LL-37
LL-37 5mg is a premium research-grade synthetic peptide designed for advanced scientific investigations involving peptide biology, molecular signaling, membrane interactions, cellular communication, structural biology, and biochemical research. As a well-characterized human cathelicidin-derived peptide, LL-37 serves as an important research compound for laboratories exploring peptide structure, molecular interactions, and complex biological signaling pathways. Its precisely defined amino acid sequence, exceptional analytical purity, and consistent quality profile make it a trusted choice for academic institutions, biotechnology companies, pharmaceutical organizations, and specialized research laboratories worldwide.
Researchers utilize LL-37 to investigate peptide-membrane interactions, molecular recognition, cellular signaling networks, protein interactions, and biochemical communication mechanisms. Furthermore, scientific studies examine peptide stability, structural characteristics, molecular binding properties, and peptide-associated cellular processes under controlled laboratory conditions. These investigations continue to enhance scientific understanding of naturally occurring peptide molecules and their interactions within complex biological systems.
Moreover, the highly characterized molecular structure of LL-37 (5mg) supports advanced research applications across molecular biology, peptide chemistry, structural analysis, biotechnology, microbiology research, and experimental pharmacology. Researchers employ this peptide to evaluate molecular interactions, peptide behavior, structure-function relationships, and biochemical pathways. Consequently, LL-37 remains a valuable research tool for laboratories studying advanced peptide science and molecular communication mechanisms.
Our manufacturing team produces LL-37 (5mg) using advanced peptide synthesis methods and strict analytical quality control procedures. Quality specialists carefully analyze each batch to confirm identity, purity, molecular integrity, and consistency through validated testing techniques. Additionally, comprehensive quality assurance protocols help researchers obtain a reliable peptide suitable for accurate, repeatable, and high-quality laboratory investigations.
Product Information
- Product Name: LL-37
- Strength: 5mg per vial
- Peptide Class: Cathelicidin-derived synthetic peptide
- Appearance: White to off-white lyophilized powder
- Grade: Premium research grade
- Purity: High purity (Certificate of Analysis available for applicable batches)
- Form: Lyophilized powder
- Intended Use: Laboratory research only
Research Applications
Researchers commonly investigate LL-37 (5mg) in studies involving:
- Peptide biology
- Molecular signaling pathways
- Peptide-membrane interaction studies
- Structural biology research
- Protein interaction analysis
- Cellular communication mechanisms
- Biochemical pathway investigations
- Biotechnology and pharmaceutical research
- Molecular pharmacology
Quality Assurance
Before release, quality control specialists perform extensive analytical testing on every batch of LL-37 (5mg) to verify identity, purity, molecular integrity, and consistency. Furthermore, strict quality assurance procedures support dependable laboratory performance and reproducible scientific results across biotechnology companies, pharmaceutical organizations, contract research organizations, and academic research facilities.
Storage
Store the lyophilized peptide in a cool, dry laboratory environment protected from moisture, excessive heat, and direct light. After reconstitution, follow validated laboratory storage protocols to maintain peptide stability, molecular integrity, and analytical performance throughout research applications.
Disclaimer
We supply LL-37 (5mg) exclusively for scientific and laboratory research purposes. However, this product is not intended for human consumption, clinical use, veterinary applications, therapeutic treatment, or diagnostic procedures. Qualified laboratory professionals must handle this research peptide according to established laboratory practices, institutional safety guidelines, and applicable regulatory requirements.






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