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L21
- Type
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- 5-amino 1MQ
- ACTH 1-39
- Adamax
- Alarelin
- AOD-9604
- ARA 290
- ARG-BPC
- B7-33
- BPC 157
- Bronchogen
- Cardiogen
- CJC-1295
- CJC DAC
- Cortagen
- DSIP
- Epithalon
- GC-1 SOBETIROME
- GHK-Cu
- GHRP-2
- GHRP-6
- GLP-1
- GRF
- HGH
- HGH fragment 176-191
- IGF-1 LR3
- IGF DES
- Ipamorelin
- Kisspeptin
- KPV
- Larazotide acetate
- Lipotropin
- LL-37
- Livagen
- L21
- Matrixyl
- Melanotan
- Melanotan 2
- Mots
- N-acetyl
- Oxytocin
- P-21
- Pancragen
- PEG-MGF
- Prostamax
- PT-141
- Retatrutide
- Selank
- Semax
- Sermorelin
- SLU-PP-332
- Snap 8
- TB-4 FRAG+BPC-157 ARG
- TB-500
- Thrombin peptide Tp508
- Thymogen Alpha-1
- Thymosin Alpha 1
- TRH
- Thymalin
- Thymosin
- VIP
Active filters
Antimicrobial Peptides with Targeted Action
LZ1 is a synthetic peptide that belongs to a class of cationic antimicrobial peptides (AMPs) with distinct properties suitable for advanced biochemical applications. Known for its structural precision and consistent behaviour under lab conditions, this peptide demonstrates high functional stability in plasma and limited susceptibility to enzymatic degradation. This enables more predictable performance in assays requiring precision and repeatability.
Its amphipathic alpha-helix structure, composed of 15 amino acids, provides a clear electrostatic polarity that enhances interactions with negatively charged bacterial membranes. These features support selective membrane permeability testing, a common parameter in microbiological and cellular assays. The compound’s physicochemical profile also enables reliable solubility in aqueous solutions, simplifying preparation and storage in controlled lab environments.
For laboratories focusing on membrane disruption, cytoplasmic leakage studies, or structural interaction modelling, LZ1 is a functional option. Its consistent molecular integrity across a wide range of conditions contributes to reproducible outcomes, especially in antimicrobial mechanism studies involving Gram-positive and Gram-negative strains.
Analytical environments that prioritise reproducibility, scalability, and clear peptide-membrane interactions can benefit from the inclusion of this compound in assay protocols. The predictable behaviour of this peptide makes it a practical choice for maintaining control across diverse lab applications.
Suitable for Advanced Biochemical Assays
One of the most valued features of LZ1 is its compatibility with a wide range of advanced experimental workflows, including biochemical, cellular, and microbiological assays. Its structure allows close analysis of interactions between positively charged molecular regions and the bacterial membrane interface. This makes it suitable for model-based systems that study membrane disturbances or permeability changes.
The compact size and reliable folding structure of this peptide enable researchers to integrate it into assays without requiring extensive structural modification. Its compatibility with enzyme inhibition assays further extends its relevance in cellular studies focused on metabolic pathway interference.
In antimicrobial peptide screening, it serves as a clear marker for determining minimum inhibitory concentration (MIC) across selected microbial strains. Its wide spectrum of activity, combined with a low tendency for non-specific binding, makes it an efficient agent for evaluating bacterial sensitivity.
Professional users looking to buy LZ1 will find it applicable for:
- Studying selective membrane permeability
- Modelling host-defence peptide activity
- Evaluating dose-dependent enzymatic responses
- Conducting controlled microbial inhibition assays
These use cases align with expectations for high-quality peptide standards in laboratory testing and protocol validation environments.
Consistent Quality for Laboratory Use
Every compound in this category is developed with attention to consistency, solubility, and peptide-membrane interaction fidelity. For professionals requiring materials with verified performance properties, LZ1 stands out due to its reliable structure and behaviour in lab environments. It supports routine workflows involving bacterial viability testing, cytotoxicity observation, and peptide-lipid interaction assays.
The design of this peptide makes it suitable for scenarios where selective membrane targeting is needed without causing general toxicity to non-target eukaryotic cells. Its low cytotoxicity index, combined with its membrane-disruptive potential, enables targeted analysis without compromising surrounding test conditions.
Access to LZ1 online offers a convenient path for those managing time-sensitive or batch-replicated studies. Labs needing consistent reagents across multiple test groups benefit from this product's batch-to-batch reproducibility.
Key points for professional users:
- High solubility in aqueous solvents
- Stable in proteolytic environments
- Maintains structure across varied pH ranges
- Enables precise interaction monitoring with phospholipid membranes
This category focuses on providing reliable compounds that meet high analytical standards.
Structured for Mechanism of Action Studies
Because it can disrupt bacterial membranes without causing widespread off-target effects, LZ1 is commonly used in controlled studies of peptide-induced cell stress. This includes evaluating cytokine expression levels in specific models and mapping enzyme activity shifts associated with pathogen infection states. The compound supports observations related to the balance between inflammatory and anti-inflammatory signalling.
Its molecular properties are particularly relevant in enzymatic inhibition studies where dose-dependent activity must be isolated from broader cell damage. In this context, the peptide has demonstrated consistent results in assays measuring infected erythrocyte metabolic activity, without altering the behaviour of non-infected controls.
For labs interested in pathway modelling and peptide-based bioactivity assessments, LZ1 offers:
- Controlled test behaviour across variable pathogen models
- Support for selective enzyme activity suppression
- Compatibility with in vitro infection models
- Minimal interference in background assay signals
These properties support its use in structured biochemical frameworks, where clean signal-to-noise ratios and selective interaction are crucial.
Buy LZ1 for Focused Experimental Use
Professionals looking to buy LZ1 can expect a product suited for detailed biochemical evaluations that require structural clarity and batch consistency. By making LZ1 online available through our platform, we support rapid access to materials validated through independent testing and quality assurance.
This compound is regularly selected for its stability, purity, and predictable results across microbiological and cellular applications. Researchers focused on high-fidelity test conditions to isolate specific membrane interactions, track enzyme inhibition, and monitor cellular response to external peptide stimuli.
By integrating peptide LZ1 into your existing workflows, you gain access to a tool designed for precision, enabling:
- Advanced test structure for membrane activity
- Clear metrics on bacterial susceptibility
- Low variability in outcome across trials
- Efficient reconstitution and storage properties
Peptide LZ1 is formulated for use by professionals who prioritise consistency, clarity, and reproducibility. Its role in peptide-membrane interaction studies makes it a practical addition for laboratories seeking clean, evidence-driven outcomes.
Not sure where to start? Discover our peptide categories according to your specific needs and make the right choice for your body and your goals:
Do you know what you are looking for? Go directly to your preferred peptide among the most commonly used ones.
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The website is for informational and educational purposes only, and the products sold on it are intended for laboratory testing only. The authors of the texts are not responsible for the consequences of using the products, and users use them at their own risk. The site does not recommend or urge the use of its products on humans or animals.
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