Novel intranasal treatment for anxiety disorders using amiloride, an acid-sensing ion channel antagonist: Pharmacokinetic modeling and simulation.

IF 0.9 4区 医学 Q4 PHARMACOLOGY & PHARMACY
Mahmoud Azzeh, M. Battaglia, S. Davies, J. Strauss, P. Dogra, V. Yellepeddi
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引用次数: 1

Abstract

OBJECTIVE To develop a physiologically based pharmacokinetic (PBPK) model for amiloride, an acid-sensing ion channel (ASIC) antagonist, and to simulate its pharmacokinetics in plasma and the central nervous system following intranasal administration in a virtual human population. MATERIALS AND METHODS We first developed a PBPK model of amiloride after oral administration and optimized the model using data from five clinical studies. Next, we added a nasal compartment to the amiloride oral PBPK model and parameterized using data from previous clinical studies. We simulated amiloride's pharmacokinetics in plasma, brain, and cerebrospinal fluid (CSF) after intranasal administration of amiloride at various doses in a virtual human population. RESULTS The target amiloride concentration in the central nervous system required for maximal ASIC inhibition was achieved with a 75-mg intranasal amiloride dose. However, this finding is based on simulations performed using a mathematical model and needs to be further validated with appropriate clinical data. CONCLUSION The nasal PBPK model of amiloride could be used to design future clinical studies and allow for successful clinical translation of intranasal amiloride formulation.
使用酸敏离子通道拮抗剂阿米洛利治疗焦虑症的新型鼻内治疗:药代动力学建模和模拟。
目的建立酸敏离子通道(ASIC)拮抗剂阿米洛利的基于生理学的药代动力学(PBPK)模型,并模拟其在虚拟人群中鼻内给药后在血浆和中枢神经系统中的药代学。材料和方法我们首先开发了阿米洛利口服后的PBPK模型,并使用五项临床研究的数据对该模型进行了优化。接下来,我们在阿米洛利口服PBPK模型中添加了一个鼻腔隔室,并使用先前临床研究的数据进行参数化。我们模拟了在虚拟人群中鼻内给予不同剂量的阿米洛利后,阿米洛利在血浆、脑和脑脊液(CSF)中的药代动力学。结果75 mg阿米洛利鼻内剂量可达到中枢神经系统中最大ASIC抑制所需的阿米洛利目标浓度。然而,这一发现是基于使用数学模型进行的模拟,需要用适当的临床数据进行进一步验证。结论阿米洛利的鼻腔PBPK模型可用于设计未来的临床研究,并使阿米洛利鼻内制剂的临床转化成功。
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来源期刊
CiteScore
1.70
自引率
12.50%
发文量
116
审稿时长
4-8 weeks
期刊介绍: The International Journal of Clinical Pharmacology and Therapeutics appears monthly and publishes manuscripts containing original material with emphasis on the following topics: Clinical trials, Pharmacoepidemiology - Pharmacovigilance, Pharmacodynamics, Drug disposition and Pharmacokinetics, Quality assurance, Pharmacogenetics, Biotechnological drugs such as cytokines and recombinant antibiotics. Case reports on adverse reactions are also of interest.
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