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1.
Int J Nanomedicine ; 15: 3539-3550, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32547012

RESUMO

BACKGROUND: Methotrexate (MTX) is an antiproliferative drug widely used to treat inflammatory diseases and autoimmune diseases. The application of percutaneous administration is hindered due to its poor transdermal penetration. To reduce side effects and enhanced percutaneous delivery of MTX, novel methotrexate (MTX)-loaded micelles prepared with a amphiphilic cationic material, N,N-dimethyl-(N',N'-di-stearoyl-1-ethyl)1,3-diaminopropane (DMSAP), was designed. MATERIALS AND METHODS: DMSAP was synthesized via three steps using simple chemical agents. H nuclear magnetic resonance and mass spectroscopy were used to confirm the successful synthesis of DMSAP. A safe and non-toxic phosphatidylcholine, soybean phosphatidylcholine (SPC), was added to DMSAP at different ratios to form P/D-micelles. Then, MTX-entrapped micelles (M/P/D-micelles) were prepared by electrostatic adsorption. The physicochemical properties and blood stability of micelles were examined thoroughly. In addition, the transdermal potential of the micelles was evaluated by permeation experiments. RESULTS: In aqueous environments, DMSAP conjugates could self-assemble spontaneously into micelles with a low critical micelle concentration (CMC) of 0.056 mg/mL. Stable, spherical MTX-entrapped micelles (M/P/D-micelles) with a size of 100-120 nm and high zeta potential of +36.26 mV were prepared. In vitro permeation studies showed that M/P/D-micelles exhibited superior skin permeability and deposition of MTX in the epidermis and dermis compared with that of free MTX. CONCLUSION: These special novel cationic M/P/D-micelles can enhance the permeability of MTX and are expected to be a promising percutaneous delivery system for therapy skin diseases.


Assuntos
Metotrexato/administração & dosagem , Micelas , Administração Cutânea , Animais , Cátions , Bovinos , Portadores de Fármacos/química , Sistemas de Liberação de Medicamentos , Humanos , Metotrexato/química , Camundongos , Concentração Osmolar , Tamanho da Partícula , Fosfatidilcolinas/química , Espectroscopia de Prótons por Ressonância Magnética , Soroalbumina Bovina/química , Pele/efeitos dos fármacos , Eletricidade Estática
2.
Int J Nanomedicine ; 11: 5485-5496, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27799771

RESUMO

A novel cationic cholesterol derivative-based small interfering RNA (siRNA) interference strategy was suggested to inhibit Notch1 activation in SKOV3 cells for the gene therapy of ovarian cancer. The cationic cholesterol derivative, N-(cholesterylhemisuccinoyl-amino-3-propyl)-N, N-dimethylamine (DMAPA-chems) liposome, was incubated with siRNA at different nitrogen-to-phosphate ratios to form stabilized, near-spherical siRNA/DMAPA-chems nanoparticles with sizes of 100-200 nm and zeta potentials of 40-50 mV. The siRNA/DMAPA-chems nanoparticles protected siRNA from nuclease degradation in 25% fetal bovine serum. The nanoparticles exhibited high cell uptake and Notch1 gene knockdown efficiency in SKOV3 cells at an nitrogen-to-phosphate ratio of 100 and an siRNA concentration of 50 nM. They also inhibited the growth and promoted the apoptosis of SKOV3 cells. These results may provide the potential for using cationic cholesterol derivatives as efficient nonviral siRNA carriers for the suppression of Notch1 activation in ovarian cancer cells.


Assuntos
Colesterol/análogos & derivados , Técnicas de Transferência de Genes , Lipossomos/química , Neoplasias Ovarianas/patologia , RNA Interferente Pequeno/genética , Receptor Notch1/genética , Apoptose/genética , Arsenicais/química , Cátions , Linhagem Celular Tumoral/efeitos dos fármacos , Proliferação de Células , Feminino , Inativação Gênica , Terapia Genética/métodos , Humanos , Nanopartículas , Neoplasias Ovarianas/genética , Tamanho da Partícula , RNA Interferente Pequeno/metabolismo , Receptor Notch1/metabolismo , Soro/química , Transfecção
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