摘要
背景:血-脑屏障转运是药物候选药物中需要考虑的一个重要过程.。血脑屏障保护大脑免受毒理学药物的影响,因此,也是建立记忆的。这是一种限制药物进入大脑的机制。虽然药物转运中存在着不同而复杂的机制,但在这篇综述中,我们重点讨论了对药物转运的预测。通过血脑屏障的被动扩散。 方法:阐述了预测血脑屏障通透性的配体模型和结构模型。 结果:建立了多种二维和三维QSPR/QSAR模型,建立了与血脑屏障通透性的定量和定性关系。我们解释NED与被动扩散相关的不同类型的描述符以及数据分析方法。此外,我们还讨论了其他类型的分子结构模拟的适用性。渗透率实验测量和硅预测方法的挑战与局限性也被描述。 结论:改进不同类型硅质模型的血脑屏障通透性预测对优化中枢神经系统药物发现和开发过程至关重要。
关键词: 血脑屏障,中枢神经系统,分子描述符,QSAR,分子动力学,机制。
Current Medicinal Chemistry
Title:Ligand and Structure-based Modeling of Passive Diffusion through the Blood-Brain Barrier
Volume: 25 Issue: 9
关键词: 血脑屏障,中枢神经系统,分子描述符,QSAR,分子动力学,机制。
摘要: Background: Blood-brain barrier transport is an important process to be considered in drug candidates. The blood-brain barrier protects the brain from toxicological agents and, therefore, also establishes a restrictive mechanism for the delivery of drugs into the brain. Although there are different and complex mechanisms implicated in drug transport, in this review we focused on the prediction of passive diffusion through the blood-brain barrier.
Methods: We elaborated on ligand-based and structure-based models that have been described to predict the blood-brain barrier permeability.
Results: Multiple 2D and 3D QSPR/QSAR models and integrative approaches have been published to establish quantitative and qualitative relationships with the blood-brain barrier permeability. We explained different types of descriptors that correlate with passive diffusion along with data analysis methods. Moreover, we discussed the applicability of other types of molecular structure-based simulations, such as molecular dynamics, and their implications in the prediction of passive diffusion. Challenges and limitations of experimental measurements of permeability and in silico predictive methods were also described.
Conclusion: Improvements in the prediction of blood-brain barrier permeability from different types of in silico models are crucial to optimize the process of Central Nervous System drug discovery and development.
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Cite this article as:
Ligand and Structure-based Modeling of Passive Diffusion through the Blood-Brain Barrier, Current Medicinal Chemistry 2018; 25 (9) . https://dx.doi.org/10.2174/0929867324666171106163742
DOI https://dx.doi.org/10.2174/0929867324666171106163742 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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