3.9 Article

Antimicrobial Electrospun Fibers of Polyester Loaded with Engineered Cyclic Gramicidin Analogues

Journal

FIBERS
Volume 5, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/fib5030034

Keywords

biocompatibility; conformational restrictions; encapsulation; electrospinning; engineered peptides; hydrophobic peptides

Funding

  1. Ministerio de Economia y Competitividad (MINECO)
  2. Fondo Europeo de Desarrollo Regional (FEDER) [MAT2015-69367-R, MAT2015-69547-R, CTQ2013-40855-R]
  3. Gobierno de Aragon-FEDER
  4. Generalitat de Catalunya

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Biodegradable polyester fibers have been loaded with two engineered analogues of gramicidin soviet. In these cyclic peptide derivatives, which were designed in a previous work to stabilize the bioactive conformation while enhancing the antimicrobial activity, the D-Phe was replaced by D-Pro, and the L-Pro was changed by 1-aminocyclopropanecarboxylic acid (Ac(3)c) or by an Ac(3)c derivative with two vicinal phenyl substituents in a trans relative disposition (S,S-c(3)diPhe). The diameter, topography, thermal stability and wettability of the polyester fibers, which have been obtained by electrospinning, strongly depend on the molecular constraints and stability of the loaded peptides. More specifically, unloaded and linear gramicidin-loaded fibers (used as control) are hydrophobic, rough and micrometric, while fibers loaded with the cyclic peptides are hydrophilic, ultra-smooth, nanometric and less thermally stable. The activity of the two cyclic peptides increases when loaded into polyester fibers, suggesting that the polymeric matrix stabilizes the bioactive -sheet structure. The peptide with S,S-c(3)diPhe displays higher antibiotic potency and biocompatibility than that with Ac(3)c, which indicates not only that the bioactive conformation is better preserved by the former but also the significant role played by the phenyl rings in the recognition by living cells.

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