Abstract
Despite the interesting chemopreventive, antioxidant and antiangiogenic effects of the natural bioflavonoid genistein (GEN), its low aqueous solubility and bioavailability make it necessary to administer it using a suitable drug carrier system. Nanometric porous metal-organic frameworks (nanoMOFs) are appealing systems for drug delivery. Particularly, mesoporous MIL-100(Fe) possesses a variety of interesting features related to its composition and structure, which make it an excellent candidate to be used as a drug nanocarrier (highly porous, biocompatible, can be synthesized as homogenous and stable nanoparticles (NPs),etc.). In this study, GEN was entrappedviasimple impregnation in MIL-100 NPs achieving remarkable drug loading (27.1 wt%). A combination of experimental and computing techniques was used to achieve a deep understanding of the encapsulation of GEN in MIL-100 nanoMOF. Subsequently, GEN delivery studies were carried out under simulated physiological conditions, showing on the whole a sustained GEN release for 3 days. Initial pharmacokinetic and biodistribution studies were also carried out upon the oral administration of the GEN@MIL-100 NPs in a mouse model, evidencing a higher bioavailability and showing that this oral nanoformulation appears to be very promising. To the best of our knowledge, the GEN-loaded MIL-100 will be the first antitumor oral formulation based on nanoMOFs studiedin vivo, and paves the way to the efficient delivery of nontoxic antitumoralsviaa convenient oral route.
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CITATION STYLE
Botet-Carreras, A., Tamames-Tabar, C., Salles, F., Rojas, S., Imbuluzqueta, E., Lana, H., … Horcajada, P. (2021). Improving the genistein oral bioavailabilityviaits formulation into the metal-organic framework MIL-100(Fe). Journal of Materials Chemistry B, 9(9), 2233–2239. https://doi.org/10.1039/d0tb02804e
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