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1.
Int J Pharm ; 602: 120597, 2021 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-33862134

RESUMEN

This work aimed to select an effective penetration enhancer (PE) for nail pretreatment, develop voriconazole (VOR)-loaded nanomicelles, and evaluate their ability to deliver VOR to the nail. A complete analysis of nail protein dynamics, bond rupture, and microstructure was performed. Alternative methods as electron paramagnetic resonance (EPR) and the Ellman's reagent (DTNB) assay were also evaluated. Nanomicelles were produced and characterized. The PE hydrated the hooves, following the order: urea ≈ cysteine ≈ glycolic acid < thioglycolic acid (TGA) < NaOH. SEM images and methylene blue assay showed enlarged pores and roughness of porcine hooves after incubation with NaOH and TGA. EPR was demonstrated to be the most sensitive technique. DTNB assay quantified higher thiol groups for samples treated with TGA (p < 0.05). A stratigraphic analysis with Raman spectroscopy demonstrated that hooves treated with TGA presented a higher SH/SS ratio at the edges, affecting protein secondary structure. In vitro permeation studies demonstrated significant VOR permeation (29.44 ± 6.13 µg/cm2), 10-fold higher than previous studies with lipid nanoparticles. After TGA pretreatment, VOR permeation was further enhanced (3-fold). TGA pretreatment followed by VOR-loaded nanomicelles demonstrates a promising approach for onychomycosis treatment. The novel methods for protein analysis were straightforward and helpful.


Asunto(s)
Uñas , Onicomicosis , Animales , Disulfuros , Onicomicosis/tratamiento farmacológico , Porcinos , Tioglicolatos , Voriconazol
2.
Eur J Pharm Biopharm ; 119: 142-149, 2017 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-28627400

RESUMEN

Combined therapy with corticosteroids and immunosuppressant-loaded nanostructured lipid carriers (NLC) could be useful in the treatment of skin diseases. To circumvent NLC loading capacity problems, loaded drugs should have different physicochemical characteristics, such as tacrolimus (TAC) and clobetasol (CLO). Therefore, in the present study, TAC and CLO were encapsulated in NLC (TAC-NLC, CLO-NLC and TAC+CLO-NLC), coated or otherwise with chitosan. Electron paramagnetic resonance (EPR) spectroscopy of different spin labels was used to investigate the impact of drug and oil incorporation on the lipid dynamic behavior of the lipid matrices. In addition, the impact of co-encapsulation on drug release and skin permeation was evaluated. Entrapment efficiency was greater than 90% for both drugs, even when the maximum drug loading achieved for TAC-NLC and CLO-NLC was kept at TAC+CLO-NLC, because TAC is more soluble in the solid lipid and CLO in the liquid lipid. EPR data indicated that both drugs reduced the lipid fluidity near the polar surface of the lipid matrix, which suggests their presence in this region. In addition, EPR data showed that liquid lipid is also present in more superficial regions of the nanoparticle matrix. CLO was released faster than TAC from TAC+CLO-NLC, probably because it is more soluble in the liquid lipid. TAC skin penetration was affected by CLO. A 5-fold increase in TAC penetration was observed from TAC+CLO-NLC when compared to TAC-NLC formulations. Coating also increased TAC and CLO permeation to deeper skin layers (1.8-fold and 1.6-fold, respectively). TAC+CLO-NLC seems to be an effective strategy for topical delivery of TAC and CLO, and thus constitutes promising formulations for the treatment of skin diseases.


Asunto(s)
Clobetasol/metabolismo , Portadores de Fármacos/metabolismo , Nanopartículas/metabolismo , Absorción Cutánea/fisiología , Tacrolimus/metabolismo , Administración Cutánea , Animales , Clobetasol/administración & dosificación , Clobetasol/síntesis química , Cámaras de Difusión de Cultivos , Portadores de Fármacos/administración & dosificación , Portadores de Fármacos/síntesis química , Espectroscopía de Resonancia por Spin del Electrón/métodos , Lípidos/administración & dosificación , Lípidos/química , Nanopartículas/administración & dosificación , Nanopartículas/química , Absorción Cutánea/efectos de los fármacos , Porcinos , Tacrolimus/administración & dosificación , Tacrolimus/síntesis química
3.
Eur J Pharm Biopharm ; 88(1): 40-7, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-24816130

RESUMEN

The aim of this study was to develop lipid nanoparticles to deliver genistein (GEN) to deeper skin layers. To do so, the impact of lipid dynamic behavior (nanoparticle flexibility) on stability, release and skin permeation studies was verified. GEN-loaded solid lipid nanoparticles (SLN) and nanostructured lipid carriers (NLC) were obtained and characterization was undertaken. Freshly prepared nanoparticles were produced with similar features (i.e., drug loading). However, a higher level of crystallization in GEN-SLN formulation was observed in differential scanning calorimetry experiments. Electron paramagnetic resonance measurements showed a lower mobility of the spin labels in the SLN, which would indicate that NLC could be more flexible than SLN. Despite the fact that NLC demonstrated more fluidity, GEN was released more slowly from NLC than from SLN. Skin permeation studies demonstrated that lipid nanoparticles increased GEN skin retention. More flexible particles (NLC) also favored drug penetration into deeper skin layers. GEN-NLC would seem to be a promising formulation for GEN topical delivery.


Asunto(s)
Genisteína/administración & dosificación , Lípidos/química , Nanopartículas/química , Piel/efectos de los fármacos , Administración Cutánea , Animales , Rastreo Diferencial de Calorimetría , Química Farmacéutica , Portadores de Fármacos/química , Oído Externo/efectos de los fármacos , Espectroscopía de Resonancia por Spin del Electrón , Tamaño de la Partícula , Absorción Cutánea , Porcinos
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