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Population pharmacokinetic modeling of a subcutaneous depot for GnRH antagonist degarelix.

机译:GnRH拮抗剂地加瑞克的皮下储库的群体药代动力学模型。

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PURPOSE: The objective of this study is to develop a population pharmacokinetic (PK) model that describes the subcutaneous (SC) depot formation of gonadotropin-releasing hormone (GnRH) antagonist degarelix, which is being developed for treatment of prostate cancer, exhibiting dose-volume and dose-concentration dependent absorption. METHODS: The PK analysis is made in NONMEM through joint analysis of data from two phase I clinical studies; an intravenous infusion study and a single SC dose escalation study. The SC absorption is modeled using an approximation to Ficks' second law of diffusion out of a spherical depot. The dose-volume effect on the SC release is estimated using a B-spline basis whereas the bioavailability is modeled as a function of the dose-concentration. RESULTS: The SC depot model is approximated by using two concentric spherical compartments for the SC absorption combined with a two-compartment disposition model. The results indicate that the volume effect is most apparent at low injection volumes whereas the effect is diminishing at higher injection volumes. The dose-concentration effect on the bioavailability is estimated to decrease at increasing dose-concentrations. CONCLUSIONS: The presented SC depot model describes the PK profile of GnRH antagonist degarelix. This modeling approach might also be applicable for other depot-formulated drugs exhibiting complex PK profiles.
机译:目的:本研究的目的是建立一种描述其促性腺激素释放激素(GnRH)拮抗剂degarelix的皮下(SC)储库形成的群体药代动力学(PK)模型,该模型正在开发中,用于治疗前列腺癌,并具有剂量-体积和剂量浓度依赖性吸收。方法:通过对两项I期临床研究数据的联合分析,在NONMEM中进行PK分析。静脉输液研究和单次SC剂量递增研究。 SC吸收是使用Ficks的第二种定律从球形油库扩散出来的近似方法建模的。使用B样条估计对SC释放的剂量-体积效应,而将生物利用度建模为剂量-浓度的函数。结果:SC库模型是通过使用两个同心球形隔室进行SC吸收并结合两个隔室的布置模型进行近似的。结果表明,体积效应在低进样量时最明显,而在高进样量时效果逐渐减弱。剂量浓度对生物利用度的影响估计随着剂量浓度的增加而降低。结论:提出的SC储库模型描述了GnRH拮抗剂地加瑞克的PK曲线。这种建模方法也可能适用于其他具有复杂PK轮廓的长效制剂。

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