Adipotide – Aliquot, 5mg

$64.99

  • Batch and lot coded with publicly visible lab reports to ensure quality and transparency.
  • Less than 10% variance in concentration per lot, guaranteeing consistency.
  • Formulated without corrosive agents for safety.
  • Crimp-top glass aliquot to minimize degradation.
  • Tamper-proof seal to ensure safety in transit.
Range Discount
0 - 1 0%
2 - 4 5%
5 - 9 10%
10 - 19 15%
20 - 49 20%
50 - 99 23%
100 - 199 25%
200 - 499 28%
500 + 30%
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Adipotide – Aliquot, 5mg

Data Sheet

Application Binds to two receptors, ANXA2 and prohibitin
CAS 859216-15-2
Molar Mass 2557.2 g/mol
Chemical Formula C111H206N36O28S2
Amino Acid Sequence CKGGRAKDCGGKLAKLAKKLAKLAK
Synonyms Adipotide, Prohibitin-targeting peptide 1, 859216-15-2, HKPao, EX-A6186, DA-74204
Storage Store at ≤4°C, tightly sealed, away from heat, light and moisture.
Solubility Soluble in BAC Water
Organoleptic Profile White Powder in 3mL glass aliquot
Composition Each aliquot contains Adipotide, Acetate
Specification Adipotide content (per aliquot):
Adipotide 5mg ±10%
Terms This material is sold for laboratory research use only. Terms of sale apply. Not for human consumption, nor medical, veterinary, or household uses. Please familiarize yourself with our Terms & Conditions prior to ordering.

Targeted Peptide for Adipose Biology and Metabolic Research

Adipotide is a research-grade synthetic peptide widely studied for its potential relevance in adipose tissue biology, metabolic signaling pathways, targeted cellular research, and peptide-mediated tissue investigations. As an investigational peptide of interest in metabolic science, Adipotide has attracted scientific attention in studies involving adipose-associated vascular targeting mechanisms, energy regulation pathways, and tissue-specific signaling research.

Researchers have investigated Adipotide in models involving adipose biology pathways, peptide-mediated cellular targeting, metabolic regulation research, and tissue-response mechanisms. Its investigational profile has made it a notable compound in advanced peptide science.

Supplied as a laboratory-grade aliquot for analytical and research applications.

Common Research Areas

  • Adipose Biology Research
  • Metabolic Regulation Studies
  • Tissue Targeting Investigation
  • Cellular Signaling Models
  • Peptide Research Applications

How Adipotide Works

Adipotide has been studied for its potential interaction with pathways associated with adipose biology, tissue-specific targeting, and metabolic signaling. Researchers have explored its relevance in models involving cellular targeting mechanisms, adipose-associated pathways, and peptide-mediated tissue research.

Its targeted peptide profile has made it a recurring subject in advanced metabolic research.

Research Overview

Adipotide has been investigated across a range of research models involving metabolic biology, tissue signaling, and peptide-mediated pathways.

Areas of scientific interest include:

  • Adipose pathway studies
  • Metabolic signaling investigations
  • Tissue targeting research models
  • Cellular mechanism studies
  • Peptide pathway research

Its broad research relevance continues to make it a notable compound in peptide science.

Adipotide vs Related Compounds

Adipotide vs AOD-9604

Adipotide is often researched in adipose-targeting models, while AOD-9604 is commonly investigated in growth hormone fragment-associated metabolic pathways.

Adipotide vs HGH Fragment 176-191

HGH Fragment 176-191 has drawn interest in lipolytic signaling investigations, whereas Adipotide is more strongly associated with targeted adipose tissue research.

Frequently Asked Questions

What is Adipotide studied for?

It is commonly researched in adipose biology, metabolic regulation, tissue targeting, and peptide-mediated cellular models.

What type of compound is Adipotide?

Adipotide is classified as a synthetic targeted research peptide.

How should Adipotide be stored?

Lyophilized peptide aliquots are generally stored refrigerated according to laboratory handling protocols.

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