Clinical Bridging Studies and Modeling Approach for Implementation of a Patient Centric Sampling Technique in Padsevonil Clinical Development.

IF 5 3区 医学 Q1 PHARMACOLOGY & PHARMACY
Hester Kramer, Ceyhun Bicer, Christian Otoul, Chiara Rospo, Merran Macpherson, Mark Watling, Massimo Bani, David Sciberras, Hugues Chanteux
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Abstract

Volumetric absorptive microsampling (VAMS) techniques have gained popularity these last years as innovative tool for collection of blood pharmacokinetic (PK) samples in clinical trials as they offer many advantages over dried blood spot and conventional venous blood sampling. The use of Mitra®, a blood collection device based on volumetric absorptive microsampling (VAMS) technology, was implemented during clinical development of padsevonil (PSL), an anti-seizure medication (ASM) candidate. The present study describes the approach used to bridge plasma (obtained from conventional venous blood sampling) and blood exposures (obtained with Mitra®) to support the use of Mitra as sole blood PK sampling method in clinical trials. Paired blood (using Mitra®) and plasma samples (using conventional venous blood sampling) were collected in healthy volunteers as well as in patients with epilepsy. PSL concentration in plasma and blood were analyzed using different approaches which included evaluation of blood-to-plasma ratios (B/P) over time, linear regression, Bland-Altman analysis as well as development of a linear-mixed effect model based on clinical pharmacology studies. Results showed that the observed in vivo B/P and the measured bias between the 2 collection methods were consistent with the measured in vitro B/P. Graphical analysis demonstrated a clear time effect on the B/P which was confirmed in the linear mixed effect model with sampling time identified as significant covariate. Finally, the built-in model was validated using independent datasets and was shown to adequately predict plasma concentration based on blood concentration with a mean bias of less than 9% (predicted versus observed plasma concentration).

Abstract Image

临床桥接研究和建模方法,以实现以患者为中心的抽样技术在帕德维尼临床开发。
近年来,体积吸收微采样(VAMS)技术作为临床试验中血液药代动力学(PK)样本采集的创新工具而广受欢迎,因为它比干血点和传统静脉血采样具有许多优点。Mitra®是一种基于体积吸收微采样(VAMS)技术的血液采集设备,在抗癫痫药物(ASM)候选药物padsevonil (PSL)的临床开发过程中实施。本研究描述了用于连接血浆(从传统静脉血取样获得)和血液暴露(使用Mitra®获得)的方法,以支持在临床试验中使用Mitra作为唯一的血液PK取样方法。在健康志愿者和癫痫患者中采集配对血液(使用Mitra®)和血浆样本(使用常规静脉血取样)。采用不同的方法分析血浆和血液中的PSL浓度,包括血浆比(B/P)随时间的变化,线性回归,Bland-Altman分析以及基于临床药理学研究的线性混合效应模型。结果表明,两种采集方法的体内B/P观测值和测量偏差与体外B/P测量值一致。图形分析表明,时间对B/P有明显的影响,这在抽样时间为显著协变量的线性混合效应模型中得到了证实。最后,使用独立数据集对内置模型进行了验证,并证明该模型能够充分预测基于血药浓度的血药浓度,平均偏差小于9%(预测血药浓度与观察血药浓度)。
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来源期刊
AAPS Journal
AAPS Journal 医学-药学
CiteScore
7.80
自引率
4.40%
发文量
109
审稿时长
1 months
期刊介绍: The AAPS Journal, an official journal of the American Association of Pharmaceutical Scientists (AAPS), publishes novel and significant findings in the various areas of pharmaceutical sciences impacting human and veterinary therapeutics, including: · Drug Design and Discovery · Pharmaceutical Biotechnology · Biopharmaceutics, Formulation, and Drug Delivery · Metabolism and Transport · Pharmacokinetics, Pharmacodynamics, and Pharmacometrics · Translational Research · Clinical Evaluations and Therapeutic Outcomes · Regulatory Science We invite submissions under the following article types: · Original Research Articles · Reviews and Mini-reviews · White Papers, Commentaries, and Editorials · Meeting Reports · Brief/Technical Reports and Rapid Communications · Regulatory Notes · Tutorials · Protocols in the Pharmaceutical Sciences In addition, The AAPS Journal publishes themes, organized by guest editors, which are focused on particular areas of current interest to our field.
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