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                  <mods:namePart>Mora-Cabello, Romualdo</mods:namePart>
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                  <mods:namePart>Moscoso, Ana</mods:namePart>
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                  <mods:namePart>Melguizo, Consolación</mods:namePart>
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                  <mods:namePart>Prados, José</mods:namePart>
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                  <mods:namePart>Sarabia-García, Francisco Ramón</mods:namePart>
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                  <mods:namePart>López-Romero, Juan Manuel</mods:namePart>
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                  <mods:dateAccessioned encoding="iso8601">2025-10-24T12:54:45Z</mods:dateAccessioned>
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               <mods:identifier type="citation">Mora-Cabello, R.; Fuentes-Ríos, D.; Gago, L.; Cabeza, L.; Moscoso, A.; Melguizo, C.; Prados, J.; Sarabia, F.; López-Romero, J.M. Magnetic Nanoparticles with On-Site Azide and Alkyne Functionalized Polymer Coating in a Single Step through a Solvothermal Process. Pharmaceutics 2024, 16, 1226. https://doi.org/10.3390/pharmaceutics16091226</mods:identifier>
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               <mods:identifier type="doi">10.3390/pharmaceutics16091226</mods:identifier>
               <mods:abstract>Magnetic Fe3O4 nanoparticles (MNPs) are becoming more im-&#xd;
portant every day. We prepared MNPs in a simple one-step reaction by following the solvothermal&#xd;
method, assisted by azide and alkyne functionalized polyethylene glycol (PEG400) polymers, as&#xd;
well as by PEG6000 and the polyol β-cyclodextrin (βCD), which played a crucial role as electrostatic&#xd;
stabilizers, providing polymeric/polyol coatings around the magnetic cores. Methods: The composi-&#xd;
tion, morphology, and magnetic properties of the nanospheres were analyzed using Transmission&#xd;
Electron and Atomic Force Microscopies (TEM, AFM), Nuclear Magnetic Resonance (NMR), X-ray&#xd;
Diffraction Diffractometry (XRD), Fourier-Transform Infrared Spectroscopy (FT-IR), Matrix-Assisted&#xd;
Laser Desorption/Ionization (MALDI) and Vibrating Sample Magnetometry (VSM). Results: The&#xd;
obtained nanoparticles (@Fe3O4-PEGs and @Fe3O4-βCD) showed diameters between 90 and 250 nm,&#xd;
depending on the polymer used and the Fe3O4·6H2O precursor concentration, typically, 0.13 M at&#xd;
200 ◦C and 24 h of reaction. MNPs exhibited superparamagnetism with high saturation mass&#xd;
magnetization at room temperature, reaching values of 59.9 emu/g (@Fe3O4-PEG6000), and no ferro-&#xd;
magnetism. Likewise, they showed temperature elevation after applying an alternating magnetic&#xd;
field (AMF), obtaining Specific Absorption Rate (SAR) values of up to 51.87 ±2.23 W/g for @Fe3O4-&#xd;
PEG6000. Additionally, the formed systems are susceptible to click chemistry, as was demonstrated&#xd;
in the case of the cannabidiol-propargyl derivative (CBD-Pro), which was synthesized and covalently&#xd;
attached to the azide functionalized surface of @Fe3O4-PEG400-N3. Prepared MNPs are highly&#xd;
dispersible in water, PBS, and citrate buffer, remaining in suspension for over 2 weeks, and non-toxic&#xd;
in the T84 human colon cancer cell line, Conclusions: indicating that they are ideal candidates for&#xd;
biomedical applications.</mods:abstract>
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               <mods:subject>
                  <mods:topic>Nanopartículas</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Polímeros</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Oxidos de hierro</mods:topic>
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               <mods:titleInfo>
                  <mods:title>Magnetic Nanoparticles with On-Site Azide and Alkyne Functionalized Polymer Coating in a Single Step through a Solvothermal Process</mods:title>
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