Cyclodextrin encapsulation enabling the anticancer repositioning of disulfiram: Preparation, analytical and in vitro biological characterization of the inclusion complexes
[Display omitted] •Optimized disulfiram-loaded drug delivery system can be designed with cyclodextrin complexes.•Comparison of disulfiram's complexes with various β-cyclodextrin derivatives.•Disulfiram and methylated β-cyclodextrin inclusion complex suggests an anticancer repositioning.•Tailore...
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Veröffentlicht in: | International journal of pharmaceutics 2024-05, Vol.657, p.124187-124187, Article 124187 |
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Sprache: | eng |
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•Optimized disulfiram-loaded drug delivery system can be designed with cyclodextrin complexes.•Comparison of disulfiram's complexes with various β-cyclodextrin derivatives.•Disulfiram and methylated β-cyclodextrin inclusion complex suggests an anticancer repositioning.•Tailored disulfiram drug delivery system can be developed for the target environment.
Drug repositioning is a high-priority and feasible strategy in the field of oncology research, where the unmet medical needs are continuously unbalanced. Disulfiram is a potential non-chemotherapeutic, adjuvant anticancer agent. However, the clinical translation is limited by the drug‘s poor bioavailability. Therefore, the molecular encapsulation of disulfiram with cyclodextrins is evaluated to enhance the solubility and stability of the drug. The present work describes for the first time the complexation of disulfiram with randomly methylated-β-cyclodextrin. A parallel analytical andin vitrobiological comparison of disulfiram inclusion complexes with hydroxypropyl-β-cyclodextrin, randomly methylated-β-cyclodextrin and sulfobutylether-β-cyclodextrin is conducted. A significant drug solubility enhancement by about 1000-folds and fast dissolution in 1 min is demonstrated. Thein vitrodissolution-permeation studies and proliferation assays demonstrate the solubility-dependent efficacy of the drug. Throughout the different cancer cell lines‘ characteristics and disulfiram unspecific antitumoral activity, the inhibitory efficacy of the cyclodextrin encapsulated drug on melanoma (IC50 about 100 nM) and on glioblastoma (IC50 about 7000 nM) cell lines differ by a magnitude. This pre-formulation screening experiment serves as a proof of concept of using cyclodextrin encapsulation as a platform tool for further drug delivery development in repositioning areas. |
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ISSN: | 0378-5173 1873-3476 |
DOI: | 10.1016/j.ijpharm.2024.124187 |