Combats microorganisms / peptide with antimicrobial action
LL-37 is a 37-amino acid peptide derived from the C-terminal part of the human cathelicidin protein (hCAP-18). It possesses broad antimicrobial activity against bacteria (both Gram-positive and Gram-negative), fungi, and some viruses
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LL-37 is a multifunctional antimicrobial peptide that acts as a critical component of the innate immune system. Derived from the C-terminal end of the human cathelicidin protein hCAP-18, this 37-amino acid peptide is produced by various cell types, including neutrophils, macrophages, and epithelial cells.
Beyond its direct antimicrobial activities against bacteria, viruses, and fungi, LL-37 exhibits notable immunomodulatory functions, such as chemotaxis, promotion of wound healing, and regulation of inflammation. It achieves this versatility by interacting with cell membranes and various receptors, modifying immune cell responses.
Due to its therapeutic potential, LL-37 has become a significant focus of research for developing novel antimicrobial agents, especially against antibiotic-resistant pathogens, as well as treatments for inflammatory conditions and wound management.
Lyophilized Peptides
The peptides undergo a lyophilization process, a technique that enhances stability and shelf life while preserving purity and molecular structure throughout storage. It is important to note that no fillers are used during this procedure.
Intended Use
Biopelabs states: this material is provided exclusively as a chemical input for research purposes. Its use is restricted to in vitro assays and experimental activities in laboratory settings. The information presented is strictly for informational and educational purposes. Handling must be carried out only by properly qualified professionals. This product is not classified as a drug, food, or cosmetic and must not be used, marketed, or described as such.
Research
Scientific Research on LL-37 (the only cathelicidin family peptide found in humans, widely studied for its pleiotropic properties)
LL-37 is a 37-amino acid antimicrobial peptide (AMP), derived from the proteolytic cleavage of the precursor protein hCAP-18 (human Cationic Antimicrobial Protein, 18 kDa). It features an amphipathic alpha-helical structure and a net positive charge (+6). It is expressed predominantly in neutrophils, epithelial cells, and immune cells in response to infection and inflammation, acting as a critical component of innate immunity.
Mechanism of Action and Inhibition
LL-37 operates through two distinct mechanisms:
Direct Antimicrobial Action: Due to its amphipathic nature, LL-37 interacts with bacterial membranes (rich in anionic lipids). It inserts into the lipid bilayer following either the "carpet model" or "toroidal pore formation," leading to osmotic lysis of the pathogen.
Immune Modulation: It acts as a ligand for various cellular receptors, including FPR2 (Formyl Peptide Receptor 2) and the P2X7 purinergic receptor. This results in immune cell chemotaxis and modulation of cytokine release.
Inhibition: LL-37 activity can be inhibited by bacterial proteases and by high levels of salts or glycosaminoglycans in the extracellular matrix, which can sequester the peptide and prevent its interaction with target membranes.
Metabolic Impacts Scientifically Investigated to Date
Investigations into LL-37 reveal profound impacts on tissue and inflammatory metabolism:
Angiogenesis: LL-37 stimulates the formation of new blood vessels by interacting with receptors on endothelial cells, a vital process for tissue oxygenation.
Wound Healing and Re-epithelialization: It promotes keratinocyte proliferation and migration, accelerating wound closure.
Endotoxin Neutralization: It possesses high affinity for Lipopolysaccharide (LPS) from Gram-negative bacteria, preventing LPS from activating the TLR4 receptor and triggering a cytokine storm (sepsis).
Investigations in Oncological Models
The role of LL-37 in oncology is complex and tumor microenvironment-dependent, exhibiting a dual nature:
Pro-tumorigenic Effect: In lung, breast, and ovarian cancers, elevated LL-37 levels can promote cell proliferation and tumor angiogenesis, aiding neoplastic progression.
Anti-tumorigenic Effect: In contrast, models of colon and gastric cancer suggest that LL-37 can induce apoptosis in malignant cells and suppress tumor growth through the activation of specific pro-apoptotic signaling pathways.
Specific Action of the LL-37 Peptide
The most notable specific action is its ability to bind and neutralize exogenous nucleic acids. LL-37 can form complexes with circulating DNA or RNA (often released during cell death or viral infection), facilitating their entry into dendritic cells via TLR9 and TLR7 receptors. This action is a major focus of research in autoimmune diseases such as psoriasis.
Pharmacokinetic Considerations in Research
Stability: In biological fluids, LL-37 is susceptible to degradation by proteases such as neutrophil elastase and cathepsins, which limits its systemic half-life.
Bioavailability: Due to its size and charge, systemic administration faces stability challenges; therefore, topical application or the use of delivery vehicles (nanoparticles and liposomes) are the most explored routes in research.
Elimination: Fragments resulting from proteolytic cleavage are processed and eliminated via conventional renal pathways.
Other Important Research Relationships
LL-37 has an important synergistic relationship with Vitamin D. The expression of the CAMP gene (which encodes hCAP-18) is directly regulated by the vitamin D receptor (VDR). Research indicates that Vitamin D deficiency compromises LL-37 production, reducing the innate capacity to combat respiratory pathogens.
Final Considerations
LL-37 transcends the simple definition of a "natural antibiotic," positioning itself as a central signaling molecule at the interface between innate and adaptive immunity. Although its dual nature in oncology requires caution, its potential as a wound-healing agent and bacterial toxin neutralizer makes it one of the most versatile peptides in current biomedical research.
Koczulla, R., von Degenfeld, G., & Kupatt, C. (2003). Angiogenesis induced by the human cathelicidin LL-37. Journal of Clinical Investigation, 111. https://doi.org/10.1172/JCI16609
Zhang, Z., Cherryholmes, G., & Shively, J. E. (2024). Signaling mechanisms and impact of LL-37 on the tumor microenvironment. International Journal of Molecular Sciences, 25. https://doi.org/10.3390/ijms25042100
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