Chong Lori, Vannoy Charles H, Noor Muhammad Omair, Krull Ulrich J
Chemical Sensors Group, Department of Chemical & Physical Sciences, University of Toronto Mississauga, 3359 Mississauga Road North, Mississauga, Ontario L5L 1C6, Canada.
Ther Deliv. 2012 Apr;3(4):479-99. doi: 10.4155/tde.12.15.
The concept of theranostics arises from the unification of both diagnostic and therapeutic applications into a single package. The implementation of nanoparticles, such as semiconductor quantum dots (QDs), to achieve theranostic applications, offers great potential for development of methods that are suitable for personalized medicine. Researchers have taken advantage of the physiochemical properties of QDs to elicit novel bioconjugation techniques that enable the attachment of multifunctional moieties on the surface of QDs. In this review, the diagnostic and therapeutic applications of QDs that feature the use of nucleic acids are highlighted with a particular emphasis on the possibility of combinatorial applications. Nucleic acid research is of particular interest for gene therapy, and is relevant to the understanding of gene regulation pathways and gene expression dynamics. Recent toxicity studies featuring multifunctional QDs are also examined. Future perspectives discussing the expected development of this field conclude the article.
诊疗一体化的概念源于将诊断和治疗应用整合到一个单一的体系中。纳米颗粒(如半导体量子点)在诊疗一体化应用中的实现,为开发适用于个性化医疗的方法提供了巨大潜力。研究人员利用量子点的物理化学性质开发了新型生物共轭技术,使多功能基团能够附着在量子点表面。在这篇综述中,重点介绍了利用核酸的量子点的诊断和治疗应用,特别强调了组合应用的可能性。核酸研究在基因治疗中尤为重要,并且与基因调控途径和基因表达动态的理解相关。还研究了近期关于多功能量子点的毒性研究。文章最后讨论了该领域预期发展的未来展望。