81. doi: 10.1016/j.chroma.2018.02.019. Epub 2018 Feb 12.
Exhaled breath condensate (EBC) is receiving increased attention as a novel, entirely non-invasive technique for collecting biomarker samples. This increased attention is due to the fact that EBC is simple, effort independent, rapid, can be repeated frequently, and can be performed on young children and patients suffering from a variety of diseases. By having a subject breathe tidally through a cooling system for 15-20 min, a sufficient amount of condensate is collected for analysis of biomarkers in clinical studies. However, bioanalysis of EBC involves an unavoidable sample preparation step due to the low concentration of its components. Thus, there is a need for a new and more sensitive analytical method of assessing EBC samples. While researchers have considered analyses of single and small quantities of amino acids - for example, those connected with leukemia - no one has previously attempted to simultaneously analyze a panel of 23 amino acids. Moreover, the present study is well-justified, as prior studies focusing on single amino acids and leukemia at the moment of diagnosis and during chemotherapy (33 days of treatment) are inconsistent. In the present study, amino acids were separated using an XBridge Amide column (3 mm × 100 mm, 3.5 μm). The mobile phase consisted of 10 mM of ammonium buffer in water with a pH of 3 (Phase A) and 10 mM ammonium buffer in acetonitrile (Phase B) under gradient program elution. The analytes were detected in electrospray positive ionization mode. Under optimal conditions, the proposed method exhibited limits of quantification (LOQ) in the range of 0.05-0.5 ng/mL, and good linearity, with the determination coefficient (R) falling between 0.9904 and 0.9998. The accuracy in human exhaled breath condensate samples ranged between 93.3-113.3% for the 23 studied amino acids, with intra- and inter-day coefficient of variation (CVs) of 0.13-9.92% and 0.17-10.53%, respectively. To demonstrate the liquid chromatography with hydrophilic interaction with electrospray source coupled to tandem mass spectrometry (LC-HILIC-ESI-MS/MS) method's applicability for biomedical investigations, it was verified and applied to determine amino acids in pediatric patients with leukemia. These tests confirmed that glutamine, arginine, homoarginine, asparagine, histidine, methionine, proline, hydroxyproline, threonine, tyrosine, and valine were present in significantly higher levels in pediatric leukemia patients than in the healthy control group. The developed assay is an attractive alternative to standard analytical methods, because it allows for the non-invasive, fast, sensitive, and reliable analysis of amino acids without derivatization in EBC.
呼出气冷凝物(EBC)作为一种用于收集生物标志物样本的全新、完全无创的技术,正受到越来越多的关注。这种关注度的提高是因为EBC操作简单、无需费力、速度快、可频繁重复,并且可用于幼儿和患有多种疾病的患者。让受试者通过冷却系统进行15 - 20分钟的潮式呼吸,即可收集到足够量的冷凝物用于临床研究中的生物标志物分析。然而,由于EBC成分浓度较低,其生物分析涉及一个不可避免的样本制备步骤。因此,需要一种新的、更灵敏的分析方法来评估EBC样本。虽然研究人员已经考虑过分析单个和少量的氨基酸——例如与白血病相关的氨基酸——但此前没有人尝试同时分析一组23种氨基酸。此外,本研究具有充分的合理性,因为目前专注于诊断时和化疗期间(治疗33天)的单个氨基酸和白血病的先前研究结果并不一致。在本研究中,使用XBridge酰胺柱(3 mm×100 mm,3.5μm)分离氨基酸。流动相由pH为3的10 mM氨水溶液(A相)和10 mM氨乙腈溶液(B相)组成,采用梯度洗脱程序。在电喷雾正离子化模式下检测分析物。在最佳条件下,所提出的方法的定量限(LOQ)在0.05 - 0.5 ng/mL范围内,线性良好,测定系数(R)在0.9904至0.9998之间。在所研究的23种氨基酸的人呼出气冷凝物样本中,准确度在93.3% - 113.3%之间,日内和日间变异系数(CVs)分别为0.13% - 9.92%和0.17% - 10.53%。为了证明亲水相互作用液相色谱与电喷雾源串联质谱联用(LC - HILIC - ESI - MS/MS)方法在生物医学研究中的适用性,对其进行了验证并应用于测定白血病患儿的氨基酸。这些测试证实,白血病患儿体内谷氨酰胺、精氨酸、高精氨酸、天冬酰胺、组氨酸、蛋氨酸、脯氨酸、羟脯氨酸、苏氨酸、酪氨酸和缬氨酸的含量明显高于健康对照组。所开发的检测方法是标准分析方法的一个有吸引力的替代方法,因为它能够对EBC中的氨基酸进行无创、快速、灵敏且可靠的分析,无需衍生化。