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Comparison Between Folic Acid and gH625 Peptide-Based Functionalization of Fe3O4 Magnetic Nanoparticles for Enhanced Cell Internalization.
Tudisco, C; Cambria, M T; Giuffrida, A E; Sinatra, F; Anfuso, C D; Lupo, G; Caporarello, N; Falanga, A; Galdiero, S; Oliveri, V; Satriano, C; Condorelli, G G.
Afiliação
  • Tudisco C; Dipartimento di Scienze Chimiche, Università di Catania, 95125, Catania, Italy.
  • Cambria MT; INSTM UdR di Catania, 95125, Catania, Italy.
  • Giuffrida AE; Dipartimento di Scienze Biomediche e Biotecnologiche, Università di Catania, 95100, Catania, Italy.
  • Sinatra F; Dipartimento di Scienze Chimiche, Università di Catania, 95125, Catania, Italy.
  • Anfuso CD; INSTM UdR di Catania, 95125, Catania, Italy.
  • Lupo G; Dipartimento di Scienze Biomediche e Biotecnologiche, Università di Catania, 95100, Catania, Italy.
  • Caporarello N; Dipartimento di Scienze Biomediche e Biotecnologiche, Università di Catania, 95100, Catania, Italy.
  • Falanga A; Dipartimento di Scienze Biomediche e Biotecnologiche, Università di Catania, 95100, Catania, Italy.
  • Galdiero S; Dipartimento di Scienze Biomediche e Biotecnologiche, Università di Catania, 95100, Catania, Italy.
  • Oliveri V; Dipartimento di Farmacia, Università di Napoli "Federico II", 80134, Napoli, Italy.
  • Satriano C; Dipartimento di Farmacia, Università di Napoli "Federico II", 80134, Napoli, Italy.
  • Condorelli GG; Dipartimento di Scienze Chimiche, Università di Catania, 95125, Catania, Italy.
Nanoscale Res Lett ; 13(1): 45, 2018 Feb 07.
Article em En | MEDLINE | ID: mdl-29417388
ABSTRACT
A versatile synthetic route based on magnetic Fe3O4 nanoparticle (MNP) prefunctionalization with a phosphonic acid monolayer has been used to covalently bind the gH625 peptide on the nanoparticle surface. gH625 is a membranotropic peptide capable of easily crossing the membranes of various cells including the typical human blood-brain barrier components. A similar synthetic route was used to prepare another class of MNPs having a functional coating based on PEG, rhodamine, and folic acid, a well-known target molecule, to compare the performance of the two cell-penetrating systems (i.e., gH625 and folic acid). Our results demonstrate that the uptake of gH625-decorated MNPs in immortalized human brain microvascular endothelial cells after 24 h is more evident compared to folic acid-functionalized MNPs as evidenced by confocal laser scanning microscopy. On the other hand, both functionalized systems proved capable of being internalized in a brain tumor cell line (i.e., glioblastoma A-172). These findings indicate that the functionalization of MNPs with gH625 improves their endothelial cell internalization, suggesting a viable strategy in designing functional nanostructures capable of first crossing the BBB and, then, of reaching specific tumor brain cells.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Nanoscale Res Lett Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Itália

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Nanoscale Res Lett Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Itália