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用于癌症纳米技术及其他生物应用的纳米颗粒表征

Nanoparticle characterization for cancer nanotechnology and other biological applications.

作者信息

Brown Scott C, Palazuelos Maria, Sharma Parvesh, Powers Kevin W, Roberts Stephen M, Grobmyer Stephen R, Moudgil Brij M

机构信息

Department of Materials Science and Engineering, Particle Engineering Research Center, University of Florida, Gainesville, FL, USA.

出版信息

Methods Mol Biol. 2010;624:39-65. doi: 10.1007/978-1-60761-609-2_4.

Abstract

Nanotechnology is actively being used to develop promising diagnostics and therapeutics tools for the treatment of cancer and many other diseases. The unique properties of nanomaterials offer an exciting frontier of possibilities for biomedical researchers and scientists. Because existing knowledge of macroscopic materials does not always allow for adequate prediction of the characteristics and behaviors of nanoscale materials in controlled environments, much less in biological systems, careful nanoparticle characterization should accompany biomedical applications of these materials. Informed correlations between adequately characterized nanomaterial properties and reliable biological endpoints are essential for guiding present and future researchers toward clinical nanotechnology-based solutions for cancer. Biological environments are notoriously dynamic; hence, nanoparticulate interactions within these environments will likely be comparatively diverse. For this reason, we recommend that an interactive and systematic approach to material characterization be taken when attempting to elucidate or measure biological interactions with nanoscale materials. We intend for this chapter to be a practical guide that could be used by researchers to identify key nanomaterial characteristics that require measurement for their systems and the appropriate techniques to perform those measurements. Each section includes a basic overview of each measurement and notes on how to address some of the common difficulties associated with nanomaterial characterization.

摘要

纳米技术正积极用于开发治疗癌症和许多其他疾病的有前景的诊断和治疗工具。纳米材料的独特性质为生物医学研究人员和科学家提供了一个令人兴奋的可能性前沿。由于对宏观材料的现有认识并不总是能够充分预测纳米级材料在受控环境中的特性和行为,更不用说在生物系统中的情况了,因此在这些材料的生物医学应用中应仔细进行纳米颗粒表征。充分表征的纳米材料特性与可靠的生物学终点之间的明智关联对于引导当前和未来的研究人员朝着基于临床纳米技术的癌症解决方案发展至关重要。生物环境是出了名的动态环境;因此,这些环境中的纳米颗粒相互作用可能会相对多样。出于这个原因,我们建议在试图阐明或测量与纳米级材料的生物相互作用时,采用交互式和系统性的材料表征方法。我们希望本章能成为一份实用指南,研究人员可利用它来确定其系统中需要测量的关键纳米材料特性以及进行这些测量的适当技术。每个部分都包括每种测量的基本概述以及关于如何解决与纳米材料表征相关的一些常见困难的说明。

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