Publication | Open Access
Toward the Design of Smart Delivery Systems Controlled by Integrated Enzyme-Based Biocomputing Ensembles
111
Citations
29
References
2014
Year
NanoparticlesNanotherapeuticsEngineeringBiological ComputingBiomedical EngineeringMs SurfaceBiochemical EngineeringBioprocess MonitoringSystems EngineeringDrug Delivery SystemSmart SystemSmart Delivery SystemsSmart Delivery SystemControl UnitBiopolymersBiomedical SystemDelivery SystemBioelectronicsBiotechnologyDrug Delivery SystemsNano-drug DeliveryBiological ComputationMedicine
We report herein the design of a smart delivery system in which cargo delivery from capped mesoporous silica (MS) nanoparticles is controlled by an integrated enzyme-based "control unit". The system consists of Janus-type nanoparticles having opposing Au and MS faces, functionalized with a pH-responsive β-cyclodextrin-based supramolecular nanovalve on the MS surface and two effectors, glucose oxidase and esterase, immobilized on the Au face. The nanodevice behaves as an enzymatic logical OR operator which is selectively fueled by the presence of D-glucose and ethyl butyrate.
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