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PEGylation of the peptide Bac7(1–35) reduces renal clearance while retaining antibacterial activity and bacterial cell penetration capacity

BENINCASA, MONICA
•
Zahariev, Sotir
•
PELILLO, CHIARA
altro
SCOCCHI, MARCO
2015
  • journal article

Periodico
EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Abstract
The proline-rich antibacterial peptide Bac7(1–35) protects mice against Salmonella typhimurium infection, despite its rapid clearance. To overcome this problem the peptide was linked to a polyethylene glycol (PEG) molecule either via a cleavable ester bond or via a non-hydrolysable amide bond. Both the PEGylated conjugates retained most of the in vitro activity against S. typhimurium. In addition, the ester bond was cleaved in human serum or plasma, releasing a carboxymethyl derivative of Bac7(1–35) which accounts for a higher activity of this peptide with relative to the other, non-hydrolysable form. Both PEGylated peptides maintained the capacity of the unconjugated form to kill bacteria without permeabilizing the bacterial membranes, by penetrating into cells. They exploited the same transporter as unmodified Bac7(1–35), suggesting it has the capacity to internalize quite sizeable cargo if this is linked to Bac7 fragment. PEGylation allows the peptide to have a wide distribution in mice, and a slow renal clearance, indicating that this strategy would improve the bioavailability of Bac7, and in principle of other antimicrobial peptides. This can be an equally important issue to reducing cytotoxicity for therapeutic use of these antibacterials.
DOI
10.1016/j.ejmech.2015.03.028
WOS
WOS:000354139900019
Archivio
http://hdl.handle.net/11368/2843964
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84925412607
https://www.sciencedirect.com/science/article/pii/S0223523415001956?via=ihub
Diritti
open access
license:copyright editore
license:digital rights management non definito
FVG url
https://arts.units.it/request-item?handle=11368/2843964
Soggetti
  • Antimicrobial peptide...

  • Proline-rich

  • PEGylation

  • Antibacterial activit...

  • Cell penetrating

  • Optical imaging

Web of Science© citazioni
42
Data di acquisizione
Mar 27, 2024
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