首页> 外文期刊>Pharmaceutical research >Pharmacokinetics and toxicodynamics of oxaliplatin in rats: application of a toxicity factor to explain differences in the nephrotoxicity and myelosuppression induced by oxaliplatin and the other platinum antitumor derivatives.
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Pharmacokinetics and toxicodynamics of oxaliplatin in rats: application of a toxicity factor to explain differences in the nephrotoxicity and myelosuppression induced by oxaliplatin and the other platinum antitumor derivatives.

机译:大鼠奥沙利铂的药代动力学和毒性动力学:毒性因子在氧化蛋白和其他铂抗肿瘤衍生物诱导的肾毒性和髓鞘抑制中的应用。

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PURPOSE: We previously reported that the product of the area under the plasma concentration-time curve (AUC(p)) and a toxicity factor, which in turn was defined as the product of the apparent ratio of tissue to plasma concentration (Kp(app)) and the apparent hydrolysis rate constant (k(hydrolysis)), was a determinant of the different degrees of toxicities induced by platinum drugs, cisplatin, carboplatin and nedaplatin. We tested this model with oxaliplatin. METHODS: Oxaliplatin was administered to rats by intravenous bolus or infusion, and the linearity of pharmacokinetics, total clearance and the Kp(app) at steady state were determined. k(hydrolysis) was determined in vitro. Nephrotoxicity was estimated from blood urea nitrogen (BUN) level and myelosuppression from platelet count. RESULTS: The platelet count decreased dose-dependently, but BUN did not increase significantly. The degree of decrease in platelet count caused by oxaliplatin and the other three platinum drugs was not explained by the differences of AUC(p) and AUC for the bone marrow but was fitted by a combination of AUC(p) and the toxicity factor (r = 0.908, P < 0.001). CONCLUSION: The product of AUC(p) and the toxicity factor is a useful predictor of the degree of toxicity of oxaliplatin as has been observed with other platinum drugs.
机译:目的:我们之前报道的是,血浆浓度 - 时间曲线(AUC(P))和毒性因子下的该区域的产物被定义为组织与血浆浓度的表观比(KP(APP ))和表观水解速率常数(K(水解))是铂药物,顺铂,卡铂和Nedaplatin诱导的不同毒性的决定因素。我们用oxaliplatin测试了这个模型。方法:通过静脉注射推注或输注给予大鼠大鼠的奥沙利铂,测定药代动力学,总间隙和KP(APP)的线性。 k(水解)在体外测定。从血液尿素氮(BUN)水平和血小板计数中的髓抑制估计肾毒性。结果:血小板计数依赖性降低,但是面包未显着增加。奥克拉铂和其他三种铂药引起的血小板计数的程度未被骨髓(P)和AUC的AUC和AUC的差异解释,但通过AUC(P)和毒性因子的组合(R. = 0.908,p <0.001)。结论:AUC(P)和毒性因子的产物是奥克拉铂毒性程度的有用预测因子,如同其他铂药物所观察到。

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