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LL-37

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

Quick Stats
Studies 2230
Trials 95
Score 2
2024 pubmed 7 citations

Human Host Defense Peptide LL-37 Suppresses TNFα-Mediated Matrix Metalloproteinases MMP9 and MMP13 in Human Bronchial Epithelial Cells.

Altieri. Anthony A; Marshall. Courtney Lynn CL; Ramotar. Padmanie P; Lloyd. Dylan D; Hemshekhar. Mahadevappa M; Spicer. Victor V; van der Does. Anne M AM; Mookherjee. Neeloffer N

Key Findings

  • LL‑37 significantly suppresses TNF‑α‑induced MMP9 (≈10‑fold rise) and MMP13 (≈3‑fold rise) in human bronchial epithelial cells
  • The suppression is linked to inhibition of SRC kinase activity and increased phospho‑AKT (T308) and the anti‑inflammatory regulator A20
  • Proteomics identified 124 proteins altered by TNF‑α, with 12 showing ≄2‑fold increase, highlighting the broad inflammatory response

Practical Outcomes

  • While the results hint that boosting LL‑37 could protect lung tissue from inflammatory damage, the work is limited to cell culture and does not provide dosing, safety, or delivery guidance for humans. Biohackers should view this as early‑stage evidence rather than a ready‑to‑use protocol for asthma or lung health.

Summary

The study found that the natural peptide LL‑37 can lower two enzymes (MMP9 and MMP13) that are usually boosted by inflammation in lung cells, which might help slow airway remodeling seen in asthma. This effect was seen in lab-grown human bronchial cells and involved changes in signaling proteins like SRC, AKT and A20.

Abstract

TNFα-inducible matrix metalloproteinases play a critical role in the process of airway remodeling in respiratory inflammatory disease including asthma. The cationic host defense peptide LL-37 is elevated in the lungs during airway inflammation. However, the impact of LL-37 on TNFα-driven processes is not well understood. Here, we examined the effect of LL-37 on TNFα-mediated responses in human bronchial epithelial cells (HBECs). We used a slow off-rate modified aptamer-based proteomics approach to define the HBEC proteome altered in response to TNFα. Abundance of selected protein candidates and signaling intermediates was examined using immunoassays, ELISA and Western blots, and mRNA abundance was examined by qRT-PCR. Proteomics analysis revealed that 124 proteins were significantly altered, 12 proteins were enhanced by ≥2-fold compared to unstimulated cells, in response to TNFα. MMP9 was the topmost increased protein in response to TNFα, enhanced by ∼10-fold, and MMP13 was increased by ∼3-fold, compared to unstimulated cells. Furthermore, we demonstrated that LL-37 significantly suppressed TNFα-mediated MMP9 and MMP13 in HBEC. Mechanistic data revealed that TNFα-mediated MMP9 and MMP13 production is controlled by SRC kinase and that LL-37 enhances related upstream negative regulators, namely, phospho-AKT (T308) and TNFα-mediated TNFAIP3 or A20. The findings of this study suggest that LL-37 may play a role in intervening in the process of airway remodeling in chronic inflammatory respiratory disease such as asthma.

Study Information

Provider

pubmed

Year

2024

Date

2024-03-12T00:00:00.000Z

DOI

10.1159/000537775

Citations

7

References

55