AHK-Cu-100MG

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AHK-Cu is a research-use-only peptide designed for laboratory-based investigations. This compound features a novel copper-coordinated structure aimed at exploring potential biochemical interactions. For research use only. Not for in vivo or therapeutic applications.

$80.00

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ℹ️RESEARCH USE ONLY

For laboratory research use only. Not for human or veterinary use. Not for diagnostic or therapeutic purposes.

AHK-Cu

AHK-Cu is a copper-peptide conjugate designed for targeted biological studies in research applications. This peptide variant is synthesized to explore its interactions with cellular and extracellular matrices, potentially relevant in fields such as metalloprotein biology, neurobiology, and tissue engineering research.

Key Research Focus Areas

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    remodeling processes.

It is important to note that AHK-Cu is intended solely for laboratory use in controlled academic research settings and is not intended for any therapeutic, diagnostic, or cosmetic applications.

For research use only. Not for human or animal consumption.

Research Context

Peptides modified with metals like copper (Cu) have gained attention in academic and industrial research due to their unique biochemical properties. Copper-peptide conjugates can enhance stability, improve cellular uptake, and alter functional properties, which are critical for applications in biomedicine, material sciences, and biochemical assays.

AHK-Cu may be utilized to investigate copper-dependent enzymatic pathways, study its role in signaling mechanisms, or explore its potential as a substrate in biosensing technologies. Research institutions and academic researchers utilize such compounds to probe fundamental biochemical processes under controlled experimental conditions.

Research Overview

AHK-Cu is characterized by its incorporation of copper ions, which may influence its binding affinity, specificity, and metabolic stability. The peptide backbone retains structural integrity while the copper moiety introduces potential for redox-active behavior, which can be leveraged in biochemical assays to study protein-metal interactions or enzymatic activity.

Current studies in the research community focus on its compatibility with various detection methods, such as fluorescence, electron microscopy, and spectroscopic techniques. Researchers may also explore its applications in targeted drug delivery models or as a tool for studying copper homeostasis in biological systems.

 

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