Dennahy Isabel S, Han Zheng, MacCuaig William M, Chalfant Hunter M, Condacse Anna, Hagood Jordan M, Claros-Sorto Juan C, Razaq Wajeeha, Holter-Chakrabarty Jennifer, Squires Ronald, Edil Barish H, Jain Ajay, McNally Lacey R
Department of Surgery, University of Oklahoma Health Science Center, Oklahoma City, OK 73104, USA.
Department of Bioengineering, University of Oklahoma, Norman, OK 73019, USA.
Pharmaceutics. 2022 Apr 22;14(5):917. doi: 10.3390/pharmaceutics14050917.
Image-guided nanotheranostics have the potential to represent a new paradigm in the treatment of cancer. Recent developments in modern imaging and nanoparticle design offer an answer to many of the issues associated with conventional chemotherapy, including their indiscriminate side effects and susceptibility to drug resistance. Imaging is one of the tools best poised to enable tailoring of cancer therapies. The field of image-guided nanotheranostics has the potential to harness the precision of modern imaging techniques and use this to direct, dictate, and follow site-specific drug delivery, all of which can be used to further tailor cancer therapies on both the individual and population level. The use of image-guided drug delivery has exploded in preclinical and clinical trials although the clinical translation is incipient. This review will focus on traditional mechanisms of targeted drug delivery in cancer, including the use of molecular targeting, as well as the foundations of designing nanotheranostics, with a focus on current clinical applications of nanotheranostics in cancer. A variety of specially engineered and targeted drug carriers, along with strategies of labeling nanoparticles to endow detectability in different imaging modalities will be reviewed. It will also introduce newer concepts of image-guided drug delivery, which may circumvent many of the issues seen with other techniques. Finally, we will review the current barriers to clinical translation of image-guided nanotheranostics and how these may be overcome.
图像引导的纳米诊疗学有潜力代表癌症治疗的一种新范式。现代成像和纳米颗粒设计的最新进展为许多与传统化疗相关的问题提供了解决方案,包括其不加区分的副作用和对耐药性的易感性。成像是最适合实现癌症治疗个性化的工具之一。图像引导的纳米诊疗学领域有潜力利用现代成像技术的精确性,并利用其指导、规定和跟踪特定部位的药物递送,所有这些都可用于在个体和群体层面进一步定制癌症治疗。尽管临床转化尚处于初期阶段,但图像引导药物递送在临床前和临床试验中的应用已呈爆发式增长。本综述将聚焦于癌症靶向药物递送的传统机制,包括分子靶向的应用,以及纳米诊疗学的设计基础,重点关注纳米诊疗学在癌症中的当前临床应用。将对各种经过特殊工程设计的靶向药物载体,以及在不同成像模式下赋予纳米颗粒可检测性的标记策略进行综述。还将介绍图像引导药物递送的更新概念,这些概念可能规避其他技术中出现的许多问题。最后,我们将综述图像引导的纳米诊疗学临床转化的当前障碍以及如何克服这些障碍。