Ortega A F, Van Amburgh M E
Department of Animal Science, Cornell University, Ithaca, NY 14853.
JDS Commun. 2023 Nov 17;5(2):118-123. doi: 10.3168/jdsc.2023-0449. eCollection 2024 Mar.
The use of zwitterionic-hydrophilic interaction liquid chromatography (Z-HILIC) columns for analysis of underivatized analytes has allowed simpler sample preparation of bovine plasma for sensitive and selective analysis, when coupled with mass spectrometry (MS). The objective of this study was to evaluate and validate this analytical technique to measure AA and metabolites in bovine plasma at 2 deproteinization times. A robust method using Z-HILIC coupled to a triple quadrupole MS (TQMS) was evaluated and validated to quantitatively analyze 19 AA using isotope dilution and 8 AA metabolites qualitatively in bovine deproteinized plasma. The timing of deproteinization was investigated to determine if plasma should be deproteinized upon collection (on-site) or immediately before analysis (in-lab). Analytes were separated using a Z-HILIC column in a 21 min run and analyzed with a TQMS in positive electrospray ionization for identification and quantification. The method was validated for standard curve linearity, limits of detection (LOD) and quantification (LOQ), intra- and interday precision (% coefficient of variation; CV), recovery (%), and freeze-thaw stability (% CV) after 1 mo. Coefficients of determination (R) were over 0.993, and LOD and LOQ were below measured values for all AA. The CV for the intraday and interday precision were below 18%, except for cystine (Cys2) and Orn in-lab. Recoveries on-site and in-lab ranged from 75% to 120% for all analytes except Cys2 in-lab. Most analytes were stable after 1 mo of freezing regardless of deproteinization timing, CV <25%, except for hydroxyproline (Hyp). The concentration of Cys2 was affected by deproteinization in-lab compared with on-site, and even though Glu and Hyp were different between the 2 deproteinization timings, the concentrations between the 2 timings were within the standard deviation.
将两性离子亲水作用液相色谱(Z-HILIC)柱用于未衍生化分析物的分析,与质谱(MS)联用时,可实现牛血浆更简单的样品制备,以进行灵敏且选择性的分析。本研究的目的是评估和验证这种分析技术,以测定在两种去蛋白时间下牛血浆中的氨基酸(AA)和代谢物。评估并验证了一种使用Z-HILIC与三重四极杆质谱(TQMS)联用的稳健方法,以采用同位素稀释法定量分析牛去蛋白血浆中的19种AA,并定性分析8种AA代谢物。研究了去蛋白的时间,以确定血浆是应在采集时(现场)去蛋白还是在分析前立即去蛋白(实验室中)。使用Z-HILIC柱在21分钟内分离分析物,并通过正电喷雾电离的TQMS进行分析以进行鉴定和定量。该方法针对标准曲线线性、检测限(LOD)和定量限(LOQ)、日内和日间精密度(变异系数百分比;CV)、回收率(%)以及1个月后的冻融稳定性(%CV)进行了验证。测定系数(R)超过0.993,所有AA的LOD和LOQ均低于测量值。除了实验室中的胱氨酸(Cys2)和鸟氨酸(Orn)外,日内和日间精密度的CV均低于18%。除实验室中的Cys2外,所有分析物在现场和实验室中的回收率在75%至120%之间。无论去蛋白时间如何,大多数分析物在冷冻1个月后均稳定,CV<25%,除了羟脯氨酸(Hyp)。与现场相比,实验室中的去蛋白过程会影响Cys2的浓度,尽管两种去蛋白时间下谷氨酸(Glu)和Hyp不同,但两种时间下的浓度在标准偏差范围内。