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      Supramolecular chemotherapy based on host–guest molecular recognition: a novel strategy in the battle against cancer with a bright future

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          Abstract

          This review highlights the progress of supramolecular chemotherapy in cancer treatment based on host–guest interactions and provides guidance on the design of new targeting supramolecular chemotherapy combining diagnostic and therapeutic functions.

          Abstract

          Chemotherapy is currently one of the most effective ways to treat cancer. However, traditional chemotherapy faces several obstacles to clinical trials, such as poor solubility/stability, non-targeting capability and uncontrollable release of the drugs, greatly limiting their anticancer efficacy and causing severe side effects towards normal tissues. Supramolecular chemotherapy integrating non-covalent interactions and traditional chemotherapy is a highly promising candidate in this regard and can be appropriately used for targeted drug delivery. By taking advantage of supramolecular chemistry, some limitations impeding traditional chemotherapy for clinical applications can be solved effectively. Therefore, we present here a review summarizing the progress of supramolecular chemotherapy in cancer treatment based on host–guest recognition and provide guidance on the design of new targeting supramolecular chemotherapy combining diagnostic and therapeutic functions. Based on a large number of state-of-the-art studies, our review will advance supramolecular chemotherapy on the basis of host–guest recognition and promote translational clinical applications.

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          Metal-organic frameworks in biomedicine.

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            Thermal ablation of tumours: biological mechanisms and advances in therapy.

            Minimally invasive thermal ablation of tumours has become common since the advent of modern imaging. From the ablation of small, unresectable tumours to experimental therapies, percutaneous radiofrequency ablation, microwave ablation, cryoablation and irreversible electroporation have an increasing role in the treatment of solid neoplasms. This Opinion article examines the mechanisms of tumour cell death that are induced by the most common thermoablative techniques and discusses the rapidly developing areas of research in the field, including combinatorial ablation and immunotherapy, synergy with conventional chemotherapy and radiation, and the development of a new ablation modality in irreversible electroporation.
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              Metal-organic frameworks and self-assembled supramolecular coordination complexes: comparing and contrasting the design, synthesis, and functionality of metal-organic materials.

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                Author and article information

                Journal
                CSRVBR
                Chemical Society Reviews
                Chem. Soc. Rev.
                Royal Society of Chemistry (RSC)
                0306-0012
                1460-4744
                2017
                2017
                : 46
                : 22
                : 7021-7053
                Affiliations
                [1 ]State Key Laboratory of Chemical Engineering
                [2 ]Center for Chemistry of High-Performance & Novel Materials
                [3 ]Department of Chemistry
                [4 ]Zhejiang University
                [5 ]Hangzhou 310027
                Article
                10.1039/C6CS00898D
                28980674
                4158e234-60ae-4353-9afb-56a7908b4d55
                © 2017

                http://rsc.li/journals-terms-of-use

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