Nano carriers for drug transport across the blood–brain barrier

血脑屏障 药物输送 跨细胞 药理学 药品 毒品携带者 并行传输 医学 中枢神经系统 鼻腔给药 靶向给药 药物输送到大脑 神经科学 内吞作用 化学 纳米技术 生物 内科学 材料科学 磁导率 生物化学 受体
作者
Xinming Li,John Tsibouklis,Tingting Weng,Buning Zhang,Guoqiang Yin,Feng Guang-zhu,Yingde Cui,Irina N. Savina,Lyuba Mikhalovska,Susan Sandeman,Carol A. Howel,Sergey V. Mikhalovsky
出处
期刊:Journal of Drug Targeting [Taylor & Francis]
卷期号:25 (1): 17-28 被引量:258
标识
DOI:10.1080/1061186x.2016.1184272
摘要

Effective therapy lies in achieving a therapeutic amount of drug to the proper site in the body and then maintaining the desired drug concentration for a sufficient time interval to be clinically effective for treatment. The blood-brain barrier (BBB) hinders most drugs from entering the central nervous system (CNS) from the blood stream, leading to the difficulty of delivering drugs to the brain via the circulatory system for the treatment, diagnosis and prevention of brain diseases. Several brain drug delivery approaches have been developed, such as intracerebral and intracerebroventricular administration, intranasal delivery and blood-to-brain delivery, as a result of transient BBB disruption induced by biological, chemical or physical stimuli such as zonula occludens toxin, mannitol, magnetic heating and ultrasound, but these approaches showed disadvantages of being dangerous, high cost and unsuitability for most brain diseases and drugs. The strategy of vector-mediated blood-to-brain delivery, which involves improving BBB permeability of the drug-carrier conjugate, can minimize side effects, such as being submicrometre objects that behave as a whole unit in terms of their transport and properties, nanomaterials, are promising carrier vehicles for direct drug transport across the intact BBB as a result of their potential to enter the brain capillary endothelial cells by means of normal endocytosis and transcytosis due to their small size, as well as their possibility of being functionalized with multiple copies of the drug molecule of interest. This review provids a concise discussion of nano carriers for drug transport across the intact BBB, various forms of nanomaterials including inorganic/solid lipid/polymeric nanoparticles, nanoemulsions, quantum dots, nanogels, liposomes, micelles, dendrimers, polymersomes and exosomes are critically evaluated, their mechanisms for drug transport across the BBB are reviewed, and the future directions of this area are fully discussed.
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