Silicon-containing nanocarriers for targeted drug delivery: Synthesis, physicochemical properties and acute toxicity

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Abstract

Silicon-containing nanoparticles (NPs) are considered promising drug carriers for targeted drug delivery. In this study, we investigated the physical and chemical properties of siliconcontaining NPs, including silica and organomodified silica NPs (SiO2NPs and OrSiO2NPs, respectively), with different surface modifications, with the aim of increasing drug-loading efficiency. In addition, we described the original synthesis methods of different sizes of OrSiO2NPs, as well as new hybrid OrSiO2NPs with a silica core (SiO2 + OrSiO2NPs). Animal experiments revealed that the silicon-containing NPs investigated were non-toxic, as evidenced by a lack of hemodynamic response after intravenous administration. Bioelimination studies showed rapid renal excretion of OrSiO2NPs. In drug release kinetics studies, adenosine was immobilized on SiO2NPs using three different approaches: physical adsorption, ionic, and covalent bonding. We observed that the rate of adenosine desorption critically depended on the type of immobilization; therefore, adenosine release kinetics can be adjusted by SiO2NP surface modification technique. Adsorption of adenosine on SiO2 + OrSiO2NPs resulted in a significant attenuation of adenosine-induced hypotension and bradycardia.

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Sonin, D. L., Korolev, D. V., Postnov, V. N., Naumysheva, E. B., Pochkaeva, E. I., Vasyutina, M. L., & Galagudza, M. M. (2015). Silicon-containing nanocarriers for targeted drug delivery: Synthesis, physicochemical properties and acute toxicity. Drug Delivery, 23(5), 1747–1756. https://doi.org/10.3109/10717544.2015.1069421

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