Major Categories of Therapeutic Peptides and How They Work
Now that you understand the basic mechanism, let's examine how specific categories of therapeutic peptides work:
Growth Hormone-Releasing Peptides (GHRPs)
How they work: GHRPs like CJC-1295 and Ipamorelin bind to ghrelin receptors in the hypothalamus. This triggers the release of Growth Hormone-Releasing Hormone (GHRH), which then stimulates the pituitary gland to release growth hormone.
The effect: Elevated growth hormone levels produce widespread benefits including increased muscle protein synthesis, enhanced fat burning, improved sleep quality, and accelerated tissue repair.
Why it's clever: Instead of injecting growth hormone directly (which disrupts natural GH rhythms and causes side effects), GHRPs simply amplify your body's existing GH release mechanism. The result feels natural because it IS natural—just enhanced.
GLP-1 Receptor Agonists
How they work: Peptides like Semaglutide and Tirzepatide mimic the effects of glucagon-like peptide-1 (GLP-1), a naturally occurring hormone secreted by the gut after eating.
The effect: GLP-1 agonists slow gastric emptying, reduce appetite through hypothalamic signaling, and improve insulin sensitivity. The reduced appetite is particularly powerful—users report feeling genuinely less hungry, not just willpower-based restriction.
Why it matters: For the first time, we have medications that address the hormonal drivers of overeating rather than just suppressing appetite through CNS effects.
Healing Peptides (BPC-157, TB-500)
How they work: BPC-157 and TB-500 don't target a single receptor type. Instead, they influence multiple healing pathways simultaneously:
- Upregulating growth factor production
- Promoting angiogenesis (new blood vessel formation)
- Modulating inflammatory responses
- Accelerating collagen deposition in damaged tissue
- Protecting cells from oxidative stress
The effect: Dramatically accelerated wound healing, reduced inflammation, and improved tissue quality during recovery.
NAD+ Peptides
How they work: NAD+ (nicotinamide adenine dinucleotide) is a critical coenzyme found in every cell, essential for mitochondrial energy production and DNA repair. NAD+ levels decline with age.
The effect: Peptide-delivered NAD+ precursors like NMN and NR help restore cellular NAD+ levels, improving mitochondrial function, enhancing sirtuin activity (longevity-associated proteins), and supporting cellular repair mechanisms.