Research Peptides


GLP-3Reta
Research shows GLP-3R activates three metabolic receptors at once (GIP, GLP-1, and glucagon), making it a unique tool in multi-receptor signaling research.


GLP-2Tirz
Studies suggest GLP-2T activates two key metabolic receptors (GIP and GLP-1) simultaneously, making it a widely studied tool in incretin biology research.


GLP-1Sema
Studies suggest GLP-1S is a long-acting GLP-1 receptor agonist studied extensively for its role in incretin signaling and glucose regulation research.


Wolverine Blend
Studies suggest combining BPC-157 and TB-500 allows researchers to explore how two well-studied peptides with distinct signaling profiles interact in laboratory models.


Glow Blend
Research combines BPC-157, TB-500, and GHK-Cu to study how three peptides with different signaling profiles interact in extracellular matrix and blood vessel models.


Klow Blend
Studies combine KPV, BPC-157, GHK-Cu, and TB-500 to explore how inflammatory signaling, growth factor pathways, matrix gene expression, and actin dynamics interact in laboratory models.


Tesamorelin
Studies suggest Tesamorelin activates GHRH receptors on pituitary cells to stimulate growth hormone release, with a lipid modification that extends its activity in research models.


MOTS-C
Research shows MOTS-C is encoded by mitochondrial DNA and appears to act as a messenger between the mitochondria and the cell nucleus in energy metabolism studies.


BPC-157
Studies suggest BPC-157 influences how cells communicate, migrate, and form new blood vessels in preclinical research models.


GHK-Cu
Research shows GHK-Cu influences the expression of thousands of genes related to collagen production, inflammation, and oxidative stress in laboratory models.


TB-500
Research suggests TB-500 plays a key role in how cells reorganize their internal structure, move, and form new blood vessels in laboratory studies.


NAD+
Research shows NAD+ is a central coenzyme in cellular energy production and a required substrate for sirtuins and DNA repair enzymes, making it a cornerstone of metabolism studies.


KPV
Research suggests KPV, a tiny three-amino-acid fragment of alpha-MSH, influences key inflammatory signaling pathways in intestinal and immune cell models.


Melanotan II
Research shows Melanotan II activates melanocortin receptors MC1R and MC4R, making it a widely used tool in pigmentation and central nervous system signaling studies.


DSIP
Research shows DSIP, first isolated from brain tissue, influences delta wave patterns and sleep architecture in electroencephalography studies.


PT-141
The C-terminal acid form of Melanotan II and a cyclic melanocortin agonist, studied as a tool for central MC3R and MC4R signaling research.

Hospira BAC Water 30 mL
Sterile water with a bacteriostatic preservative, used to reconstitute lyophilized peptides and other research compounds in laboratory settings.


BAC Water 10 mL
Sterile water with a bacteriostatic preservative, used to reconstitute lyophilized peptides and other research compounds in laboratory settings.



