Your browser doesn't support javascript.
loading
Poly-ε-caprolactone based nanoparticles for delivery of genistein in melanoma treatment
Abriata, Juliana Palma; Luiz, Marcela Tavares; Viegas, Juliana Santos Rosa; Fumagalli, Fernando; Melo, Shaiani Maria Gilde; Emery, Flavio da Silva; Marchetti, Juliana Maldonado; Vicentini, Fabiana Testa Moura de Carvalho.
  • Abriata, Juliana Palma; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Luiz, Marcela Tavares; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Viegas, Juliana Santos Rosa; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Fumagalli, Fernando; Federal University of Santa Maria. Health Sciences Center. Santa Maria. BR
  • Melo, Shaiani Maria Gilde; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Emery, Flavio da Silva; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Marchetti, Juliana Maldonado; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
  • Vicentini, Fabiana Testa Moura de Carvalho; University of São Paulo. School of Pharmaceutical Sciences of Ribeirão Preto. São Paulo. BR
Braz. J. Pharm. Sci. (Online) ; 60: e22542, 2024. tab, graf
Artículo en Inglés | LILACS | ID: biblio-1533990
ABSTRACT
We developed poly-ε-caprolactone (PCL)-based nanoparticles containing D-α-tocopherol polyethylene glycol-1000 succinate (TPGS) or Poloxamer 407 as stabilizers to efficiently encapsulate genistein (GN). Two formulations, referred to as PNTPGS and PNPol, were prepared using nanoprecipitation. They were characterized by size and PDI distribution, zeta potential, nanoparticle tracking analysis (NTA), GN association (AE%), infrared spectroscopy (FT-IR), and differential scanning calorimetry (DSC). PNTPGS-GN exhibited a particle size of 141.2 nm, a PDI of 0.189, a zeta potential of -32.9 mV, and an AE% of 77.95%. PNPol-GN had a size of 146.3 nm, a better PDI than PNTPGS-GN (0.150), a less negative zeta potential (-21.0 mV), and an AE% of 68.73%. Thermal and spectrometric analyses indicated that no new compounds were formed, and there was no incompatibility detected in the formulations. Cellular studies revealed that Poloxamer 407 conferred less toxicity to PCL nanoparticles. However, the percentage of uptake decreased compared to the use of TPGS, which exhibited almost 80% cellular uptake. This study contributes to the investigation of stabilizers capable of conferring stability to PCL nanoparticles efficiently encapsulating GN. Thus, the PCL nanoparticle proposed here is an innovative nanomedicine for melanoma therapy and represents a strong candidate for specific pre-clinical and in vivo studie
Asunto(s)


Texto completo: Disponible Índice: LILACS (Américas) Asunto principal: Genisteína / Nanopartículas / Melanoma Idioma: Inglés Revista: Braz. J. Pharm. Sci. (Online) Asunto de la revista: Farmacologia / Terapˆutica / Toxicologia Año: 2024 Tipo del documento: Artículo País de afiliación: Brasil Institución/País de afiliación: Federal University of Santa Maria/BR / University of São Paulo/BR

Similares

MEDLINE

...
LILACS

LIS


Texto completo: Disponible Índice: LILACS (Américas) Asunto principal: Genisteína / Nanopartículas / Melanoma Idioma: Inglés Revista: Braz. J. Pharm. Sci. (Online) Asunto de la revista: Farmacologia / Terapˆutica / Toxicologia Año: 2024 Tipo del documento: Artículo País de afiliación: Brasil Institución/País de afiliación: Federal University of Santa Maria/BR / University of São Paulo/BR