Lu Bing, Xia Jiachen, Huang Yuying, Yao Yong
School of Chemistry and Chemical Engineering, Nantong University, Nantong, Jiangsu, 226019, P. R. China.
Chem Commun (Camb). 2023 Oct 10;59(81):12091-12099. doi: 10.1039/d3cc04021f.
Pillararenes have columnar architectures with electron-rich cavities to endow themselves with unique host-guest complexation capability. Easy structural modifiability facilitates them to be used in many applications. Currently, pillararene based drug delivery systems (DDSs) have been developed as a powerful tool for precise diagnosis and treatment of cancer. Various functional guest molecules could be integrated with pillararenes to construct nanomaterials for cancer chemotherapy, phototherapy and chemodynamic therapy. In order to improve cancer therapy efficacy, active targeted DDSs have become particularly important. Benefiting from the good host-guest properties and structural variability of pillararenes, tumor targeting groups could be easily introduced into pillararene based DDSs to realize precise drug delivery at tumor sites. In this feature article, we provide a comprehensive summary of the present design strategy for pillararene based active targeted DDSs, which can be classified into three types namely host-guest complexation, charge reversal and targeted group modified pillararenes. Some important examples are selected to for a detailed discussion on their respective strengths and weaknesses.
柱芳烃具有柱状结构,其空腔富含电子,使其具有独特的主客体络合能力。易于进行结构修饰便于它们应用于许多领域。目前,基于柱芳烃的药物递送系统(DDSs)已被开发成为精确诊断和治疗癌症的有力工具。各种功能性客体分子可与柱芳烃整合,以构建用于癌症化疗、光疗和化学动力学疗法的纳米材料。为了提高癌症治疗效果,主动靶向药物递送系统变得尤为重要。受益于柱芳烃良好的主客体性质和结构可变性,肿瘤靶向基团可轻松引入基于柱芳烃的药物递送系统,以实现肿瘤部位的精确药物递送。在这篇专题文章中,我们全面总结了基于柱芳烃的主动靶向药物递送系统的当前设计策略,该策略可分为三种类型,即主客体络合、电荷反转和靶向基团修饰的柱芳烃。我们选择了一些重要实例,对它们各自的优缺点进行详细讨论。