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使用毛细管液相色谱-质谱法同时测量微透析液中的催产素和精氨酸加压素。

Simultaneous oxytocin and arg-vasopressin measurements in microdialysates using capillary liquid chromatography-mass spectrometry.

机构信息

Department of Chemistry and Department of Pharmacology, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

J Neurosci Methods. 2012 Jul 30;209(1):127-33. doi: 10.1016/j.jneumeth.2012.06.006. Epub 2012 Jun 16.

Abstract

Oxytocin (OXT) and arg-vasopressin (AVP) are nonapeptides with many important functions both peripherally and centrally. Intracerebral microdialysis has helped characterize their importance in regulating complex social and emotional processes. Radioiummunoassay is the most commonly used analytical method used for OXT and AVP measurements in microdialysates. These measurements have several well-known issues including single peptide per assay limit, possible cross-reactivity between structurally related peptides, and laborious sample preparation with radioactive materials. Here we demonstrate the use of capillary LC-MS(3) for measuring OXT and AVP simultaneously in dialysates at a 10 min sampling frequency. Microdialysate samples required no preparation and instrumentation was commercially available. Microdialysis probes made with polyacrylonitrile membranes were suitable for high level recovery of the peptides in vitro and in vivo. Responses were linear from 1 to 100 pM. Matrix effect was assessed by standard addition experiments and by comparing signal intensities of OXT and AVP standards made in aCSF or dialysate. It was determined that the online washing step used on this setup was adequate for removing contaminants which interfere with electrospray ionization efficiency. In vivo, both peptides were stimulated by high K(+) (75 mM) aCSF perfusion in the paraventricular nucleus (PVN). Also, a systemic injection of high Na(+) (2M) caused a rapid and transient increase in PVN OXT while AVP increased only after 1.5h. Our findings suggest that capillary LC-MS(3) is a straightforward method for monitoring OXT and AVP simultaneously from complex samples such as dialysates.

摘要

催产素(OXT)和精氨酸加压素(AVP)是具有许多重要功能的九肽,在中枢和外周都有重要作用。脑室内微透析技术有助于阐明它们在调节复杂的社会和情绪过程中的重要性。放射免疫测定法是用于测量微透析液中 OXT 和 AVP 的最常用分析方法。这些测量方法存在一些众所周知的问题,包括每个测定的单个肽限制、结构相关肽之间可能的交叉反应性以及放射性材料的繁琐样品制备。在这里,我们展示了使用毛细管 LC-MS(3)以 10 分钟的采样频率同时测量透析液中的 OXT 和 AVP。微透析液样品无需制备,仪器在商业上可获得。用聚丙烯腈膜制成的微透析探针适合于体外和体内高回收率的肽。响应从 1 到 100 pM 呈线性。通过标准添加实验和比较在 aCSF 或透析液中制备的 OXT 和 AVP 标准的信号强度来评估基质效应。确定在此设置中使用的在线洗涤步骤足以去除干扰电喷雾电离效率的污染物。在体内,高 K+(75 mM)aCSF 在室旁核(PVN)中的灌注刺激两种肽。此外,高 Na+(2M)的全身注射迅速引起 PVN OXT 的短暂增加,而 AVP 仅在 1.5 小时后增加。我们的发现表明,毛细管 LC-MS(3)是一种从复杂样品(如透析液)中同时监测 OXT 和 AVP 的简单方法。

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