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Gemcitabine delivered by fucoidan/chitosan nanoparticles presents increased toxicity over human breast cancer cells

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Resumo:Aim: To produce marine-origin nanoparticles (NPs) aiming to develop more effective and tolerated therapies for breast cancer. Materials & methods: NPs based in two marine-origin polymers (fucoidan and chitosan) were prepared by polyelectrolyte complexation, for the delivery of an antitumor drug model (gemcitabine [Gem]). Results: Final formulation resulted in stable NPs around 115â 140 nm in size and with a polydispersity index less than 0.2. Gem was encapsulated at a maximum entrapment efficiency of 35â 42%. Drug-release studies demonstrated that around 84% of Gem is released within 4 h. Cytotoxicity results of Gem-loaded NPs showed increased toxicity (around 25%) when compared with free Gem. Conclusion: The drug-loaded NPs present increased toxicity over human breast cancer cells without increasing toxic effects over endothelial cells.
Autores principais:Oliveira, Catarina
Outros Autores:Neves, N. M.; Reis, R. L.; Martins, A.; Silva, T. H.
Assunto:breast cancer cells Chitosan Drug Delivery System endothelial cells Fucoidan gemcitabine Nanoparticles Polyelectrolyte complexation
Ano:2018
País:Portugal
Tipo de documento:artigo
Tipo de acesso:acesso aberto
Instituição associada:Universidade do Minho
Idioma:inglês
Origem:RepositóriUM - Universidade do Minho
Descrição
Resumo:Aim: To produce marine-origin nanoparticles (NPs) aiming to develop more effective and tolerated therapies for breast cancer. Materials & methods: NPs based in two marine-origin polymers (fucoidan and chitosan) were prepared by polyelectrolyte complexation, for the delivery of an antitumor drug model (gemcitabine [Gem]). Results: Final formulation resulted in stable NPs around 115â 140 nm in size and with a polydispersity index less than 0.2. Gem was encapsulated at a maximum entrapment efficiency of 35â 42%. Drug-release studies demonstrated that around 84% of Gem is released within 4 h. Cytotoxicity results of Gem-loaded NPs showed increased toxicity (around 25%) when compared with free Gem. Conclusion: The drug-loaded NPs present increased toxicity over human breast cancer cells without increasing toxic effects over endothelial cells.