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Measurement of ultra-trace level of intact oxytocin in plasma using SALLE combined with nano-LC-MS

机译:使用盐水与纳米LC-MS相结合的等离子体中完整催产素的超痕量水平的测量

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Measurement of peptides such as oxytocin in plasma is a critical challenge in clinical research because of their extreme low concentrations as well as the tremendous interferencing substances co-presented in plasma. In this study, we developed an efficient salt-out assisted liquid-liquid extraction (SALLE) to treat plasma, and then analyzed the samples using nano-LC-MS to quantify intact oxytocin (OT) in human and rat plasmas. Our results showed that the use of SALLE (Isopropanol/K2HPO4 (4M)) allows efficient removal of various disrupters, including proteins, inorganic salts, and lipids, which helps avoid the risk of blocked capillary columns and matrix effects. Moreover, instant SALLE can reduce the possible binding between OT and proteins, thus allowing high repeatability of OT extraction from the original plasma. This combination of SALLE and nano-LC-MS method provided in the end a 1 pg/m L of detection limit. Comparative analysis showed that the concentration of OT in the plasma taken from 12 volunteers ranged from 3 to 214 pg/m L, about one order less than those in the plasma of rats. Compared to the previously reported LC-MS and immunoassay methods, the combination of SALLE and nano-LC-MS permits reliable measurement of intact OT even in human plasma. Our approach may be an alternative method for quantitative determination of other ultra-trace peptides in plasma, which would help the investigators understand the role of peptides in behaviours and diseases. (C) 2019 Published by Elsevier B.V.
机译:由于它们极端的低浓度以及共血浆中呈现的巨大干扰物质,血浆中催产素如催产素的测量是临床研究中的一个关键攻击。在这项研究中,我们开发了一种有效的盐助液 - 液 - 液 - 萃取(盐水)以处理血浆,然后使用纳米LC-MS分析样品,以在人和大鼠等离子体中量化完整的催产素(OT)。我们的研究结果表明,使用盐(异丙醇/ K2HPO4(4M))允许有效地去除各种破坏者,包括蛋白质,无机盐和脂质,这有助于避免毛细管柱和基质效应的风险。此外,即时唾液可以减少OT和蛋白质之间可能的结合,从而允许从原始等离子体中萃取的高可重复性。该盐含量和纳米LC-MS方法的组合在1Pg / m L的检测极限中提供。比较分析表明,从12型志愿者血浆中的液体浓度范围为3至214pg / m L,大约一个秩序小于大鼠血浆中的阶。与先前报道的LC-MS和免疫测定方法相比,即使在人血浆中,盐漏和纳米LC-MS的组合也允许可靠地测量完整OT。我们的方法可以是用于定量测定血浆中其他超痕量肽的替代方法,这将有助于研究人员了解肽在行为和疾病中的作用。 (c)2019年由elestvier b.v发布。

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