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Development of hydrophilic nanocarriers for the charged form of the local anesthetic articaine.
Silva de Melo, Nathalie Ferreira; Campos, Estefânia Vangelie Ramos; Gonçalves, Camila Morais; de Paula, Eneida; Pasquoto, Tatiane; de Lima, Renata; Rosa, André Henrique; Fraceto, Leonardo Fernandes.
Afiliação
  • Silva de Melo NF; Department of Environmental Engineering, São Paulo State University, Sorocaba, SP, Brazil; Department of Biochemistry, State University of Campinas, Campinas, SP, Brazil.
  • Campos EV; Department of Environmental Engineering, São Paulo State University, Sorocaba, SP, Brazil; Department of Biochemistry, State University of Campinas, Campinas, SP, Brazil.
  • Gonçalves CM; Department of Biochemistry, State University of Campinas, Campinas, SP, Brazil.
  • de Paula E; Department of Biochemistry, State University of Campinas, Campinas, SP, Brazil.
  • Pasquoto T; Department of Biotechnology, University of Sorocaba, Sorocaba, SP, Brazil.
  • de Lima R; Department of Biotechnology, University of Sorocaba, Sorocaba, SP, Brazil; São Carlos Federal University, Sorocaba, SP, Brazil.
  • Rosa AH; Department of Environmental Engineering, São Paulo State University, Sorocaba, SP, Brazil.
  • Fraceto LF; Department of Environmental Engineering, São Paulo State University, Sorocaba, SP, Brazil; Department of Biochemistry, State University of Campinas, Campinas, SP, Brazil. Electronic address: leonardo@sorocaba.unesp.br.
Colloids Surf B Biointerfaces ; 121: 66-73, 2014 Sep 01.
Article em En | MEDLINE | ID: mdl-24934456
ABSTRACT
One of the current challenges in drug encapsulation concerns the development of carrier systems for hydrophilic compounds. Potential carriers include nanocapsules prepared with amphiphilic polymers, which consist of a polymeric coating surrounding an aqueous nucleus, or dense matrices such as nanospheres of alginate/chitosan, where the drug may be dispersed in the matrix or adsorbed on the surface. The development of new formulations of nanocarriers, for example the poly(ethylene glycol)-poly(ɛ-caprolactone) (PEG-PCL) nanocapsules and alginate/chitosan (AG/CS) nanospheres described in this work, is needed in the case of ionized drugs such as articaine. This amino amide local anesthetic is the drug of choice in dentistry for regional anesthesia as well as the relief of acute and chronic pain. Here, the physico-chemical properties of suspensions of the nanoparticles (considering diameter, polydispersion, and zeta potential) were determined as a function of time, in order to establish the stability of the systems. The formulations did not show any substantial changes in these parameters, and were stable for up to 120 days of storage at ambient temperature. Satisfactory encapsulation efficiencies were obtained for the PEG-PCL nanocapsules (60%) and the AG/CS nanospheres (45%). Cytotoxicity assays confirmed that the encapsulation of articaine reduced its toxicity, relative to the free drug. The most promising results were obtained using the vesicular system (PEG-PCL nanocapsules), which not only altered the release profile of the drug, but also resulted in the lowest toxicity. This carrier system therefore holds promise for use in future practical applications.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Portadores de Fármacos / Carticaína / Interações Hidrofóbicas e Hidrofílicas / Anestésicos Locais Limite: Animals Idioma: En Revista: Colloids Surf B Biointerfaces Assunto da revista: QUIMICA Ano de publicação: 2014 Tipo de documento: Article País de afiliação: Brasil

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Portadores de Fármacos / Carticaína / Interações Hidrofóbicas e Hidrofílicas / Anestésicos Locais Limite: Animals Idioma: En Revista: Colloids Surf B Biointerfaces Assunto da revista: QUIMICA Ano de publicação: 2014 Tipo de documento: Article País de afiliação: Brasil