血液肿瘤继发侵袭性真菌感染患者的伏立康唑群体药动学研究

    Population Pharmacokinetics of Voriconazole in Hematological Malignancy Patients with Invasive Fungal Infections

    • 摘要:
      目的 探讨能显著影响伏立康唑在血液恶性肿瘤患者继发侵袭性真菌感染患者中的群体药动学因素,进一步研究个体化给药最佳方案。
      方法 回顾性收集南昌大学第一附属医院血液科在2021年1月—2024年10月期间收治的80例血液恶性肿瘤合并继发侵袭性真菌感染并接受静脉滴注伏立康唑治疗患者的135例次伏立康唑血药谷浓度监测数据,使用非线性混合效应模型(NONMEM)进行建模和数据分析,并纳入协变量,协变量筛选采用分步法:前向纳入的显著性水平设定为ΔOFV>6.64(P<0.01),后向剔除设定为ΔOFV>10.83(P<0.001)。经内部验证(自举法、可视化预测检验等)与独立的外部验证模型的稳定性和预测能力后,确立最终模型。
      结果 为血液肿瘤继发侵袭性真菌感染患者建立了静脉内给药的一房室药动学模型,最终模型通过内部验证(Bootstrap 1 000次,成功率100%)和外部验证(平均预测误差MPE%=8.0%,平均绝对百分比误差MAPE%=14.7%)稳健性与预测性能良好(MPE%≤±20%、MAPE%≤30%)。模型的群体药动学参数清除率(clearance,CL)为2.61 L·h−1(95%置信区间为2.06 3.76 L),分布容积(volume of distribution,V)为100.07 L(95%置信区间为36.26~190.26 L)。观察到rs10912675和丙氨酸氨基转移酶(alanine aminotransferase,ALT)能够显著影响V,白细胞计数(white blood cell count,WBC)能显著影响CL。
      结论 最终模型具有良好的稳定性和预测性能,证实了rs10912675、ALT和WBC是导致伏立康唑药动学变异的主要因素。rs10912675、ALT和WBC可导致伏立康唑药动学变化,在血液肿瘤继发侵袭性真菌感染患者中,狭窄的治疗指数和病理生理异质性需要制定个体化给药方案。

       

      Abstract:
      OBJECTIVE To investigate the population pharmacokinetic factors significantly influencing voriconazole in hematologic malignancy patients with invasive fungal infections, and to optimize individualized dosing regimens.
      METHODS A total of 135 voriconazole trough concentration measurements were retrospectively collected from 80 patients with hematologic malignancies and secondary invasive fungal infections who received intravenous voriconazole therapy in the Department of Hematology at the First Affiliated Hospital of Nanchang University between January 2021 and October 2024. Nonlinear mixed-effects modeling(NONMEM) was employed for model development and data analysis, with covariates incorporated into the model. A stepwise approach was used for covariate selection: forward inclusion was set at a significance level of ΔOFV>6.64(P<0.01), and backward elimination was set at ΔOFV>10.83(P<0.001). Following internal validation(including bootstrap and visual predictive checks) and independent external validation to assess model stability and predictive performance, the final model was established.
      RESULTS A one-compartment pharmacokinetic model was established for intravenous administration in patients with hematologic malignancies and secondary invasive fungal infections. The final model demonstrated robust stability and satisfactory predictive performance through internal validation(bootstrap 1000 times, success rate 100%) and external validation(mean prediction error, MPE%=8.0%; mean absolute prediction error, MAPE%=14.7%), meeting the predefined acceptance criteria(MPE%≤±20%, MAPE%≤30%).The population pharmacokinetic parameters were estimated as follows: clearance(CL) was 2.61 L·h−1(95% confidence interval: 2.06–3.76 L·h−1), and volume of distribution(V) was 100.07 L(95% confidence interval: 36.26–190.26 L).Covariate analysis revealed that rs10912675 and alanine aminotransferase(ALT) significantly influenced the apparent volume of distribution(V), while white blood cell count(WBC) significantly affected the apparent clearance(CL).
      CONCLUSION The final model demonstrated satisfactory stability and predictive performance, confirming that rs10912675, ALT, and WBC are the primary factors contributing to the pharmacokinetic variability of voriconazole. Rs10912675, alanine aminotransferase (ALT), and white blood cell count (WBC) can induce alterations in voriconazole pharmacokinetics. In patients with hematological malignancies complicated by invasive fungal infections, the narrow therapeutic index and pathophysiological heterogeneity necessitate the development of individualized dosing regimens.

       

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