Bao Donghui, Truong Thanh-Thai, Renick Paul J, Pulse Mark E, Weiss William J
Cumbre Pharmaceuticals Inc., 1502 Viceroy Drive, Dallas, TX 75235, USA.
J Pharm Biomed Anal. 2008 Mar 13;46(4):723-7. doi: 10.1016/j.jpba.2007.11.023. Epub 2007 Nov 26.
The aim of this study was to develop a specific and sensitive liquid chromatography mass spectrometry (LC/MS) method for the determination of rifampicin and levofloxacin concentrations from infected tissues within teflon catheter segments which were subcutaneously implanted in mice. A solid-phase extraction procedure was used to extract analytes from tissue homogenates of the catheter segments and reverse-phase HPLC combined with positive electrospray ionization mass spectrometry was used for analyte separation and quantification. The assay was found to be linear over the concentration range of 0.02-2 microg/g for rifampicin and levofloxacin in tissues and provided good validation data for accuracy and precision. The intra-day accuracy as determined by the relative error was -1.3% for levofloxacin and 6.1% for rifampicin, and precision was evaluated by R.S.D.s with a maximum of 5.1% for levofloxacin and 8.1% for rifampicin. The inter-day accuracy was -3.3% for levofloxacin and -4.6% for rifampicin, and precision was 8.6% for levofloxacin and 7.1% for rifampicin. The assay uses less tissue than previously described methods and can be applied to determine the penetration of rifampicin and the fluoroquinolone in catheter segments from a mouse model of a device-related infection. Finally, the HPLC-MS assay should be applicable to studies of rifamycin+quinolone combination therapies in other animal models of bacterial infection.
本研究的目的是开发一种特异性强、灵敏度高的液相色谱-质谱联用(LC/MS)方法,用于测定皮下植入小鼠体内的聚四氟乙烯导管段感染组织中的利福平及左氧氟沙星浓度。采用固相萃取程序从导管段的组织匀浆中提取分析物,并使用反相高效液相色谱结合正电喷雾电离质谱进行分析物的分离和定量。结果发现,该测定方法在组织中利福平和左氧氟沙星浓度范围为0.02 - 2微克/克时呈线性,且提供了良好的准确度和精密度验证数据。通过相对误差确定的日内准确度,左氧氟沙星为-1.3%,利福平为6.1%;精密度通过相对标准偏差(R.S.D.)评估,左氧氟沙星最大为5.1%,利福平最大为8.1%。日间准确度,左氧氟沙星为-3.3%,利福平为-4.6%;精密度,左氧氟沙星为8.6%,利福平为7.1%。该测定方法使用的组织比先前描述的方法少,可用于确定利福平及氟喹诺酮类药物在与装置相关感染小鼠模型的导管段中的渗透情况。最后,高效液相色谱-质谱联用测定法应适用于其他细菌感染动物模型中利福霉素+喹诺酮联合疗法的研究。