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COG112, ApoE Mimetic Peptide

$166.32 $189.00
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size: 2 mg
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COG112, ApoE Mimetic Peptide
$166.32 $189.00
$166.32 $189.00
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size: 2 mg
  • 2 mg
  • 10 mg
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Description

COG112 ApoE Mimetic Peptide | Anti-Inflammatory & Neuroprotective Research Peptide

Product Overview:

COG112 is a synthetic Apolipoprotein E (ApoE) mimetic peptide designed by conjugating the receptor-binding domain of ApoE (COG133) with the cell-penetrating peptide (CPP) antennapedia (Antp). This modification significantly enhances the peptide’s anti-inflammatory properties and neuroprotective effects compared to COG133 alone.

Sequence:

acetyl-YRQIKIWFQNRRMKWKKCLRVRLASHLRKLRKRLL-amide

Molecular Formula:

C202H347N71O38S2

Molecular Weight:

4460.51 g/mol

Key Features and Uses:

 ApoE mimetic peptide COG112 is extensively studied for its ability to modulate inflammatory responses, primarily by inhibiting the NF-κB signaling pathway.

Exhibits potent anti-inflammatory properties useful for research into neurodegenerative diseases and inflammatory bowel disease.

     Compared to the original ApoE peptide COG133, COG112 demonstrates enhanced cell penetration and therapeutic efficacy due to the CPP antennapedia conjugation.

  Recent research highlights the role of COG112 in cancer biology by inhibiting the SET-Rac1 interaction, resulting in decreased cancer cell migration and invasion.

 COG112 peptide is widely used in anti-inflammatory uses and ApoE peptide research studies to explore novel therapeutic applications.

Research Insights:

   COG112 vs COG133 ApoE peptide: The addition of the CPP domain in COG112 dramatically improves cellular uptake and anti-inflammatory activity compared to COG133 alone, making it a superior candidate for experimental therapies targeting inflammation and neuroprotection.

Potential applications include modulation of inflammatory bowel disease, neurodegenerative disorders such as Alzheimer’s disease, and oncology research focused on tumor invasion and metastasis.

Product Applications:

Ideal for scientists and researchers investigating:

      Inflammatory signaling pathways (e.g., NF-κB inhibition)

      Neuroprotection mechanisms

      Cancer cell migration and invasion pathways

      Novel peptide therapeutics development

CAS #: NA

 

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