Pancragen is a peptide bioregulator derived from pancreatic tissue extracts studied for its role in modulating endocrine and exocrine gene expression. It influences peptide-mediated regulation of insulin synthesis and enzymatic activity through transcriptional and receptor-level signaling in preclinical models. Pancragen is used in research investigating pancreatic peptide signaling, metabolic regulation, and cellular homeostasis mechanisms.
For research use only. Not for human consumption.
References:
Khavinson VK et al., Bull Exp Biol Med, 2003 136(1):55–58
Anisimov VN et al., Biochemistry (Moscow), 2000 65(8):901–908
Morozov VG et al., Mech Ageing Dev, 1997 96(1–3):123–132
Pancragen 20mg (Bioregulator)
$65.00
Pancragen is a peptide bioregulator derived from pancreatic tissue extracts studied for its role in modulating endocrine and exocrine gene expression. It influences peptide-mediated regulation of insulin synthesis and enzymatic activity through transcriptional and receptor-level signaling in preclinical models. Pancragen is used in research investigating pancreatic peptide signaling, metabolic regulation, and cellular homeostasis mechanisms.
Related products
BPC-157 10mg
BPC-157 has undergone a great deal of research because its healing abilities extend well beyond the lining of the stomach. Studies in animal models indicate that BPC-157 can enhance angiogenesis, promote wound healing, stimulate collagen synthesis, modulate the inflammatory response, and protect against oxidative stress. The peptide has shown benefits in animal models with inflammatory bowel disease, GI ulcers, musculoskeletal injuries, heart damage, eye injuries and neurological damage. Research has shown that the oral bioavailability of BPC-157 is quite high. BPC-157 10mg
BPC-157 has undergone a great deal of research because its healing abilities extend well beyond the lining of the stomach. Studies in animal models indicate that BPC-157 can enhance angiogenesis, promote wound healing, stimulate collagen synthesis, modulate the inflammatory response, and protect against oxidative stress. The peptide has shown benefits in animal models with inflammatory bowel disease, GI ulcers, musculoskeletal injuries, heart damage, eye injuries and neurological damage. Research has shown that the oral bioavailability of BPC-157 is quite high. BPC-157, TB-500, GHK-Cu (Glow Blend)
BPC-157 has undergone a great deal of research because its healing abilities extend well beyond the lining of the stomach. Studies in animal models indicate that BPC-157 can enhance angiogenesis, promote wound healing, stimulate collagen synthesis, modulate the inflammatory response, and protect against oxidative stress. The peptide has shown benefits in animal models with inflammatory bowel disease, GI ulcers, musculoskeletal injuries, heart damage, eye injuries and neurological damage. Research has shown that the oral bioavailability of BPC-157 is quite high. GHK-Cu 50mg Copper Peptide
GHRP-2 (5mg x 10) Ipamorelin (5mg x 10)
GHRP-6 (5mg x 10), CJC-1295 no DAC (5mg x 10)
Melanotan 2 (MT2) (3mg x 10 Vials = 30mg)
Melanotan-2 (MT-2) is a synthetic derivative of human alpha-melanocyte-stimulating hormone (α-MSH), developed at the University of Arizona in the 1980s. The initial purpose was to create a sunless tanning alternative, inspired by α-MSH's ability to induce sexual arousal and skin darkening in rodents. However, as research progressed, MT-2's diverse effects were unveiled. These include enhancing sexual arousal, promoting skin pigmentation, reducing compulsive behavior, managing addiction, suppressing hunger, decreasing glucagon production, and even potentially reversing certain features associated with autism. Melanotan-2 research has shown it to enhance sexual arousal, promote skin pigmentation through melanocyte activation and reduce compulsive/addictive behaviors.
Semaglutide 10
Semaglutide is a widely researched peptide-based compound recognized for its significant role in metabolic regulation and appetite control. It belongs to the class of GLP-1 receptor agonists, which are designed to mimic naturally occurring hormones involved in glucose metabolism and satiety signaling.

Reviews
There are no reviews yet.