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Updated: Feb 10, 2026

High-throughput Synthesis of Carbohydrates and Functionalization of Polyanhydride Nanoparticles
Published on: July 6, 2012
From Synthesis to Application: Functionalized Magnetic Nanoparticles as a Simple and Reliable Tool for Nucleic Acid
Iuly Guimarães Ribeiro1, Thais de Andrade Silva1,2, Ana Carolina de Lima Barizão1,2
1Federal University of Espírito Santo, Campus Maruípe, Av. Marechal Campos 1468, Vitória, Espírito Santo 29.040-090, Brazil.
None:
Magnetic nanoparticles (MNPs) are widely used for nucleic acid (NA) extraction, but their performance strongly depends on the synthesis and surface functionalization. In this work, we applied a design of experiments (DoE) approach to optimize the coprecipitation synthesis of iron oxide nanoparticles, identifying NH4OH flow rate and reaction temperature as the key factors. Under optimal conditions (5.5 mL min-1, 65 °C), Fe3O4 nanoparticles were coated with SiO2 and subsequently functionalized with (3-aminopropyl)-triethoxysilane (Fe3O4@SiO2-APTES). The resulting nanoparticles (∼12 nm) were stable and magnetically responsive and provided efficient NA binding. Their performance in NA extraction was validated by RT-qPCR, yielding Ct values (20-25 for S, ORF, and N genes) comparable to those of both silica column and commercial magnetic bead methods. These results demonstrate that DoE is an effective strategy for tailoring nanoparticle synthesis and highlight Fe3O4@SiO2-APTES as a simple, cost-effective, and reliable material for nucleic acid purification in routine laboratory applications.
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