Langmuir · 2015 · 31 citations · 14 references
NanomedicineChemical EngineeringEngineeringSurface FunctionalizationSurface ChemistrySurface ScienceAntibacterial DrugDrug LoadingDrug Delivery SystemsNano-drug DeliveryChemistryNanostructured Porous SiliconDrug Delivery SystemPorous SiliconBiointerface
Nanostructured mesoporous silicon possesses important properties advantageous to drug loading and delivery. For controlled release of the antibacterial drug triclosan, and its associated activity versus Staphylococcus aureus, previous studies investigated the influence of porosity of the silicon matrix. In this work, we focus on the complementary issue of the influence of surface chemistry on such properties, with particular regard to drug loading and release kinetics that can be ideally adjusted by surface modification. Comparison between drug release from as-anodized, hydride-terminated hydrophobic porous silicon and the oxidized hydrophilic counterpart is complicated due to the rapid bioresorption of the former; hence, a hydrophobic interface with long-term biostability is desired, such as can be provided by a relatively long chain octyl moiety. To minimize possible thermal degradation of the surfaces or drug activity during loading of molten drug species, a solution loading method has been investigated. Such studies demonstrate that the ability of porous silicon to act as an effective carrier for sustained delivery of antibacterial agents can be sensitively altered by surface functionalization.
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Porous Silicon Microcavities for Biosensing Applications
Shiao‐Yng Chan, Philippe M. Fauchet, Y. Li et al. · physica status solidi (a) · 2000 · 204 citations
Photonic Sensor, Microcavity Resonator Structure, Engineering +14