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PMID: 42119353 Published · ppublish English

Glycine linker modulates the tunable self-assembly and antibacterial efficacy of octanoyl lipopeptides.

Colloids and surfaces. B, Biointerfaces ·Vol. 266 ·2026-10-00

Chen C, Zhang Y, Gu Q, Gu C, Zhang X, Jiang X, Song X, Fan X

Abstract

The linker region of lipopeptides has demonstrated considerable potential in modulating their antibacterial activity. However, a clear consensus regarding the influence of link length on their physicochemical properties and biological activities remains elusive. To address this, we designed a series of octanoyl lipopeptides, C8Gn(VVKK)2V-NH2 (n = 1-3), with varying glycine linker length. Altering the linker length led to distinct physicochemical properties and self-assembly behaviors, enabling an investigation into the structure-property-function relationship. Among the series, C8G(VVKK)2V-NH2 exhibited the lowest surface activity and consequently the weakest antibacterial efficacy. In contrast, C8G2(VVKK)2V-NH2 and C8G3(VVKK)2V-NH2 displayed high surface activity, and self-assembled into micelles above their critical aggregation concentrations (CACs). Notably, these micelles disassembled upon dilution, facilitating high antibacterial activity through bacterial membrane disruption. Conversely, the micelles formed by C8G(VVKK)2V-NH2 were exceptionally stable, allowing them to attach on bacterial surface but not permeate bacterial membrane, leading to low antibacterial activity. Thus, we demonstrate that the incorporating glycine linkers modulates the self-assembly behavior of octanoyl lipopeptides: increased linker length promotes micelle disassembly and enhances antibacterial activity. This study offers deeper insights into the antibacterial mechanisms of self-assembling lipopeptides, facilitating the future exploration of their biomedical applications.

Keywords
Antibacterial activity Disassembly Glycine linker Octanoyl lipopeptide
Article Info
Journal
Colloids and surfaces. B, Biointerfaces
Abbr.
Colloids Surf B Biointerfaces
ISSN
1873-4367
Published
2026-10-00
Language
English
Country/Region
Netherlands
NLM ID
9315133
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