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LL-37

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

Quick Stats
Studies 2230
Trials 95
2014 pubmed 3 citations

Novel strategy for successful long-term hematopoietic recovery after transplanting a limited number of hematopoietic stem/progenitor cells.

Lee. Hakmo H; Park. Ho Seon HS; Choi. Ok Kyung OK; Oh. Ju Eun JE; Chung. Sung Soo SS; Jung. Hye Seung HS; Park. Kyong Soo KS

Key Findings

  • LL‑37 pre‑conditioning boosts calcium entry and activates mTORC1 in clonogenic stem cells
  • LL‑37 impairs long‑term repopulation ability of transplanted hematopoietic stem/progenitor cells
  • AICAR pre‑conditioning dramatically enhances long‑term repopulation of transplanted cells

Practical Outcomes

  • For biohackers or DIY health enthusiasts, LL‑37 is not a useful tool for stem‑cell or longevity protocols. It may actually reduce the durability of transplanted stem cells, so avoid it. Focus on protecting stem cells during transplantation rather than trying to activate them with LL‑37.

Summary

The study tested a peptide called LL‑37 to see if it could help transplanted blood‑forming stem cells settle better in the bone marrow. It turned out that LL‑37 actually harms the long‑term survival of these cells, while another compound, AICAR, improves it. So using LL‑37 before stem‑cell transplants isn’t a good idea.

Abstract

Various investigators have attempted to overcome the shortage of available hematopoietic stem/progenitor cells (HSPCs) by facilitating their engraftment after transplantation. Preconditioning of HSPCs with the granulocyte-derived cationic peptide LL-37 has been suggested as a useful strategy to facilitate engraftment of transplanted cells by enhancing their responsiveness to CXCL12. In this study, we evaluated whether LL-37 preconditioning is acceptable for clinical application. We found that the effect of LL-37 preconditioning was specific to clonogenic cells and was mediated specifically by increased calcium influx with the activation of downstream signaling through mammalian target of rapamycin complex 1 (mTORC1). Because hyperactivation of mTORC1 and the disruption of 5' adenosine monophosphate-activated protein kinase (AMPK) are known to deplete HSPC pools, we compared the repopulation capacity of HSPCs preconditioned with LL-37 and those preconditioned with AMPK activator (AICAR). In vivo competitive repopulation experiments revealed that LL-37 preconditioning impairs long-term repopulation of transplanted HSPCs, suggesting that this strategy might not acceptable for clinical applications in which long-term repopulation capacity is a prerequisite. AICAR preconditioning dramatically enhanced the long-term repopulation of transplanted HSPCs, however. Taken together, these results suggest that future strategies to ensure successful transplantation outcomes should focus on protecting HSPCs from various stimuli during their homing to the bone marrow niches rather than activating them before transplantation.

Study Information

Provider

pubmed

Year

2014

Date

2014-06-26T00:00:00.000Z

DOI

10.1016/j.bbmt.2014.06.027

Citations

3

References

34