The Analyst · 2001 · 446 citations · 22 references
NanoparticlesEngineeringBiological NanomaterialsNanomaterialsNanobiotechnologyLactate DehydrogenaseBioanalysisBio-based NanomaterialsImmobilized EnzymeBiochemical ModificationChemistryEnzyme ImmobilizationBiomolecular EngineeringNanobiomaterialsSilica Nanoparticles
Silica nanoparticles have a pure surface that can be readily modified with biomolecules to add biochemical functionality. The study demonstrates biochemical modification of silica nanoparticles. Both pure and dye‑doped silica nanoparticles were prepared and their surfaces were functionalized with enzymes (GDH, LDH) and biocompatible reagents for cell membrane staining, enabling biosensor and biomarker applications. The resulting nanoparticles are uniform in size (1.6 % RSD), serve as biocompatible supports for enzyme immobilization, retain excellent enzymatic activity, and show feasibility for biosensing and biomarking.
In this report, we demonstrate the biochemical modification of silica based nanoparticles. Both pure and dye-doped silica nanoparticles were prepared, and their surfaces were modified with enzymes and biocompatible chemical reagents that allow them to function as biosensors and biomarkers. The nanoparticles produced in this work are uniform in size with a 1.6% relative standard deviation. They have a pure silica surface and can thus be modified easily with many biomolecules for added biochemical functionality. Specifically, we have modified the nanoparticle surfaces with enzyme molecules (glutamate dehydrogenase (GDH) and lactate dehydrogenase (LDH)) and a biocompatible reagent for cell membrane staining. Experimental results show that the silica nanoparticles are a good biocompatible solid support for enzyme immobilization. The immobilized enzyme molecules on the nanoparticle surface have shown excellent enzymatic activity in their respective enzymatic reactions. The nanoparticle surface biochemical functionalization demonstrates the feasibility of using nanoparticles for biosensing and biomarking applications.
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