Department of Oncology, Zhongnan Hospital of Wuhan University & Hubei Key Laboratory of Tumor Biological Behaviors & Hubei Cancer Clinical Study Center, No 169 Donghu Road, Wuchang District, Wuhan 430071, PR China.
Nanomedicine (Lond). 2012 Mar;7(3):411-28. doi: 10.2217/nnm.12.9.
Cancer is one of the most serious health threats worldwide. Personalized oncology holds potential for future cancer care in clinical practice, where each patient could be delivered individualized medicine on the basis of key biological features of an individual tumor. One of the most urgent problems is to develop novel approaches that incorporate the increasing molecular information into the understanding of cancer biological behaviors for personalized oncology. Quantum dots are a heterogeneous class of engineered fluorescent nanoparticles with unique optical and chemical properties, which make them promising platforms for biomedical applications. With the unique optical properties, the utilization of quantum dot-based nanotechnology has been expanded into a wide variety of attractive biomedical applications for cancer diagnosis, monitoring, pathogenesis, treatment, molecular pathology and heterogeneity in combination with cancer biomarkers. Here, we focus on the clinical application of quantum dot-based nanotechnology in personalized oncology, covering topics on individualized cancer diagnosis and treatment by in vitro and in vivo molecular imaging technologies, and in-depth understanding of the biological behaviors of tumors from a nanotechnology perspective. In addition, the major challenges in translating quantum dot-based nanotechnology into clinical application and promising future directions in personalized oncology are also discussed.
癌症是全球面临的最严重的健康威胁之一。肿瘤个体化医学有望在临床实践中为未来的癌症治疗提供服务,使每位患者都能根据个体肿瘤的关键生物学特征接受个体化药物治疗。其中最紧迫的问题之一是开发新方法,将日益增加的分子信息纳入对癌症生物学行为的理解,以实现肿瘤个体化医学。量子点是一类具有独特光学和化学性质的工程荧光纳米粒子,它们是生物医学应用的有前途的平台。量子点具有独特的光学特性,其基于纳米技术的应用已经扩展到许多有吸引力的生物医学应用中,包括癌症诊断、监测、发病机制、治疗、分子病理学以及与癌症生物标志物结合的异质性。在这里,我们重点介绍基于量子点的纳米技术在肿瘤个体化医学中的临床应用,涵盖了通过体外和体内分子成像技术进行个体化癌症诊断和治疗的主题,以及从纳米技术角度深入了解肿瘤的生物学行为。此外,还讨论了将基于量子点的纳米技术转化为临床应用的主要挑战和肿瘤个体化医学的有前途的未来方向。