Silva Gabriel A
Department of Bioengineering, University of California, San Diego, CA 92037, USA.
Surg Neurol. 2007 Feb;67(2):113-6. doi: 10.1016/j.surneu.2006.08.033.
Nanotechnology involves the design, synthesis, and characterization of materials and devices that have a functional organization in at least one dimension on the nanometer (ie, one billionth of a meter) scale. One area in which nanotechnology may have a significant clinical impact in neuroscience is the selective transport and delivery of drugs and other small molecules across the blood brain barrier that cannot cross otherwise. Using a variety of nanoparticles composed of different chemical compositions, different groups are exploring proof-of-concept approaches for the delivery of different antineoplastic drugs, oligonucleotides, genes, and magnetic resonance imaging contrast agents. This review discusses some of the main technical challenges associated with the development of nanotechnologies for delivery across the blood brain barrier and summarizes ongoing work.
纳米技术涉及材料和装置的设计、合成及表征,这些材料和装置在至少一个维度上具有纳米(即十亿分之一米)尺度的功能组织。纳米技术在神经科学领域可能产生重大临床影响的一个领域是药物和其他小分子跨血脑屏障的选择性运输和递送,否则它们无法穿越该屏障。不同的研究小组使用由不同化学成分组成的各种纳米颗粒,正在探索不同抗肿瘤药物、寡核苷酸、基因和磁共振成像造影剂递送的概念验证方法。本综述讨论了与开发用于跨血脑屏障递送的纳米技术相关的一些主要技术挑战,并总结了正在进行的工作。