Abstract:Cell-penetrating peptides rich in arginine are good candidates to be considered as antibacterial compounds, since peptides have a lower chance of generating resistance than commonly used antibiotics. Model homopeptides are a useful tool in the study of activity and its correlation with a secondary structure, constituting an initial step in the construction of functional heteropeptides. In this report, the 11-residue arginine homopeptide (R11) was used to determine its antimicrobial activity against Staphylococ… Show more
“…Further, several homopolypeptides, such as poly-L-lysine and poly-L-arginine, that belong to the class of cell-penetrating peptides (CPPs), have antibacterial properties. [42][43][44][45][46][47] CPPs penetrate the cell membrane through two independent mechanisms: one involving endocytosis and the other membrane translocation, [48][49][50][51][52] often leaving the membrane intact. However, the precise mechanism of the antibacterial action of CPPs remain incompletely understood.…”
This research addresses the growing menace of antibiotic resistance by exploring antimicrobial peptides (AMPs) as alternatives to conventional antibiotics. Specifically, we investigate two linear amphipathic AMPs, LE-53 (12-mer) and LE-55...
“…Further, several homopolypeptides, such as poly-L-lysine and poly-L-arginine, that belong to the class of cell-penetrating peptides (CPPs), have antibacterial properties. [42][43][44][45][46][47] CPPs penetrate the cell membrane through two independent mechanisms: one involving endocytosis and the other membrane translocation, [48][49][50][51][52] often leaving the membrane intact. However, the precise mechanism of the antibacterial action of CPPs remain incompletely understood.…”
This research addresses the growing menace of antibiotic resistance by exploring antimicrobial peptides (AMPs) as alternatives to conventional antibiotics. Specifically, we investigate two linear amphipathic AMPs, LE-53 (12-mer) and LE-55...
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