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Effect of Sequence and Structural Properties on 14-Helical beta-Peptide Activity against Candida albicans Planktonic Cells and Biofilms

  作者 KARLSSON AMY J; POMERANTZ WILLIAM C; NEILSEN KEANE J; GELLMAN SAMUEL H; PALECEK SEAN P  
  选自 期刊  ACS CHEMICAL BIOLOGY;  卷期  2009年4-7;  页码  567-579  
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[摘要]beta-Peptides (beta-amino acid oligomers) that mimic the amphiphilic, helical, and cationic properties of natural antimicrobial peptides have previously been shown to display antifungal activity against planktonic Candida albicans cells. beta-Peptides offer several advantages over conventional peptides composed of alpha-amino acid residues, including conformational stability, resistance to proteases, and activity at physiological salt concentrations. We examined sequence-activity relationships toward both planktonic C. albicans cells and C. albicans biofilms, and the results suggest a toxicity mechanism involving membrane disruption. A strategy for fluorescently labeling a beta-peptide without diminishing antifungal activity was devised; labeled beta-peptides penetrated the cell membrane and accumulated in the cytoplasm of both planktonic and biofilm-associated cells. The labeled beta-peptide was detected only in metabolically inactive cells, which suggests that beta-peptide entry is correlated with cell death. The presence of a beta-peptide at a concentration near the minimum inhibitory concentration completely prevented planktonic C. albicans cells from forming a biofilm, suggesting that beta-peptides may be useful in preventing fungal colonization and biofilm formation.

 
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