Muscle Growth research

Peptides for Anabolic Research

Peptides are widely studied in anabolic research for their role in regulating protein synthesis and cellular growth processes. In laboratory environments, these compounds are examined for their interaction with pathways related to growth hormone (GH) and insulin-like growth factor 1 (IGF-1).

Role of Peptides in Muscle and Growth Studies

Scientific studies focus on how certain peptides influence muscle development, tissue repair, and cellular regeneration. Research also explores their interaction with myostatin activity and other signaling mechanisms involved in muscle growth and recovery.

For research purposes only. Not intended for human or animal use.

SKU: Ipamorelin 10mg
Brand: N/A
€56.99

Ipamorelin peptide is a synthetic growth hormone–releasing peptide studied in peptide research for its interaction with ghrelin receptors involved in growth hormone signaling. The Ipamorelin peptide belongs to a class of regulatory peptides known as growth hormone secretagogues, which influence endocrine signaling pathways related to growth hormone release. Researchers investigate the Ipamorelin peptide to better understand how peptides that target ghrelin receptors affect metabolic regulation, muscle physiology, and hormonal signaling pathways. Because peptides such as the Ipamorelin peptide interact with growth hormone pathways, this peptide has become an important subject of research in studies focused on metabolism, recovery, and peptide-based endocrine regulation.

SKU: Tesamorelin 10mg
Brand: N/A

Test results for -> TESAMORELIN

Tesamorelin peptide is a synthetic growth hormone–releasing hormone (GHRH) peptide studied in peptide research for its interaction with endocrine signaling pathways that regulate growth hormone secretion. The Tesamorelin peptide belongs to a class of regulatory peptides that influence the growth hormone axis and metabolic signaling. Researchers investigate the Tesamorelin peptide to better understand how GHRH peptides affect metabolic regulation, fat metabolism, and hormonal signaling pathways. Because peptides such as the Tesamorelin peptide influence growth hormone pathways, this peptide has become an important subject of research in studies focused on metabolism, endocrine signaling, and peptide-based hormonal regulation.

SKU: CJC-1295 5mg
Brand: N/A

CJC-1295 is a synthetic peptide composed of 30 amino acids that is designed to mimic the biological activity of growth hormone–releasing hormone (GHRH). The CJC-1295 peptide is widely studied in peptide research for its potential ability to stimulate the GHRH receptors in the pituitary gland. Through this mechanism, the CJC-1295 peptide may influence the natural signaling pathways involved in growth hormone (GH) release and IGF-1 production. Due to structural modifications, the CJC-1295 peptide demonstrates an extended half-life compared to many other GHRH-related peptides. Because of these characteristics, this peptide has become an important peptide of interest in studies focused on endocrine signaling, metabolic regulation, and peptide-based hormone research.

SKU: Semorelin 5mg
Brand: N/A

Sermorelin peptide is a synthetic growth hormone–releasing hormone (GHRH) peptide studied in peptide research for its ability to stimulate the natural release of growth hormone from the pituitary gland. The Sermorelin peptide belongs to a class of regulatory peptides that influence the growth hormone signaling pathway and endocrine regulation. Researchers investigate the Sermorelin peptide to better understand how GHRH peptides affect metabolic regulation, muscle physiology, and hormonal signaling. Because peptides such as the Sermorelin peptide influence growth hormone pathways, this peptide has become an important subject of research in studies related to metabolism, recovery, and peptide-based endocrine regulation.

SKU: TB-500 5mg
Brand: N/A
€29.99

TB-500 peptide is a synthetic peptide derived from thymosin beta-4, a naturally occurring regulatory peptide involved in cellular migration and tissue repair. The TB-500 peptide is widely studied in peptide research because peptides related to thymosin beta-4 play an important role in cellular regeneration and tissue remodeling. Researchers investigate the TB-500 peptide to better understand how regenerative peptides influence cell migration, tissue repair, and inflammatory signaling pathways. Because peptides such as the TB-500 peptide participate in biological processes related to recovery and regeneration, this peptide has become an important subject of research in studies focused on regenerative peptides, muscle physiology, and tissue repair mechanisms.

SKU: BPC-157 5mg
Brand: N/A
€23.00


BPC-157 peptide is a synthetic pentadecapeptide derived from a protective protein found in gastric tissue. The BPC-157 peptide belongs to a class of regenerative peptides studied in peptide research for their role in tissue repair, cellular signaling, and inflammatory pathway regulation. Researchers investigate the BPC-157 peptide to better understand how regenerative peptides influence biological processes such as tissue regeneration, muscle physiology, and cellular recovery. Because peptides such as the BPC-157 peptide interact with pathways involved in tissue repair and inflammatory signaling, this peptide has become an important subject of research in studies related to regenerative peptides, gastrointestinal biology, and peptide-based healing mechanisms.

SKU: MOTS-C 10mg
Brand: N/A
€29.99

MOTS-C (Mitochondrial Open Reading Frame of the 12S rRNA-c) is a mitochondrial-derived peptide (MDP) encoded within the mitochondrial genome. It is extensively researched for its potential to enhance metabolic flexibility, promote fat loss, improve insulin sensitivity, and support longevity by regulating cellular energy metabolism. MOTS-C is a promising candidate in studies focused on obesity, type 2 diabetes, aging, and exercise performance.

This product is intended solely for research purposes and is not for human or animal consumption.

SKU: CJC-1295 5mg
Brand: N/A

CJC-1295 is a synthetic peptide composed of 30 amino acids that is designed to mimic the biological activity of growth hormone–releasing hormone (GHRH). The CJC-1295 peptide is widely studied in peptide research for its potential ability to stimulate the GHRH receptors in the pituitary gland. Through this mechanism, the CJC-1295 peptide may influence the natural signaling pathways involved in growth hormone (GH) release and IGF-1 production. Due to structural modifications, the CJC-1295 peptide demonstrates an extended half-life compared to many other GHRH-related peptides. Because of these characteristics, this peptide has become an important peptide of interest in studies focused on endocrine signaling, metabolic regulation, and peptide-based hormone research.

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