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LL-37

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

Quick Stats
Studies 2230
Trials 95
Score 3
2016 pubmed 22 citations

Collectins, H-ficolin and LL-37 reduce influence viral replication in human monocytes and modulate virus-induced cytokine production.

White. Mitchell R MR; Tripathi. Shweta S; Verma. Anamika A; Kingma. Paul P; Takahashi. Kazue K; Jensenius. Jens J; Thiel. Steffen S; Wang. Guangshun G; Crouch. Erika C EC; Hartshorn. Kevan L KL

Key Findings

  • LL-37 reduces replication of seasonal influenza A virus in human monocytes
  • LL-37 lowers virus‑triggered TNF‑α production in these cells
  • LL-37 is less effective at blocking the 2009 pandemic H1N1 strain

Practical Outcomes

  • LL-37 shows promise as an antiviral and anti‑inflammatory agent for flu, but because the effect varies by strain and no safe dosage is provided, it isn’t ready for DIY use. Enthusiasts should watch for future research on inhaled or topical LL-37 formulations before considering it in personal protocols.

Summary

LL-37, a natural antimicrobial peptide, can lower the amount of seasonal flu virus that grows inside immune cells and also dampens the inflammation those cells produce, but it works less well against the 2009 pandemic H1N1 strain and the study doesn’t give dosing details.

Abstract

Infiltrating activated monocytes are important mediators of damaging inflammation during influenza A virus (IAV) infection. We show that soluble respiratory proteins [collectins, surfactant proteins D (SP-D) and mannose binding lectin (MBL), H-ficolin and LL-37] inhibit replication of seasonal IAV in human monocytes. The collectins and H-ficolin also increased viral uptake by the cells, while LL-37 did not. H-ficolin was able to inhibit replication of the 2009 pandemic H1N1 strain (Cal09) in monocytes, but SP-D and LL-37 had significantly fewer inhibitory effects on this strain than on seasonal IAV. All of these proteins reduced IAV-induced TNF-α production, even in instances when viral replication was not reduced. We used modified recombinant versions of SP-D, MBL and ficolin to elucidate mechanisms through which these proteins alter monocyte interactions with IAV. We demonstrate the importance of the multimeric structure, and of binding properties of the lectin domain, in mediating antiviral and opsonic activity of the proteins. Hence, soluble inhibitors present in airway lining fluid may aid clearance of IAV by promoting monocyte uptake of the virus, while reducing viral replication and virus-induced TNF-α responses in these cells. However, SP-D and LL-37 have reduced ability to inhibit replication of pandemic IAV in monocytes.

Study Information

Provider

pubmed

Year

2016

Date

2016-11-17T00:00:00.000Z

DOI

10.1177/1753425916678470

Citations

22

References

54