Overcoming the Blood–Brain Barrier: Multifunctional Nanomaterial‐Based Strategies for Targeted Drug Delivery in Neurological Disorders

血脑屏障 药物输送 药品 靶向给药 医学 药物输送到大脑 药理学 纳米技术 中枢神经系统 内科学 材料科学
作者
Callan D. McLoughlin,Sarah Nevins,Joshua B. Stein,Mehrdad Khakbiz,Ki‐Bum Lee
出处
期刊:Small science [Wiley]
标识
DOI:10.1002/smsc.202400232
摘要

The development of effective therapies for neurological disorders is a growing area of research due to the increasing prevalence of these conditions. Some neurological disorders that are prevalent and remain difficult to treat are glioma, neurodegenerative disease, ischemic stroke, and traumatic brain injury. Subsequently, the therapeutic efficacy of small molecules, proteins, and oligonucleotides remains a challenge due to the presence of the blood–brain barrier (BBB), a highly selective semipermeable membrane. To this end, multifunctional nanomaterials have emerged as promising vehicles for targeted drug delivery to the brain, due to their ability to transport therapeutics across the BBB selectively. The design of advanced nanomaterial‐based drug delivery systems capable of overcoming the BBB is influenced by many factors, such as fabrication technique and surface modification. This review explores the diverse range of nanomaterials, including polymer, lipid, gold, magnetic, and carbon‐based nanostructures, capable of effectively passing the BBB. These materials cross the BBB via a variety of established transport mechanisms for targeted delivery of therapeutics to the brain. Moreover, the structure and function of the BBB are highlighted and the potential for nanotechnology to aid the treatment of neurological disorders based on their ability to undergo transcytosis into the brain is highlighted.

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