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Development and optimization of methotrexate-loaded lipid-polymer hybrid nanoparticles for controlled drug delivery applications.
Tahir, Nayab; Madni, Asadullah; Balasubramanian, Vimalkumar; Rehman, Mubashar; Correia, Alexandra; Kashif, Prince Muhammad; Mäkilä, Ermei; Salonen, Jarno; Santos, Hélder A.
Afiliação
  • Tahir N; Department of Pharmacy, The Islamia University of Bahawalpur, 63100 Bahawalpur, Pakistan; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland.
  • Madni A; Department of Pharmacy, The Islamia University of Bahawalpur, 63100 Bahawalpur, Pakistan. Electronic address: asadpharmacist@hotmail.com.
  • Balasubramanian V; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland.
  • Rehman M; Department of Pharmacy, The Islamia University of Bahawalpur, 63100 Bahawalpur, Pakistan.
  • Correia A; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland.
  • Kashif PM; Department of Pharmacy, The Islamia University of Bahawalpur, 63100 Bahawalpur, Pakistan.
  • Mäkilä E; Laboratory of Industrial Physics, Department of Physics, University of Turku, FI-20014 Turku, Finland.
  • Salonen J; Laboratory of Industrial Physics, Department of Physics, University of Turku, FI-20014 Turku, Finland.
  • Santos HA; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland; Helsinki Institute of Life Science (HiLIFE), University of Helsinki, FI-00014 Helsinki, Finland. Electronic address: helder.santos@helsinki.fi.
Int J Pharm ; 533(1): 156-168, 2017 Nov 25.
Article em En | MEDLINE | ID: mdl-28963013
ABSTRACT
Lipid-polymer hybrid nanoparticles (LPHNPs) are emerging platforms for drug delivery applications. In the present study, methotrexate loaded LPHNPs consisted of PLGA and Lipoid S100 were fabricated by employing a single-step modified nanoprecipitation method combined with self-assembly. A three factor, three level Box Behnken design using Design-Expert® software was employed to access the influence of three independent variables on the particle size, drug entrapment and percent drug release. The optimized formulation was selected through numeric optimization approach. The results were supported with the ANOVA analysis, regression equations and response surface plots. Transmission electron microscope images indicated the nanosized and spherical shape of the LPHNPs with fair size distribution. The nanoparticles ranged from 176 to 308nm, which increased with increased polymer concentration. The increase in polymer and lipid concentration also increased the drug entrapment efficiency. The in vitro drug release was in range 70.34-91.95% and the release mechanism follow the Higuchi model (R2=0.9888) and Fickian diffusion (n<0.5). The in vitro cytotoxicity assay and confocal microscopy of the optimized formulation demonstrate the good safety and better internalization of the LPHNPs. The cell antiproliferation showed the spatial and controlled action of the nanoformulation as compared to the plain drug solution. The results suggest that LPHNPs can be a promising delivery system envisioned to safe, stable and potentially controlled delivery of methotrexate to the cancer cells to achieve better therapeutic outcomes.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metotrexato / Sistemas de Liberação de Medicamentos / Nanopartículas / Antimetabólitos Antineoplásicos Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metotrexato / Sistemas de Liberação de Medicamentos / Nanopartículas / Antimetabólitos Antineoplásicos Idioma: En Ano de publicação: 2017 Tipo de documento: Article