Gold-nanoparticles coated with the antimicrobial peptide esculentin-1a (1-21)NH2 as a reliable strategy for antipseudomonal drugs

被引:144
作者
Casciaro, Bruno [1 ]
Moros, Maria [2 ]
Rivera-Fernandez, Sara [3 ]
Bellelli, Andrea [1 ]
de la Fuente, Jesus M. [3 ]
Mangoni, Maria Luisa [1 ]
机构
[1] Sapienza Univ Rome, Dept Biochem Sci, Ist Pasteur Italia, Fdn Cenci Bolognetti, Rome, Italy
[2] CNR, Ist Sci Appl & Sistemi Intelligenti, Pozzuoli, Italy
[3] Univ Zaragoza, CSIC, Inst Ciencia Mat Aragon, E-50009 Zaragoza, Spain
关键词
Antimicrobial peptide; Gold nanoparticles; Pseudomonas aeruginosa; Membrane perturbation; Anti-biofilm activity; Electron microscopy; Wound healing; Biostability; HOST-DEFENSE PEPTIDES; SKIN-DERIVED PEPTIDE; PSEUDOMONAS-AERUGINOSA; FROG-SKIN; IN-VITRO; SILVER NANOPARTICLES; ESCHERICHIA-COLI; INFECTION; NANOTECHNOLOGY; ANTIBIOTICS;
D O I
10.1016/j.actbio.2016.09.041
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Naturally occurring antimicrobial peptides (AMPs) hold promise as future therapeutics against multidrug resistant microorganisms. Recently, we have discovered that a derivative of the frog skin AMP esculentin-1a, Esc(1-21), is highly potent against both free living and biofilm forms of the bacterial pathogen Pseudomonas aeruginosa. However, bringing AMPs into clinics requires to overcome their low stability, high toxicity and inefficient delivery to the target site at high concentrations. Importantly, peptide conjugation to gold nanoparticles (AuNPs), which are among the most applied inorganic nanocarriers in biomedical sciences, represents a valuable strategy to solve these problems. Here we report that covalent conjugation of Esc(1-21) to soluble AuNPs [AuNPs@Esc(1-21)] via a poly(ethylene glycol) linker increased by similar to 15-fold the activity of the free peptide against the motile and sessile forms of P. aeruginosa without being toxic to human keratinocytes. Furthermore, AuNPs@Esc(1-21) resulted to be significantly more resistant to proteolytic digestion and to disintegrate the bacterial membrane at very low concentration (5 nM). Finally, we demonstrated for the first time the capability of peptide-coated AuNPs to display a wound healing activity on a keratinocytes monolayer. Overall, these findings suggest that our engineered AuNPs can serve as attractive novel biological-derived material for topical treatment of epithelial infections and healing of the injured tissue. Statement of Significance Despite conjugation of AMPs to AuNPs represents a worthwhile solution to face some limitations for their development as new therapeutics, only a very limited number of studies is available on peptide-coated AuNPs. Importantly, this is the first report showing that a covalent binding of a linear AMP via a poly (ethylene glycol) linker to AuNPs highly enhances antipseudomonal activity, preserving the same mode of action of the free peptide, without being harmful. Furthermore, AuNPs@Esc(1-21) are expected to accelerate recovery of an injured skin layer. All together, these findings suggest our peptide-coated AuNPs as attractive novel nanoscale formulation to treat bacterial infections and to heal the injured tissue. (C) 2016 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:170 / 181
页数:12
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