Webb Joseph A, Bardhan Rizia
Department of Chemical and Biomolecular Engineering Department, Vanderbilt University, Nashville, TN 37235, USA.
Nanoscale. 2014 Mar 7;6(5):2502-30. doi: 10.1039/c3nr05112a. Epub 2014 Jan 21.
Gold nanostructures possess unique characteristics that enable their use as contrast agents, as therapeutic entities, and as scaffolds to adhere functional molecules, therapeutic cargo, and targeting ligands. Due to their ease of synthesis, straightforward surface functionalization, and non-toxicity, gold nanostructures have emerged as powerful nanoagents for cancer detection and treatment. This comprehensive review summarizes the progress made in nanomedicine with gold nanostructures (1) as probes for various bioimaging techniques including dark-field, one-photon and two-photon fluorescence, photothermal optical coherence tomography, photoacoustic tomography, positron emission tomography, and surface-enhanced Raman scattering based imaging, (2) as therapeutic components for photothermal therapy, gene and drug delivery, and radiofrequency ablation, and (3) as a theranostic platform to simultaneously achieve both cancer detection and treatment. Distinct from other published reviews, this article also discusses the recent advances of gold nanostructures as contrast agents and therapeutic actuators for inflammatory diseases including atherosclerotic plaque and arthritis. For each of the topics discussed above, the fundamental principles and progress made in the past five years are discussed. The review concludes with a detailed future outlook discussing the challenges in using gold nanostructures, cellular trafficking, and translational considerations that are imperative for rapid clinical viability of plasmonic nanostructures, as well as the significance of emerging technologies such as Fano resonant gold nanostructures in nanomedicine.
金纳米结构具有独特的特性,使其能够用作造影剂、治疗实体以及附着功能分子、治疗药物和靶向配体的支架。由于其易于合成、表面功能化简便且无毒,金纳米结构已成为用于癌症检测和治疗的强大纳米制剂。这篇综述总结了金纳米结构在纳米医学领域取得的进展:(1)作为各种生物成像技术的探针,包括暗场、单光子和双光子荧光、光热光学相干断层扫描、光声断层扫描、正电子发射断层扫描以及基于表面增强拉曼散射的成像;(2)作为光热疗法、基因和药物递送以及射频消融的治疗成分;(3)作为同时实现癌症检测和治疗的诊疗平台。与其他已发表的综述不同,本文还讨论了金纳米结构作为包括动脉粥样硬化斑块和关节炎在内的炎症性疾病的造影剂和治疗激活剂的最新进展。对于上述每个主题,都讨论了过去五年中的基本原理和取得的进展。综述最后详细展望了未来,讨论了使用金纳米结构的挑战、细胞转运以及对于等离子体纳米结构快速临床可行性至关重要的转化考量,以及诸如法诺共振金纳米结构等新兴技术在纳米医学中的意义。