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AHK-Cu 200mg (Topical)

AHK-Cu 200mg (Topical)

CAS: 682809-81-0

AHK-Cu 200mg (Topical) from BioPeptides is a high-purity synthetic copper peptide identified by CAS 682809-81-0. Manufactured using solid-phase peptide synthesis (SPPS) and validated through HPLC, Mass Spectrometry, and UV analysis, this peptide is designed for advanced laboratory research in cell signaling, protein–peptide interaction analysis, regenerative cell models, and metabolic research. Supplied as a lyophilized powder, AHK-Cu 200mg offers excellent stability, reproducibility, and batch consistency for laboratories across Europe seeking reliable compounds when they buy peptides online.

$200.00

Products will arrive in a lyophilized (powder) form for maximum stability
1

Research Use Only

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Research Use Only

All BioPeptide products are strictly for laboratory research use.

Comprehensive Research Overview

AHK-Cu 200mg (Topical) is a precision-engineered synthetic copper-binding research peptide supplied by BioPeptides for advanced in-vitro laboratory investigation.

Each batch is produced using Solid-Phase Peptide Synthesis (SPPS) and subjected to multi-stage purification and analytical validation to ensure high purity, structural integrity, and reproducibility.

Identified by CAS number 682809-81-0, this peptide meets documentation and traceability requirements for European and international research laboratories.

Scientific Background

Synthetic copper peptides such as AHK-Cu are extensively studied for their role in cellular communication, enzymatic regulation, and protein–metal ion interactions.

AHK-Cu serves as a valuable research tool for investigating intracellular signaling pathways, extracellular matrix behavior, and mitochondrial metabolic processes.

Its predictable degradation kinetics, copper-binding stability, and linear peptide structure support reproducible experimental outcomes in both short-term assays and long-duration research designs.

Mechanistic Research Properties

  • Modulation of intracellular signaling cascades in controlled laboratory models
  • Enhancement of growth factor sensitivity in regenerative cell research
  • Regulation of gene expression patterns in peptide-mediated signaling studies
  • Influence on mitochondrial ATP production and metabolic behavior
  • Support of enzymatic activation and inhibition pathway analysis
  • Interaction with extracellular matrix components in structural protein research

Primary Research Applications

Regenerative Cell Biology: Investigating cellular renewal, differentiation, and tissue modeling under controlled laboratory conditions.

Protein Expression Analysis: Studying transcriptional and translational responses in peptide-treated experimental models.

Receptor-Binding Studies: Analyzing ligand–receptor interactions and peptide-mediated signaling mechanisms.

Mitochondrial Metabolic Research: Evaluating peptide influence on cellular energy production pathways.

Enzymatic Sensitivity Experiments: Assessing enzyme activation, inhibition, and regulatory behavior.

Extracellular Matrix Interaction Studies: Exploring matrix remodeling and cellular microenvironment dynamics.

Molecular Characteristics

  • Molecular Type: Synthetic copper-binding research peptide
  • Structure: Linear tripeptide complexed with copper
  • Stability: High when stored under recommended laboratory conditions
  • Molecular Weight: 416.9 g/mol

Stability Profile and Storage Considerations

  • Supplied as a lyophilized powder for enhanced long-term stability
  • Long-term storage: Store at −20°C to preserve molecular integrity
  • Sensitive to moisture and prolonged light exposure
  • Predictable degradation above room temperature
  • Reconstituted solutions remain stable for approximately 24–48 hours under refrigeration

Solubility and Reconstitution Options

  • Bacteriostatic water
  • Sterile saline
  • Acidic aqueous buffers
  • Organic analytical solvents for advanced assay applications

Technical Specifications

product Name

AHK-Cu 200mg (Topical)

cas

682809-81-0

purity

≥99% (HPLC verified)

unit Size

200 mg

form

Lyophilized powder

synthesis

Solid-Phase Peptide Synthesis (SPPS)

analytical

HPLC, Mass Spectrometry, UV Spectrophotometry

Analytical Validation and Quality Control

  • High-Performance Liquid Chromatography (HPLC) purity confirmation
  • Mass Spectrometry (MS) molecular weight and identity verification
  • UV spectrophotometric concentration analysis
  • Batch identity and consistency verification
  • Endotoxin and microbial contamination screening

Why Buy AHK-Cu from BioPeptides?

BioPeptides is trusted by European and international research institutions for supplying high-purity synthetic peptides with transparent analytical validation. Researchers who buy peptides online choose BioPeptides for consistent quality, regulatory-aligned documentation, and reliable EU-wide shipping.

Frequently Asked Questions

AHK-Cu 200mg is used in regenerative cell biology, protein interaction studies, receptor-binding assays, mitochondrial research, and enzymatic pathway analysis under controlled laboratory conditions.

The CAS number is 682809-81-0, which uniquely identifies the compound for research documentation and regulatory reference.

No. AHK-Cu 200mg (Topical) is supplied strictly for laboratory research and is not approved for medical, cosmetic, therapeutic, or dietary applications.

Store the lyophilized peptide at −20°C, protected from moisture and light. Reconstituted solutions should be refrigerated and used within 24–48 hours.

Yes. BioPeptides supplies AHK-Cu 200mg to laboratories across Europe, including France, Germany, Italy, Spain, the Netherlands, Belgium, and Switzerland.

Purity is confirmed using HPLC, while molecular identity is verified through Mass Spectrometry and UV analysis for each production batch.

AHK-Cu can be reconstituted using bacteriostatic water, sterile saline, acidic buffers, or compatible analytical solvents depending on experimental requirements.

Yes. When stored and handled properly, AHK-Cu maintains molecular stability and reproducibility for extended research timelines.

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