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Título

Chiral Cyclobutane-Containing Cell-Penetrating Peptides as Selective Vectors for Anti-Leishmania Drug Delivery Systems

AutorIlla, Ona; Olivares, José Antonio; Gaztelumendi, Nerea; Martínez-Castro, Laura; Ospina, Jimena; Abengozar, María-Ángeles; Sciortino, Giuseppe; Maréchal, Jean-Didier; Nogués, Carme; Royo, Miriam CSIC ORCID ; Rivas, Luis CSIC ORCID; Ortuño, Rosa María
Palabras claveUnnatural γ-amino acids
Foldamers
Selective cell-penetrating peptides
anti-Leishmania drug delivery vectors
Fecha de publicación12-oct-2020
EditorMultidisciplinary Digital Publishing Institute
CitaciónInternational Journal of Molecular Sciences :21 (20): 7502 (2020)
ResumenTwo series of new hybrid γ/γ-peptides, γ-CC and γ-CT, formed by (1S,2R)-3-amino-2,2,dimethylcyclobutane-1-carboxylic acid joined in alternation to a Nα-functionalized cis- or trans-γ-amino-l-proline derivative, respectively, have been synthesized and evaluated as cell penetrating peptides (CPP) and as selective vectors for anti-Leishmania drug delivery systems (DDS). They lacked cytotoxicity on the tumoral human cell line HeLa with a moderate cell-uptake on these cells. In contrast, both γ-CC and γ-CT tetradecamers were microbicidal on the protozoan parasite Leishmania beyond 25 μM, with significant intracellular accumulation. They were conjugated to fluorescent doxorubicin (Dox) as a standard drug showing toxicity beyond 1 μM, while free Dox was not toxic. Intracellular accumulation was 2.5 higher than with Dox-TAT conjugate (TAT = transactivator of transcription, taken as a standard CPP). The conformational structure of the conjugates was approached both by circular dichroism spectroscopy and molecular dynamics simulations. Altogether, computational calculations predict that the drug-γ-peptide conjugates adopt conformations that bury the Dox moiety into a cavity of the folded peptide, while the positively charged guanidinium groups face the solvent. The favorable charge/hydrophobicity balance in these CPP improves the solubility of Dox in aqueous media, as well as translocation across cell membranes, making them promising candidates for DDS
Versión del editorhttps://doi.org/10.3390/ijms21207502
URIhttp://hdl.handle.net/10261/222509
DOI10.3390/ijms21207502
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