Opoku-Damoah Yaw, Wang Ruoning, Zhou Jianping, Ding Yang
State Key Laboratory of Natural Medicines, Department of Pharmaceutics, China Pharmaceutical University, 24 Tongjiaxiang, Nanjing 210009, China.
Theranostics. 2016 Apr 28;6(7):986-1003. doi: 10.7150/thno.14860. eCollection 2016.
The relevance of personalized medicine, aimed at a more individualized drug therapy, has inspired research into nano-based concerted diagnosis and therapeutics (theranostics). As the intention is to "kill two birds with one stone", scientists have already described the emerging concept as a treasured tailor for the future of cancer therapy, wherein the main idea is to design "smart" nanosystems to concurrently discharge both therapeutic and diagnostic roles. These nanosystems are expected to offer a relatively clearer view of the ingenious cellular trafficking pathway, in-situ diagnosis, and therapeutic efficacy. We herein present a detailed review of versatile nanosystems, with prominent examples of recently developed intelligent delivery strategies which have gained attention in the field of theranostics. These nanotheranostics include various mechanisms programmed in novel platforms to enable predetermined delivery of cargo to specific sites, as well as techniques to overcome the notable challenges involved in the efficacy of theranostics.
旨在实现更个性化药物治疗的精准医学的相关性,激发了对基于纳米的协同诊断与治疗(诊疗一体化)的研究。由于其目的是“一石二鸟”,科学家们已经将这一新兴概念描述为癌症治疗未来的珍贵定制方案,其主要理念是设计“智能”纳米系统,以同时发挥治疗和诊断作用。这些纳米系统有望提供关于巧妙的细胞运输途径、原位诊断和治疗效果的相对更清晰的见解。我们在此详细综述了多功能纳米系统,并列举了最近开发的智能递送策略的突出例子,这些策略在诊疗一体化领域受到了关注。这些纳米诊疗系统包括在新型平台中设计的各种机制,以实现将货物预先递送至特定部位,以及克服诊疗一体化疗效中涉及的显著挑战的技术。