Kongthaisong Monticha, Na-Bangchang Kesara, Mungthin Mathirut, Sinchaipanid Nuttanan, Tan-Ariya Peerapan
Department of Microbiology, Faculty of Science, Mahidol University, Bangkok, Thailand.
Am J Trop Med Hyg. 2004 Dec;71(6):703-10.
Sera collected at various time intervals from healthy Thai male subjects after the administration of the three oral formulations of dihydroartemisinin (Cotecxin) manufactured in the People's Republic of China, a formulation manufactured by Arenco n.v. Pharmaceutica in Belgium, and a formulation manufactured by the Faculty of Pharmacy of Mahidol University in Thailand) were investigated for their ex vivo blood schizontocidal activities against the K1 strain of Plasmodium falciparum. Blood schizontocidal activities of sera were evaluated using the maximum inhibitory dilution as a parameter. Sera obtained following the administration of the three formulations of dihydroartemisinin showed significantly distinct degree of ex vivo antimalarial activities. The differences may reflect the bioinequivalence between these three formulations of dihydroartemisinin. The ex vivo blood schizontocidal activity profiles generally coincided with plasma concentration-time profiles. Thus, the ex vivo model might be the useful tool for evaluating and comparing the bioequivalence of the interesting drugs especially where high-performance liquid chromatography with reductive electrochemical detection for drug analysis is not available. The effect of inoculum size of P. falciparum was shown in the ex vivo model as presented in the in vitro sensitivity test. To determine the effect of the inoculum size on the drug activity, the ex vivo model might be superior to the in vitro model since the pharmacokinetic profiles can be considered.
从健康泰国男性受试者服用中华人民共和国生产的三种双氢青蒿素口服制剂(科泰新)、比利时阿伦科制药公司生产的一种制剂以及泰国玛希隆大学药学院生产的一种制剂后,在不同时间间隔采集的血清,对其针对恶性疟原虫K1株的体外血液裂殖体杀灭活性进行了研究。血清的血液裂殖体杀灭活性以最大抑制稀释度为参数进行评估。服用三种双氢青蒿素制剂后获得的血清显示出明显不同程度的体外抗疟活性。这些差异可能反映了这三种双氢青蒿素制剂之间的生物不等效性。体外血液裂殖体杀灭活性谱通常与血浆浓度-时间谱一致。因此,体外模型可能是评估和比较相关药物生物等效性的有用工具,尤其是在没有用于药物分析的带还原电化学检测的高效液相色谱法的情况下。体外模型如体外敏感性试验所示,显示了恶性疟原虫接种量的影响。为了确定接种量对药物活性的影响,体外模型可能优于体外模型,因为可以考虑药代动力学特征。