Department of Biomedical Engineering, Rutgers, The State University of New Jersey, New Brunswick, USA.
J Pharmacokinet Pharmacodyn. 2022 Dec;49(6):657-671. doi: 10.1007/s10928-022-09827-7. Epub 2022 Oct 25.
Cerebrospinal fluid (CSF) plays a vital role in maintaining brain homeostasis and recent research has focused on elucidating the role that convective flow of CSF plays in brain health. This paper describes a computational compartmental model of how CSF dynamics affect drug pharmacokinetics in the rat brain. Our model implements a local, sustained release approach for drug delivery to the brain. Simulation outputs highlight the potential for modulating CSF flow to improve overall drug pharmacokinetics in the central nervous system and suggest that concomitant CSF modulation and optimized drug release rates from implantable depots can be used to engineer the duration of action of chemotherapeutics. As an example, the tissue exposure of temozolomide, the standard of care treatment for glioblastoma, was modeled in conjunction with two CSF-modulating drugs: acetazolamide and verapamil. Simulations indicate that temozolomide exposure in the interstitial fluid is increased by 25% when using local sustained release delivery systems and concomitant acetazolamide delivery to reduce CSF production. This computational model can be used to produce insight on how to appropriately modulate CSF production and engineer drug release to tailor drug exposure in the brain while limiting off-target effects. As new research continues to elucidate the dynamic roles of CSF, this model can be further improved and leveraged to provide information on how CSF modulation may play a beneficial role in treating a wide variety of neurological disease.
脑脊液(CSF)在维持大脑内环境稳定方面起着至关重要的作用,最近的研究集中在阐明 CSF 对流在大脑健康中的作用。本文描述了一种计算性的脑室内模型,用于研究 CSF 动力学如何影响大鼠脑中的药物药代动力学。我们的模型采用局部、持续释放的方法将药物递送到大脑。模拟结果突出了调节 CSF 流动以改善中枢神经系统中药物总体药代动力学的潜力,并表明同时调节 CSF 和优化从植入式储库中释放药物的速率,可以用于设计化疗药物的作用持续时间。作为一个例子,我们结合两种调节 CSF 的药物(乙酰唑胺和维拉帕米)对替莫唑胺(胶质母细胞瘤的标准治疗药物)的组织暴露进行了建模。模拟结果表明,当使用局部持续释放递送系统和同时递送乙酰唑胺以减少 CSF 生成时,替莫唑胺在间质液中的暴露增加了 25%。该计算模型可用于深入了解如何适当调节 CSF 生成和设计药物释放,以调整大脑中的药物暴露,同时限制脱靶效应。随着新的研究继续阐明 CSF 的动态作用,该模型可以进一步改进和利用,以提供有关 CSF 调节如何在治疗各种神经疾病中发挥有益作用的信息。