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龈沟液中硝苯地平的测定:一种用于微升体积生物流体中硝苯地平的毛细管气相色谱法。

Determination of nifedipine in gingival crevicular fluid: a capillary gas chromatographic method for nifedipine in microlitre volumes of biological fluid.

作者信息

Ellis J S, Monkman S C, Seymour R A, Idle J R

机构信息

Department of Restorative Dentistry, Dental School, University of Newcastle upon Tyne, UK.

出版信息

J Chromatogr. 1993 Nov 17;621(1):95-101. doi: 10.1016/0378-4347(93)80081-e.

Abstract

This paper describes a sensitive capillary gas chromatographic (GC) method for the determination of nifedipine in sub-microliter samples of gingival crevicular fluid (GCF) in order to assess if nifedipine is present in the GCF and if so, whether the local tissue concentrations of this drug are an important determinant in the development of gingival overgrowth. Liquid-liquid and solid-phase extraction were combined to give adequate sample clean-up and concentration for measurement by automated capillary GC with electron capture detection. Nifedipine and its principal metabolite, M-I, were analysed in both plasma and GCF in 9 adult male patients who had been taking nifedipine for over six months. M-I could not be measured in GCF. Plasma nifedipine and M-I levels were normal, but the nifedipine levels found in the GCF of 7 patients (including all those with overgrowth) were remarkably elevated, 15 to 316-fold greater. This massive concentration of nifedipine into the GCF is therefore linked with gingival overgrowth. This is the first time that a GC method has been developed which permits determination of GCF pharmacokinetics of a drug which causes gingival overgrowth, and further investigation will lead to a better understanding of the tissue mechanisms involved.

摘要

本文描述了一种灵敏的毛细管气相色谱(GC)法,用于测定龈沟液(GCF)亚微升样本中的硝苯地平,以评估GCF中是否存在硝苯地平,若存在,该药物的局部组织浓度是否是牙龈过度生长发展的重要决定因素。液-液萃取和固相萃取相结合,通过带有电子捕获检测的自动毛细管GC进行测量,以实现充分的样品净化和浓缩。对9名服用硝苯地平超过6个月的成年男性患者的血浆和GCF中的硝苯地平及其主要代谢物M-I进行了分析。在GCF中无法检测到M-I。血浆硝苯地平和M-I水平正常,但在7名患者(包括所有牙龈过度生长患者)的GCF中发现的硝苯地平水平显著升高,高出15至316倍。因此,硝苯地平在GCF中的大量浓缩与牙龈过度生长有关。这是首次开发出一种GC方法,可用于测定导致牙龈过度生长的药物的GCF药代动力学,进一步的研究将有助于更好地理解其中涉及的组织机制。

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