Literature DB >> 23379791

Supramolecular nanostructures formed by anticancer drug assembly.

Andrew G Cheetham1, Pengcheng Zhang, Yi-an Lin, Lye Lin Lock, Honggang Cui.   

Abstract

We report here a supramolecular strategy to directly assemble the small molecular hydrophobic anticancer drug camptothecin (CPT) into discrete, stable, well-defined nanostructures with a high and quantitative drug loading. Depending on the number of CPTs in the molecular design, the resulting nanostructures can be either nanofibers or nanotubes, and have a fixed CPT loading content ranging from 23% to 38%. We found that formation of nanostructures provides protection for both the CPT drug and the biodegradable linker from the external environment and thus offers a mechanism for controlled release of CPT. Under tumor-relevant conditions, these drug nanostructures can release the bioactive form of CPT and show in vitro efficacy against a number of cancer cell lines. This strategy can be extended to construct nanostructures of other types of anticancer drugs and thus presents new opportunities for the development of self-delivering drugs for cancer therapeutics.

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Year:  2013        PMID: 23379791      PMCID: PMC3609949          DOI: 10.1021/ja3115983

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  38 in total

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6.  Kinetics of lactone hydrolysis in antitumor drugs of camptothecin series as studied by fluorescence spectroscopy.

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  100 in total

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2.  Synthesis and Self-Assembly of a Mikto-Arm Star Dual Drug Amphiphile Containing both Paclitaxel and Camptothecin.

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3.  Molecular Dynamics Simulations of Supramolecular Anticancer Nanotubes.

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6.  Molecular design and synthesis of self-assembling camptothecin drug amphiphiles.

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7.  Biodegradable cationic polymeric nanocapsules for overcoming multidrug resistance and enabling drug-gene co-delivery to cancer cells.

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8.  Coarse-grained molecular dynamics studies of the structure and stability of peptide-based drug amphiphile filaments.

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9.  A redox responsive, fluorescent supramolecular metallohydrogel consists of nanofibers with single-molecule width.

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10.  Supramolecular filaments containing a fixed 41% paclitaxel loading.

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