Description
ARA-290 10mg — Research Peptide
ARA-290, also known as cibinetide or PH-BSP, is a synthetic 11-amino-acid peptide derived from the helix B surface region of erythropoietin, commonly referred to as EPO. In published research, ARA-290 has been studied for its interaction with tissue-protective signaling pathways, particularly those associated with the innate repair receptor, inflammatory response models, cellular stress response, and neuroimmune research.
AminoVault offers ARA-290 10mg strictly as a laboratory research compound. This material is intended for qualified research professionals and institutions only and is not intended for human or veterinary use.
What Is ARA-290?
ARA-290 is an erythropoietin-derived peptide designed to mimic a specific tissue-protective region of the EPO molecule without the same erythropoietic activity associated with full-length erythropoietin. This has made ARA-290 a subject of interest in research involving receptor signaling, tissue response models, neuroinflammatory pathways, and cellular protection mechanisms.
Research involving ARA-290 has explored its relationship to the innate repair receptor, also described in scientific literature as a receptor complex involving erythropoietin receptor and beta-common receptor signaling. These studies are focused on understanding pathway-level activity in controlled laboratory environments.
Chemical Profile
Product Name: ARA-290 10mg
Compound Name: ARA-290
Also Known As: Cibinetide, PH-BSP, ARA290
Peptide Type: Erythropoietin-derived synthetic peptide
Peptide Sequence: pGlu-Glu-Gln-Leu-Glu-Arg-Ala-Leu-Asn-Ser-Ser
Molecular Formula: C51H84N16O21
Molecular Weight: 1257.3 g/mol
CAS Number: 1208243-50-8
PubChem CID: 91810664
Form: Lyophilized powder
Storage: Store according to laboratory handling protocols and supplier documentation
Key Areas of Research
Innate Repair Receptor Research
ARA-290 has been widely studied for its relationship to the innate repair receptor, a tissue-response signaling system associated with cellular stress, inflammation, and repair-pathway research. This receptor pathway has made ARA-290 a subject of interest in models involving tissue response and biological stress signaling.
Erythropoietin-Derived Peptide Research
ARA-290 is derived from the helix B surface region of erythropoietin. Unlike full erythropoietin, ARA-290 has been studied for tissue-protective signaling without the same focus on red blood cell production pathways. This distinction has made it useful in research exploring selective EPO-related signaling mechanisms.
Neuroinflammatory Pathway Models
Published research has examined ARA-290 in relation to neuroimmune and neuroinflammatory signaling. These studies evaluate how peptide signaling may interact with inflammatory markers, cellular stress response, and nervous system research models.
Peripheral Nerve and Sensory Pathway Research
ARA-290 has appeared in studies involving peripheral nerve models, sensory pathway signaling, and cellular response to inflammatory stress. These research areas are intended to evaluate biological mechanisms and should not be interpreted as evidence of approved therapeutic use.
Cellular Stress and Tissue Response Research
Research involving ARA-290 has explored its role in cellular stress-response models, including oxidative stress, inflammatory signaling, and tissue-protective pathway activity. These studies are conducted in controlled research settings to better understand peptide-receptor interactions and downstream signaling behavior.
Research Applications
ARA-290 10mg may be used in qualified laboratory research involving:
Innate repair receptor signaling
Erythropoietin-derived peptide studies
Neuroimmune pathway research
Inflammatory response models
Peripheral nerve research models
Cellular stress-response studies
Tissue response pathway research
Oxidative stress models
Peptide structure-activity relationship studies
Product Use Statement
ARA-290 10mg from AminoVault is supplied strictly for research purposes. This product is not a drug, dietary supplement, cosmetic, food ingredient, or consumer product. It is not intended to diagnose, treat, cure, prevent, or mitigate any disease or medical condition.
This material should only be handled by qualified professionals in appropriate laboratory settings. Any human or animal use is strictly prohibited.
