Passive diffusion in stratum corneum membrane of hybrid nanoemulsions based on Carapa guianensis oil and FE₃O₄ nanoparticles
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This study evaluated the passive diffusivity of hybrid nanoemulsions (CGNE) composed of Carapa guianensis oil
polymers and Fe₃O₄ nanoparticles through the stratum corneum membrane. Fe₃O₄ was synthesized by the
coprecipitation method, the polymers by polycondensation, and CGNE by ultrasonic homogenization. Passive
diffusivity was assessed in vitro using a Franz-type diffusion cell. Nanoemulsions with different concentrations
were characterized by XRF, UV-Vis, TEM, and EPR. XRF confirmed Fe and Cu signals, with CGNE showing the
highest Fe concentration. UV-Vis spectra exhibited absorption peaks at 230–260 nm, shifting with polymer
proportion and correlating with Fe₃O₄ content. TEM revealed nanoparticle clusters with crystalline spacing
consistent with Fe₃O₄, while EPR confirmed superparamagnetic behavior. In permeation assays, the CGNE
formulation achieved the best performance, with 1.61 mg permeated in 10 h e molecular flux up to
205 µg⋅cm⁻²⋅h. Lower nanoparticle concentrations (CGNE 1–3) showed reduced flux, confirming the direct
correlation between Fe₃O₄ content and diffusivity. The one-compartment model fitted the kinetics with high
accuracy. These findings demonstrate that magneto-bioactive nanoemulsions combining Amazonian oil and
Fe₃O₄ nanoparticles are promising vehicles for sustainable transdermal drug delivery.
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SILVA, L. G. F. et al. Passive diffusion in stratum corneum membrane of hybrid nanoemulsions based on Carapa guianensis oil and FE₃O₄ nanoparticles. Next Nanotechnology, Amsterdam, v. 9, e100380, 2026. DOI: 10.1016/j.nxnano.2026.100380. Disponível em: https://www.sciencedirect.com/science/article/pii/S2949829526000197. Acesso em: 31 ago. 2026.