ARA-290 10MG

$59.00

ARA-290 is a synthetic research peptide derived from a defined fragment of erythropoietin (EPO). It is developed to support investigation of tissue-protective and inflammation-associated signaling pathways without activating erythropoietic function. This selective design allows researchers to study cellular protection and stress-response mechanisms while avoiding red blood cell stimulation.

Investigators commonly examine ARA-290 for its targeted interaction with the innate repair receptor (IRR). Through this receptor specificity, laboratories can evaluate repair-focused signaling and protective pathway behavior within controlled research environments. Its short-chain structure offers stability and predictable handling, supporting reproducible outcomes across preclinical and investigational study models.

  • Strength: 10MG

  • Designed to study innate repair receptor (IRR) signaling pathways

  • Does not activate erythropoietic (red blood cell) production

  • Referenced in inflammation, neuropathic, and cellular stress research models

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Description

ARA-290 Research Peptide Overview

Vial Size: 3ml

ARA-290 is a synthetic research peptide derived from a targeted fragment of erythropoietin (EPO). This compound was developed to examine tissue-protective signaling pathways while avoiding erythropoietic activation. By isolating specific receptor interactions, researchers can evaluate cellular protection and inflammation-associated signaling without stimulating red blood cell production.

Because of its selective design, ARA-290 is frequently studied in controlled laboratory environments focused on precise pathway mapping and cellular response analysis. Its targeted receptor activity supports structured investigations into protective signaling mechanisms under defined experimental conditions.


Innate Repair Receptor (IRR) Signaling Focus

ARA-290 is commonly referenced in research involving the innate repair receptor (IRR), a receptor complex associated with cellular stress response and protective signaling pathways. Through selective interaction with this receptor system, researchers can observe how cells respond to inflammatory stimuli, oxidative stress, and structural disruption.

This specificity allows laboratories to evaluate signaling behavior without overlapping hematopoietic pathway activation, helping reduce confounding variables within experimental models.

Common research areas include:

  • Cellular protection and recovery signaling

  • Regulation of inflammation-associated pathways

  • Neuropathic signaling model investigation

  • Tissue integrity and stress-response analysis

  • Intracellular signaling pathway evaluation


Peptide Structure and Research Consistency

ARA-290 is a short-chain peptide with a clearly defined amino acid sequence, supporting accurate measurement and repeatable handling in laboratory settings. Its structural clarity contributes to consistent experimental replication across multiple trials.

Because ARA-290 does not activate hematopoietic signaling, researchers can focus on protective cellular pathways with greater analytical precision. This makes it suitable for structured research models requiring isolated pathway evaluation.


Applications in Preclinical Research Models

Preclinical research environments frequently incorporate ARA-290 into models examining inflammation-associated signaling, nerve-related pathways, and cellular stress adaptation. Investigators value its receptor selectivity and predictable behavior in controlled conditions.

Typical laboratory applications include:

  • Examination of inflammation-driven signaling cascades

  • Study of cellular resilience and repair-related communication

  • Investigation of nerve-associated pathway dynamics

  • Analysis of stress-mediated intracellular signaling


Important Notice
This product is intended strictly for research use in controlled laboratory environments. It is not approved for human or animal use, clinical applications, or diagnostic purposes.

PeptiMed supplies research compounds exclusively for scientific investigation.

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