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基于微粒状强阳离子交换材料的碱性药物高效液相色谱法——综述

HPLC of basic drugs on microparticulate strong cation-exchange materials - a review.

作者信息

Flanagan R J, Harvey E J, Spencer E P

机构信息

Medical Toxicology Unit, Guy's and St Thomas' Hospital Trust, Avonley Road, London SE14 5ER, UK.

出版信息

Forensic Sci Int. 2001 Sep 15;121(1-2):97-102. doi: 10.1016/s0379-0738(01)00458-3.

Abstract

Propylsulphonic acid (SCX)-modified silica HPLC columns used with methanol or aqueous methanol eluents of appropriate pH and ionic strength can give good retention and peak shape for basic drugs. In the system studied, eluent pH influenced retention via protonation of basic analytes, the pK(a) of the analyte indicating the pH where retention begins to decrease at constant ionic strength. At constant pH, retention is inversely proportional to ionic strength for protonated bases and quaternary ammonium compounds. The underlying retention mechanism appears to be ion-exchange with the SCX moieties, although ionized surface silanols may also contribute to retention at higher eluent pH values. In capillary electrochromatography (CEC) unprecedented efficiencies, but similar selectivity, to that observed in conventional HPLC have been obtained for a standard range of basic drugs using Waters Spherisorb S3SCX.SCX-modified silica columns can be used in the HPLC of many basic drugs, including some compounds that are poorly retained on unmodified silica using methanol-rich eluents. N-Desalkyl and sulphoxide metabolites are often resolved at an appropriate eluent pH. Even analogues differing by a methylene unit in a side-chain remote from a basic centre are often resolved. Applications of Waters Spherisorb S5SCX columns include HPLC of antimalarials such as chloroquine and quinine, cardioactive drugs, for example amiodarone and flecainide, antipsychotics (clozapine, olanzapine), and antidepressants (amitriptyline, clomipramine, dothiepin, fluoxetine) and their N-desalkyl metabolites. Major practical features of these systems are that (i) acidic and neutral compounds are not retained, (ii) solvent extracts can be injected directly, and (iii) eluent recycling can be performed routinely.

摘要

丙基磺酸(SCX)改性硅胶高效液相色谱柱,与具有适当pH值和离子强度的甲醇或甲醇水溶液洗脱剂配合使用时,可对碱性药物实现良好的保留和峰形。在所研究的体系中,洗脱剂pH值通过碱性分析物的质子化作用影响保留,分析物的pKa表明在恒定离子强度下保留开始降低时的pH值。在恒定pH值下,质子化碱和季铵化合物的保留与离子强度成反比。潜在的保留机制似乎是与SCX部分进行离子交换,尽管离子化的表面硅醇在较高的洗脱剂pH值下也可能对保留有贡献。在毛细管电色谱(CEC)中,使用沃特世Spherisorb S3SCX.SCX改性硅胶柱,对于一系列标准碱性药物,已获得了前所未有的效率,但选择性与传统高效液相色谱中观察到的相似。SCX改性硅胶柱可用于许多碱性药物的高效液相色谱分析,包括一些使用富含甲醇的洗脱剂在未改性硅胶上保留较差的化合物。N-去烷基和亚砜代谢物通常在适当的洗脱剂pH值下得以分离。即使是在远离碱性中心的侧链中相差一个亚甲基单元的类似物,也常常能被分离。沃特世Spherisorb S5SCX柱的应用包括抗疟药如氯喹和奎宁、心脏活性药物如胺碘酮和氟卡尼、抗精神病药(氯氮平、奥氮平)以及抗抑郁药(阿米替林、氯米帕明、多塞平、氟西汀)及其N-去烷基代谢物的高效液相色谱分析。这些体系的主要实际特点是:(i)酸性和中性化合物不被保留;(ii)可直接进样溶剂提取物;(iii)可常规进行洗脱剂循环利用。

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