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Experimental Methods and Transport Models for Drug Delivery Across the Blood-Brain Barrier

机译:跨血脑屏障药物输送的实验方法和运输模型

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摘要

The blood-brain barrier (BBB) is a dynamic barrier essential for maintaining the micro-environment of the brain. Although the special anatomical features of the BBB determine its protective role for the central nervous system (CNS) from blood-born neurotoxins, however, the BBB extremely limits the therapeutic efficacy of drugs into the CNS, which greatly hinders the treatment of major brain diseases. This review summarized the unique structures of the BBB, described a variety of in vivo and in vitro experimental methods for determining the transport properties of the BBB, e.g., the permeability of the BBB to water, ions, and solutes including nutrients, therapeutic agents and drug carriers, and presented newly developed mathematical models which quantitatively correlate the anatomical structures of the BBB with its barrier functions. Finally, on the basis of the experimental observations and the quantitative models, several strategies for drug delivery through the BBB were proposed.
机译:血脑屏障(BBB)是动态屏障,对于维持大脑的微环境至关重要。尽管BBB的特殊解剖特征决定了其对血源性神经毒素对中枢神经系统(CNS)的保护作用,但是BBB极大地限制了进入CNS的药物的治疗功效,这极大地阻碍了主要脑疾病的治疗。这篇综述总结了血脑屏障的独特结构,描述了各种体内和体外实验方法来测定血脑屏障的转运特性,例如血脑屏障对水,离子和溶质(包括营养素,治疗剂和水)的渗透性。药物载体,并提出了新开发的数学模型,该模型定量地将BBB的解剖结构与其屏障功能相关联。最后,在实验观察和定量模型的基础上,提出了几种通过血脑屏障进行药物递送的策略。

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