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LL-37

Cathelicidin, hCAP-18, FALL-39, CAP-18

Quick Stats
Studies 2230
Trials 95
Score 3
2019 pubmed 226 citations

Application of Antimicrobial Peptides of the Innate Immune System in Combination With Conventional Antibiotics-A Novel Way to Combat Antibiotic Resistance?

Zharkova. Maria S MS; Orlov. Dmitriy S DS; Golubeva. Olga Yu OY; Chakchir. Oleg B OB; Eliseev. Igor E IE; Grinchuk. Tatyana M TM; Shamova. Olga V OV

Key Findings

  • Synergy occurs mainly between membrane‑active peptides (e.g., LL‑37, hBD‑3) and antibiotics that target internal bacterial processes (e.g., gentamicin, rifampicin).
  • The combined treatment rarely increases toxicity toward human red blood cells, immune cells, or cancer cells.
  • Checkerboard assays confirmed lower fractional inhibitory concentration indexes, indicating stronger antibacterial effects than either agent alone.

Practical Outcomes

  • For DIY health enthusiasts, the takeaway is that pairing LL‑37‑like peptides with certain antibiotics could enhance infection control and potentially curb resistance, without adding extra safety risks. However, because LL‑37 isn’t widely available as a supplement and dosing isn’t established, the immediate actionable step is to stay informed about future peptide‑antibiotic combo products rather than trying to self‑administer now.

Summary

The study shows that mixing natural antimicrobial peptides like LL‑37 with regular antibiotics can kill resistant bacteria more effectively, especially when the peptide attacks the cell membrane and the antibiotic works inside the cell. This combo usually doesn’t make the peptide more toxic to human cells.

Abstract

Rapidly growing resistance of pathogenic bacteria to conventional antibiotics leads to inefficiency of traditional approaches of countering infections and determines the urgent need for a search of fundamentally new anti-infective drugs. Antimicrobial peptides (AMPs) of the innate immune system are promising candidates for a role of such novel antibiotics. However, some cytotoxicity of AMPs toward host cells limits their active implementation in medicine and forces attempts to design numerous structural analogs of the peptides with optimized properties. An alternative route for the successful AMPs introduction may be their usage in combination with conventional antibiotics. Synergistic antibacterial effects have been reported for a number of such combinations, however, the molecular mechanisms of the synergy remain poorly understood and little is known whether AMPs cytotoxicy for the host cells increases upon their application with antibiotics. Our study is directed to examination of a combined action of natural AMPs with different structure and mode of action (porcine protegrin 1, caprine bactenecin ChBac3.4, human alpha- and beta-defensins (HNP-1, HNP-4, hBD-2, hBD-3), human cathelicidin LL-37), and egg white lysozyme with varied antibiotic agents (gentamicin, ofloxacin, oxacillin, rifampicin, polymyxin B, silver nanoparticles) toward selected bacteria, including drug-sensitive and drug-resistant strains, as well as toward some mammalian cells (human erythrocytes, PBMC, neutrophils, murine peritoneal macrophages and Ehrlich ascites carcinoma cells). Using "checkerboard titrations" for fractional inhibitory concentration indexes evaluation, it was found that synergy in antibacterial action mainly occurs between highly membrane-active AMPs (e.g., protegrin 1, hBD-3) and antibiotics with intracellular targets (e.g., gentamicin, rifampcin), suggesting bioavailability increase as the main model of such interaction. In some combinations modulation of dynamics of AMP-bacterial membrane interaction in presence of the antibiotic was also shown. Cytotoxic effects of the same combinations toward normal eukaryotic cells were rarely synergistic. The obtained data approve that combined application of antimicrobial peptides with antibiotics or other antimicrobials is a promising strategy for further development of new approach for combating antibiotic-resistant bacteria by usage of AMP-based therapeutics. Revealing the conventional antibiotics that increase the activity of human endogenous AMPs against particular pathogens is also important for cure strategies elaboration.

Study Information

Provider

pubmed

Year

2019

Date

2019-04-30T00:00:00.000Z

DOI

10.3389/fcimb.2019.00128

Citations

226

References

160