Peer-reviewed peptide research, organized by the systems and pathways our products are studied in.
GLP Research
Metabolic peptides — particularly the incretin class (GLP-1, GIP, dual and triple agonists) — are among the most extensively studied molecules in modern endocrinology. Research examines glucose homeostasis, satiety signaling, gastric emptying, and adipose tissue remodelling.
Growth-hormone-axis research includes GHRH analogues and GH secretagogues studied for pulsatile GH release, IGF-1 signaling, and body-composition endpoints in controlled research settings.
Tissue-repair research peptides are studied for their roles in wound-model biology, connective-tissue remodeling, and inflammatory pathway modulation. Much of the published literature is preclinical, involving cellular and animal models.
Cellular health research focuses on mitochondrial bioenergetics, redox balance, and cellular signaling. Peptides such as MOTS-c are studied for their effects on energy metabolism and oxidative stress.
Cognitive and neuroscience research examines peptide signaling in CNS models, including neuroprotection, BDNF-related pathways, and behavioral research endpoints.
Healthy aging research covers longevity-adjacent peptides, NAD+ precursors and analogues, and dermal-quality molecules. Topics include sirtuin signaling, senescence, and skin biology.
Immune and cellular defense research includes peptide models related to inflammatory signaling, mucosal immunity, cellular defense pathways, and oncology-adjacent preclinical literature.
Gut and microbiome-adjacent research focuses on intestinal mucosa, barrier integrity, IBD models, and GI pathway signaling in preclinical research systems.
Metabolic research examines glucose, lipid, and adipose-tissue pathways across endocrine and cellular models, including insulin sensitivity and energy-balance endpoints.
Performance and recovery research includes musculoskeletal recovery, endurance models, exercise-response pathways, and tissue-repair endpoints studied in laboratory settings.
Circadian and neuroendocrine research focuses on circadian regulation, hypothalamic–pituitary axis signaling, and neuroendocrine endpoints in controlled laboratory models.
Neuropeptide and hormone research covers melanocortin signaling, neuroendocrine pathways, and hormone-axis research models — studied in preclinical systems without consumer-use claims.
Research blends are studied as combination-peptide preparations where investigators compare multi-pathway activity, compatibility, and research-model outcomes.