HCG (Human Chorionic Gonadotropin)
Human Chorionic Gonadotropin (HCG) is a naturally occurring glycoprotein hormone composed of alpha and beta subunits. It is extensively studied in molecular biology and endocrinology research for its role in hormone signaling, receptor interaction, and intracellular regulatory pathways.
In laboratory research, HCG is valued for its selective binding to luteinizing hormone/choriogonadotropin receptors. These receptors are widely distributed in reproductive and other endocrine tissues, making HCG a relevant compound for studying peptide-hormone receptor dynamics.
One of the defining characteristics of HCG is its complex glycoprotein structure. This enables researchers to examine the effects of post-translational modifications, protein folding, and receptor affinity on peptide signaling and biological activity in controlled experimental settings.
HCG is frequently included in studies focused on endocrine signaling, cellular communication, and hormone-regulated molecular pathways. Its interaction with specific receptors allows researchers to investigate signal transduction and downstream transcriptional responses.
The peptide is also studied in tissue-specific signaling research. By engaging receptor-mediated pathways, HCG provides a model for understanding how peptide hormones influence cellular activity and intracellular communication.
HCG’s molecular stability and predictable receptor interaction support reproducibility in laboratory experiments. Its well-characterized behavior allows for consistent outcomes and comparative studies with other glycoprotein hormones.
Researchers often examine HCG in structure–function analyses to determine how variations in subunit composition or glycosylation patterns affect receptor binding and signaling efficacy.
Unlike general signaling molecules, HCG operates through targeted receptor engagement, allowing precise experimental observation of hormone-mediated intracellular pathways without broad systemic effects.
HCG is also of interest in studies investigating endocrine feedback loops and intercellular communication. Its signaling provides a platform for exploring regulatory mechanisms in reproductive and other hormone-responsive tissues.
Because hormone signaling intersects multiple physiological systems, HCG is frequently included in systems-based research rather than isolated pathway studies, providing insight into integrated peptide and receptor networks.
The peptide’s well-defined molecular profile makes HCG a reliable reference compound in molecular endocrinology, peptide signaling, and receptor interaction research.
HCG continues to attract scientific interest due to its structural complexity, receptor specificity, and role in advancing the understanding of peptide-mediated endocrine signaling.
Its unique glycoprotein composition, stability, and receptor-targeted activity make HCG an essential research compound for investigating complex hormone signaling and peptide biology in laboratory settings.
“Ipamorelin (5mg x 10), CJC-1295 no DAC (5mg x 10)” has been added to your cart. View cart
HCG (Human Chorionic Gonadotropin) 5000 IU
$78.00
Human Chorionic Gonadotropin (HCG) is a naturally occurring glycoprotein hormone composed of alpha and beta subunits. It is extensively studied in molecular biology and endocrinology research for its role in hormone signaling, receptor interaction, and intracellular regulatory pathways.
Category: All Peptides
Description
Shipping & Delivery
Be the first to review “HCG (Human Chorionic Gonadotropin) 5000 IU” Cancel reply
Related products
AOD9604 6mg
$65.00
AOD9604 is a modified version of the hGH fragment 176-191 peptide (contains a di-sulfide bridge) and thus a derivative of human growth hormone (hGH). Originally developed as a lipolytic (fat burning) compound, AOD9604 has shown benefit in studies of heart disease, osteoarthritis/cartilage repair, and metabolic syndrome. AOD9604 stimulates lipolysis (the breakdown or destruction of fat) and inhibits lipogenesis in animal studies.
BPC-157 15mg
$140.00
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 5mg
$59.99
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. Dihexa (5mg x 60 Capsules = 300mg)
$195.00
Dihexa is a small peptide-derived compound designed to support cognitive function and brain regeneration. It acts by activating the HGF/c-Met signaling pathway, which plays a critical role in forming new synaptic connections and enhancing neuroplasticity. Dihexa also mimics the action of brain-derived neurotrophic factor (BDNF), a key molecule involved in learning, memory, and neuronal survival. Preclinical research studies have shown that Dihexa can significantly improve memory consolidation and reverse cognitive deficits in models of Alzheimer’s disease, traumatic brain injury, and stroke. Unlike traditional nootropics or growth factors with poor blood–brain barrier penetration, Dihexa is orally bioavailable and metabolically stable, allowing for targeted CNS effects. Its unique mechanism positions it as a promising research compound for neurodegenerative conditions, offering potential in synaptic repair, inflammation reduction, and long-term cognitive enhancement. GHK-Cu (2mg x 60 Capsules) (Copper Tripeptide)
$165.00
GHK-Cu is a small, naturally occurring peptide with the ability to attenuate inflammation, improve antioxidant responses, and improve gene expression on a large scale. Research shows that this copper-chelating peptide may be of critical importance both in the prevention of neurodegenerative disease and as a tool for exploring pathophysiological mechanisms. Studies in mice have revealed that GHK-Cu can protect against neurological insults, improve wound healing, reduce rates of infection, and boost blood vessel growth. The peptide has been of interest in recent years for its anti-oxidant properties that, in combination with its ability to alter gene expression patterns, appear to help slow or even reverse some aspects of aging.

Reviews
There are no reviews yet.