Passive diffusion in stratum corneum membrane of hybrid nanoemulsions based on Carapa guianensis oil and FE₃O₄ nanoparticles

Resumo

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.

Descrição

Citação

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.