LL-37
LL-37 is supplied as the active fragment of human cathelicidin (hCAP-18) for innate-immune and antimicrobial-peptide pathway research. Supplied strictly for laboratory and educational research. Not for human or veterinary use.
Vial amount
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Checkout includes a research-use attestation. Materials are supplied only for laboratory and educational research.
LL-37 in research
LL-37 is supplied as the active fragment of human cathelicidin (hCAP-18) for innate-immune and antimicrobial-peptide pathway research.
Immune-signaling, barrier, and inflammation-model research for laboratory workflows.
Bench context
Supplied as a research-grade reference material for documented laboratory and educational research workflows.
Available amounts
Select from the stocked vial amounts for LL-37 before adding the material to cart.
Claims discipline
No protocol instructions, no dosing, no medical advice, and no therapeutic or human-use promises.
All products are sold strictly for laboratory and research use only. Not for human or veterinary use, not for diagnostic or therapeutic use, not a drug or supplement.
As listed by the supplier in BioRegen's ordering system, shown here exactly as written for transparency. This is the vendor's own description, not independently verified, edited, or endorsed by BioRegen, and is not a BioRegen claim of any effect.
5mg
Disclaimer: All products on this site are for Research and Development use only. Products are Not for Human Consumption of any kind. The statements made within this website have not been evaluated by the U.S. Food and Drug Administration. The statements and the products of this company are not intended to diagnose, treat, cure, or prevent any disease.
Ll-37 is a small yet powerful peptide that has garnered attention in the scientific community for its antimicrobial properties. Found naturally in the human body, Ll-37 is a part of the innate immune system, the body's first line of defense against pathogens. Researchers are intrigued by its ability to disrupt bacterial membranes, making it a potential candidate for developing new antimicrobial treatments. Additionally, Ll-37 has been studied for its role in modulating inflammation, which could have implications for a variety of inflammatory conditions.
The peptide's unique structure allows it to bind to and neutralize a wide range of pathogens, including bacteria, viruses, and fungi. This versatility makes it an exciting subject for ongoing research. Scientists are also exploring its potential applications in wound healing and tissue regeneration, as Ll-37 may promote cellular repair processes.
For researchers looking to delve into these promising areas, Ll-37 offers a wealth of potential insights. Its dual role in antimicrobial activity and immune modulation positions it as a peptide of significant interest in the quest to understand and harness natural defense mechanisms.
10mg
Disclaimer: All products on this site are for Research and Development use only. Products are Not for Human Consumption of any kind. The statements made within this website have not been evaluated by the U.S. Food and Drug Administration. The statements and the products of this company are not intended to diagnose, treat, cure, or prevent any disease.
Ll-37 is a remarkable peptide that is gaining attention in scientific research for its diverse roles in the body. As an antimicrobial peptide, Ll-37 is part of the innate immune system, which serves as the body's first line of defense against pathogens. Researchers are particularly interested in its ability to combat a wide range of bacteria, viruses, and fungi, making it a promising candidate in the development of new antimicrobial agents.
Beyond its antimicrobial properties, Ll-37 is also being studied for its role in immune modulation. It is believed to influence various immune cells, thereby potentially enhancing or regulating immune responses. This has opened avenues for research into its potential applications in therapies aimed at boosting the immune system or managing inflammatory conditions.
Moreover, Ll-37's ability to promote wound healing is under investigation, as it may help accelerate tissue repair and regeneration. This aspect of Ll-37 research is particularly exciting for scientists looking into innovative treatments for chronic wounds and skin injuries.
As ongoing studies continue to unravel the capabilities of Ll-37, its significance in peptide research is only expected to grow. Whether you are delving into antimicrobial research or exploring immune system dynamics, Ll-37 offers a wealth of opportunities to advance scientific understanding and innovation.
