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Mathematical Modeling and Simulation to Investigate the CNS Transport Characteristics of Nanoemulsion-Based Drug Delivery Following Intranasal Administration

机译:数学建模与仿真研究鼻内给药后纳米乳素的药物递送的CNS传输特性

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PurposeDespite encouraging preclinical results, mechanisms of CNS drug delivery following intranasal dosing of nanoemulsions remain incompletely understood. Herein, the transport characteristics of intranasally administered nanoemulsions are investigated using mathematical modeling and simulation.MethodsA compartmental model was developed to describe systemic and brain pharmacokinetics of drug solutions following intranasal dosing in rodents. The association between transport processes and CNS drug delivery was predicted using sensitivity analysis. Published pharmacokinetic data for four drugs; dosed as a nanoemulsion and aqueous solution were modeled to characterize differences in transport processes across formulations.ResultsThe intranasal model structure performed in a drug agnostic fashion. Sensitivity analysis suggested that though the extent of CNS drug delivery depends on nasal bioavailability, the CNS targeting efficiency is only sensitive to changes in drug permeability across the nasal epithelium. Modeling results indicated that nanoemulsions primarily improve nasal bioavailability and drug permeability across the olfactory epithelium, with minimal effect on drug permeability across the non-olfactory epithelium.ConclusionsUsing mathematical modeling we outlined dominant transport pathways following intranasal dosing, predicted the association between transport pathways and CNS drug delivery, predicted human CNS delivery after accounting for inter-species differences in nasal anatomy, and quantified the CNS delivery potential of different formulations in rodents.
机译:Purpostespite令人鼓舞的临床前结果,鼻内乳液的鼻内给药后CNS药物递送的机制仍然不完全理解。这里,使用数学建模研究了鼻内给药的纳米乳液的传输特性和仿真。开发了几个分区模型,描述了啮齿动物鼻内给药后药物溶液的全身和脑药代动力学。使用敏感性分析预测运输过程和CNS药物递送之间的关联。发表了四种药物的药代动力学数据;作为纳米乳剂和水溶液给予含水溶液,以表征跨制剂的运输过程的差异。鼻内模型结构以药物不良方式进行。敏感性分析表明,尽管CNS药物递送的程度取决于鼻生物利用度,但CNS靶向效率仅对鼻上皮细胞上皮的药物渗透性的变化敏感。建模结果表明,纳米乳液主要改善嗅觉上皮的鼻生物利用度和药物渗透性,对非嗅觉上皮的药物渗透性最小。结论数学建模,我们概述了鼻内给药后的主要运输途径,预测了运输途径与CNS之间的关联药物递送,预测人体CNS递送后核对鼻解剖学的物种间差异,并量化了啮齿动物中不同配方的CNS输送潜力。

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