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使用紫外光电二极管阵列和荧光检测的灵敏手性高效液相色谱法测定血浆中驱虫药氟苯达唑及其Ⅰ相代谢物 在绵羊药代动力学研究中的应用

Sensitive chiral high-performance liquid chromatographic determination of anthelmintic flubendazole and its phase I metabolites in blood plasma using UV photodiode-array and fluorescence detection Application to pharmacokinetic studies in sheep.

作者信息

Nobilis Milan, Vybíralová Zuzana, Krízová Veronika, Kubícek Vladimír, Soukupová Marie, Lamka Jirí, Szotáková Barbora, Skálová Lenka

机构信息

Institute of Experimental Biopharmaceutics, Joint Research Center of PRO.MED.CS Praha a.s. and Academy of Sciences of the Czech Republic, Heyrovského 1207, CZ-500 03 Hradec Králové, Czech Republic.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2008 Dec 1;876(1):89-96. doi: 10.1016/j.jchromb.2008.10.032. Epub 2008 Nov 1.

Abstract

Although benzimidazole anthelmintic flubendazole, methyl ester of [5-(4-fluorobenzoyl)-1H-benzimidazol-2-yl]carbamic acid, is extensively used in veterinary and human medicine for the treatment of gastrointestinal parasitic helminth infections, reliable data about its pharmacokinetics in various species have not been reported. Our previous work [M. Nobilis, Th. Jira, M. Lísa, M. Holcapek, B. Szotáková, J. Lamka, L.Skálová, J. Chromatogr. A 1149 (2007) 112-120] had described the stereospecificity of carbonyl reduction during phase I metabolic experiments in vitro. For in vivo pharmacokinetic studies, further improvement and optimization of bioanalytical HPLC method in terms of sensitivity and selectivity was necessary. Hence, a modified chiral bioanalytical HPLC method involving both UV photodiode-array and fluorescence detection for the determination of flubendazole, both enantiomers of reduced flubendazole and hydrolyzed flubendazole in the extracts from plasma samples was tested and validated. Albendazole was used as an internal standard. Sample preparation process involved a pH-dependent extraction of the analytes from the blood plasma into tert-butylmethyl ether. Chromatographic separations were performed on a Chiralcel OD-R 250 mm x 4.6mm column with mobile phase methanol-1M NaClO(4) (75:25, v/v) at the flow rate 0.5 ml min(-1). In quantitation, selective UV absorption maxima of 290 nm (for reduced flubendazole), 295 nm (for albendazole), 310 nm (for flubendazole) and 330 nm (for hydrolyzed flubendazole) were used in the UV photodiode-array detection, and lambda(exc.)/lambda(emis.)=228 nm/310 nm (for reduced flubendazole) and lambda(exc.)/lambda(emis.)=236 nm/346 nm (for albendazole) were set on the fluorescence detector. The fluorescence detection was approximately 10-times more sensitive than the UV detection. Each HPLC run lasted 27 min. The validated chiral HPLC-PDA-FL method was employed in the pharmacokinetic studies of flubendazole in sheep. The stereospecificity of the enzymatic carbonyl reduction of flubendazole was also observed in vivo. (+)-Reduced flubendazole was found to be the principal metabolite in ovine blood plasma and only low concentrations of hydrolyzed flubendazole, the parent flubendazole and (-)-reduced flubendazole were detected in this biomatrix.

摘要

尽管苯并咪唑驱虫药氟苯达唑,即[5-(4-氟苯甲酰基)-1H-苯并咪唑-2-基]氨基甲酸甲酯,在兽医和人类医学中被广泛用于治疗胃肠道寄生虫感染,但尚未有关于其在不同物种中药代动力学的可靠数据报道。我们之前的工作[M. Nobilis, Th. Jira, M. Lísa, M. Holcapek, B. Szotáková, J. Lamka, L.Skálová, J. Chromatogr. A 1149 (2007) 112 - 120]描述了体外I相代谢实验中羰基还原的立体特异性。对于体内药代动力学研究,生物分析HPLC方法在灵敏度和选择性方面需要进一步改进和优化。因此,测试并验证了一种改进的手性生物分析HPLC方法,该方法同时采用紫外光电二极管阵列和荧光检测,用于测定血浆样品提取物中的氟苯达唑、还原氟苯达唑的两种对映体以及水解氟苯达唑。阿苯达唑用作内标。样品制备过程包括将分析物从血浆中通过pH依赖性萃取到叔丁基甲醚中。色谱分离在Chiralcel OD-R 250 mm×4.6mm柱上进行,流动相为甲醇-1M NaClO(4) (75:25, v/v),流速为0.5 ml min(-1)。在定量分析中,紫外光电二极管阵列检测使用了290 nm(还原氟苯达唑)、295 nm(阿苯达唑)、310 nm(氟苯达唑)和330 nm(水解氟苯达唑)的选择性紫外吸收最大值,荧光检测器设置为λ(exc.)/λ(emis.) = 228 nm/310 nm(还原氟苯达唑)和λ(exc.)/λ(emis.) = 236 nm/346 nm(阿苯达唑)。荧光检测的灵敏度比紫外检测高约10倍。每次HPLC运行持续27分钟。经过验证的手性HPLC-PDA-FL方法用于氟苯达唑在绵羊体内的药代动力学研究。在体内也观察到了氟苯达唑酶促羰基还原的立体特异性。(+)-还原氟苯达唑被发现是绵羊血浆中的主要代谢物,在该生物基质中仅检测到低浓度的水解氟苯达唑、母体氟苯达唑和(-)-还原氟苯达唑。

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