Laboratory of Medicinal Chemistry and Molecular Diagnosis of the Ministry of Education, Key Laboratory of Chemical Biology of Hebei Province, College of Chemistry and Environmental Science, Hebei University, Baoding 071002, P. R. China.
Chimie ParisTech, PSL University, CNRS, Institut de Recherche de Chimie Paris, 11 rue Pierre et Marie Curie, 75231 Paris, France.
Chem Commun (Camb). 2020 Jun 2;56(44):5865-5876. doi: 10.1039/d0cc02001j.
Owing to its spatiotemporal selectivity and noninvasive nature, photodynamic therapy (PDT) has become a promising approach for the treatment of cancer. However, the non-targeting capability and the accompanying side effects of PDT as well as the low solubility/stability of photosensitizers (PSs) seriously limit its further development. In recent years, host-guest interaction based supramolecular chemistry has attracted more and more attention benefiting from its distinctive properties to introduce macrocyclic hosts including cyclodextrins (CDs), calix[n]arenes (CAs), cucurbit[n]urils (CBs), pillar[n]arenes (PAs), crown ethers, etc. into supramolecular systems, without multiple synthesis steps and complicated purification processes. In particular, supramolecular PDT systems constructed based on macrocylic hosts and PSs through host-guest interactions provide ideal platforms to overcome the limitations of PDT effectively. In this review, recent achievements made in supramolecular PDT systems based on host-guest interactions are comprehensively overviewed, which are categorized into four sections according to the types of macrocyclic hosts. Furthermore, supramolecular PDT combined with other treatments for synergistic therapy is well elucidated. In addition, challenges and perspectives of new supramolecular PDT systems and their potential clinical application are also discussed at the end of the review.
由于光动力疗法(PDT)具有时空选择性和非侵入性,因此成为治疗癌症的一种很有前途的方法。然而,PDT 的非靶向能力和伴随的副作用以及光敏剂(PSs)的低溶解度/稳定性严重限制了其进一步发展。近年来,基于主客体相互作用的超分子化学由于其独特的性质吸引了越来越多的关注,将包括环糊精(CDs)、杯芳烃(CAs)、瓜环(CBs)、柱芳烃(PAs)、冠醚等大环主体引入超分子体系,无需进行多步合成和复杂的纯化过程。特别是,通过主客体相互作用构建的基于大环主体和 PSs 的超分子 PDT 系统为有效克服 PDT 的局限性提供了理想的平台。本综述全面概述了基于主客体相互作用的超分子 PDT 系统的最新研究成果,根据大环主体的类型将其分为四类。此外,还详细阐述了超分子 PDT 与其他联合治疗协同治疗的应用。最后,还讨论了新型超分子 PDT 系统的挑战和前景及其在临床应用中的潜力。