Department of Pediatrics, Pharmacology and The Kennedy Center for Research on Human Development, Vanderbilt University School of Medicine, Nashville, TN, USA.
Prog Brain Res. 2009;180:141-52. doi: 10.1016/S0079-6123(08)80008-8. Epub 2009 Dec 8.
The exciting advances within nanotechnology are beginning to be harnessed by the medical field. Nanoparticles have been used for drug delivery into the brain and have been explored for imaging, sensing, and analytical purposes. The science of nanoparticles encompasses a vast array of biological, chemical, physical, and engineering research, different aspects of which are specifically addressed in each of the chapters of this volume. Nanomaterials such as nanospheres, nanotubes, nanowires, fullerene derivatives (buckyballs), and quantum dots (Qdots) are at the forefront of scientific attention, as they provide new consumer products and advance the scientific development of novel analytical tools in medicine and in the physical sciences. This chapter will briefly survey some aspects of nanoparticle biology focusing on the following: (1) the role of olfactory nanoparticle transport into the central nervous system (CNS), both as a potential route for effective drug delivery and as a route for the passage of noxious substances into the brain proper; (2) nanoparticles as sensors of cell function and toxicity; and (3) some adverse effects of nanoparticles on the dysregulation of brain redox status.
纳米技术的令人兴奋的进展开始被医学领域所利用。纳米粒子已被用于将药物递送到大脑中,并已被探索用于成像、传感和分析目的。纳米粒子科学涵盖了广泛的生物、化学、物理和工程研究,本卷各章节专门针对其中的不同方面进行了探讨。纳米材料,如纳米球、纳米管、纳米线、富勒烯衍生物(巴基球)和量子点(Qdots),是科学关注的前沿,因为它们提供了新的消费产品,并推动了医学和物理科学中新型分析工具的科学发展。本章将简要概述纳米颗粒生物学的一些方面,重点关注以下内容:(1)嗅觉纳米颗粒向中枢神经系统(CNS)的转运作用,既是有效药物输送的潜在途径,也是有害物质进入大脑的途径;(2)纳米颗粒作为细胞功能和毒性的传感器;以及(3)纳米颗粒对大脑氧化还原状态失调的一些不良影响。