6533b823fe1ef96bd127eb7b
RESEARCH PRODUCT
Ferricytochrome c encapsulated in silica nanoparticles: structural stability and functional properties.
Antonio CupaneEugenio VitranoGianluca Fiandacasubject
Circular dichroismSiliconHydrodynamic radiusTime FactorsLightProtein ConformationBiophysicsNanoparticleBiosensing TechniquesDithioniteLigandsBiochemistryBiomaterialsSodium dithionitechemistry.chemical_compoundDynamic light scatteringmedicineAnimalsScattering RadiationDenaturation (biochemistry)HorsesGuanidineIonsCarbon MonoxideChromatographyDose-Response Relationship DrugMyoglobinCircular DichroismHydrolysisSilicatesOrganic ChemistryCytochromes cWaterGeneral MedicineKineticschemistryChemical engineeringSol-gel process Sol-gels scanning electronFerricmedicine.drugdescription
Using a modified sol-gel technique, we have succeeded in encapsulating ferric cytochrome c in silica nanoparticles obtained from hydrolysis and polycondensation of tetramethylorthosilicate. Particles dimensions have been determined with dynamic light scattering; this technique yields an hydrodynamic radius of about 100 nm, each nanoparticle containing about 10(2)-10(3) proteins. If stored in the cold at low ionic strength, nanoparticles are stable for more than one week, even if a slow radius increase with time is observed. CD measurements show that encapsulated proteins exhibit substantially increased stability against guanidinium hydrochloride induced denaturation. Reduction kinetics of encapsulated ferric cytochrome c by sodium dithionite, measured with standard stopped flow techniques, are slower by a factor of ten with respect to those measured in solution. Analogous experiments with myoglobin suggest that this slowing down is due to the diffusion time of dithionite within the silica matrix. Indeed, if a smaller ligand like CO is used, the intrinsic kinetic properties of encapsulated proteins are found to be unaltered even in the millisecond time range. The reported data show that our nanoparticles are extremely useful both for basic research, to study the stability and functions of encapsulated proteins, and for their potential biotechnological applications.
year | journal | country | edition | language |
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2004-05-12 | Biopolymers |