Universidad de la Habana, Faculty of Chemistry, Department of Inorganic Chemistry , Zapata y G, Vedado, 10400, Ciudad de la Habana , Cuba +53 7 8792145 ; +53 7 8735774 ;
Expert Opin Drug Deliv. 2014 May;11(5):741-52. doi: 10.1517/17425247.2014.891582. Epub 2014 Feb 24.
Gold nanoparticles display a unique combination of chemical inertness, surface chemistry and size- and shape-dependent electronic and optical properties, which render them ideal for clinical applications.
The present article describes recent advancements on the application of gold nanoparticles in vaccine development and gene therapy, with augmented efficiencies in cell uptake, specific binding to bioreceptors in cells, protection of conjugated biomolecules and so forth. Additionally, we discuss how the electronic structure of the nanoparticles can be exploited for enhanced radiotherapy and X-ray tomography, while their optical properties can be used for photothermal cancer therapy or light-triggered drug delivery systems for enhanced chemotherapy.
We analyze certain critical aspects and possible challenges that should be solved in order to use gold nanoparticle conjugates in vaccine research, as well as on the potential combination of properties to improve gene therapy and cancer treatment.
金纳米颗粒具有独特的化学惰性、表面化学性质以及尺寸和形状依赖性的电子和光学特性,这使它们非常适合临床应用。
本文描述了金纳米颗粒在疫苗开发和基因治疗中的应用的最新进展,这些应用在细胞摄取、与细胞内生物受体的特异性结合、共轭生物分子的保护等方面都提高了效率。此外,我们还讨论了如何利用纳米颗粒的电子结构来增强放射治疗和 X 射线层析成像,以及如何利用其光学特性进行光热癌症治疗或光触发药物输送系统以增强化学疗法。
我们分析了在疫苗研究中使用金纳米颗粒缀合物以及为了提高基因治疗和癌症治疗效果而结合多种特性时需要解决的某些关键方面和可能存在的挑战。