4.7 Review

Pillararene-based supramolecular systems for theranostics and bioapplications

期刊

SCIENCE CHINA-CHEMISTRY
卷 64, 期 5, 页码 688-700

出版社

SCIENCE PRESS
DOI: 10.1007/s11426-020-9932-9

关键词

pillararenes; self-assembly; theranostics; drug delivery; supra-amphiphiles

资金

  1. National Natural Science Foundation of China [22035006]
  2. King Abdullah University of Scienceand Technology Office of Sponsored Research [OSR-2019-CRG8-4032]

向作者/读者索取更多资源

Pillararenes and their derivatives are important macrocycles in supramolecular chemistry, widely studied and applied in various fields, especially in biological and medical areas. They can be used to construct functional biomaterials, increase water solubility and biocompatibility of drugs, and modify solid materials to enhance their functions and controllability. The review summarizes recent efforts on pillararene-based supramolecular systems with theranostics and other biological applications, outlining design principles, preparation strategies, identifications and bio-applications, as well as future challenges and directions in the field.
As an emerging type of important macrocycles for supramolecular chemistry, pillararenes and their derivatives have been widely studied and applied in numerous fields, which intensively promotes the development of chemistry, materials science and biology. Pillararene-based theranostic systems are of special interest in the biological and medical areas as they have shown very promising results. Owing to easy preparation, reliable guest affinity, good biocompatibility and stability, pillararenes are frequently used to construct functional biomaterials. On one hand, pillararenes can either be used individually or form diversiform self-assemblies such as micelles, nanoparticles and vesicles to increase water solubility and biocompatibility of drugs. On the other hand, it is promising to modify solid materials like framework materials, silica nanoparticles and graphene oxides with pillararene derivatives to enhance their functions and controllability. In this review, we summarize recent endeavors of pillararene-based supramolecular systems with theranostics and other biological applications comprising drug delivery chemotherapy, photodynamic/photothermal therapy, antimicrobials, bioimaging, etc. By introducing several typical examples, the design principles, preparation strategies, identifications and bio-applications of these pillararene-based supramolecular systems are described. Future challenges and directions of this field are also outlined.

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