Research Compound Library
Alford Molecular Research evaluates peptides, peptide analogues, proteins, mitochondrial-derived signaling molecules, growth-factor systems, metabolic compounds, and related bioactive research materials through an integrated molecular, analytical, and translational framework.
Our compound library emphasizes molecular identity, structural chemistry, receptor biology, signaling pathways, evidence quality, analytical characterization, and quality-control considerations. The inclusion of a compound in this library indicates research interest or analytical evaluation and does not imply therapeutic endorsement or suitability for human or veterinary administration.

FOR RESEARCH USE ONLY. This section provides scientific information for documentation purposes. The compounds listed are evaluated for potential biological relevance in nonclinical molecular research frameworks. AMR does not provide medical services or substances for human administration.
Research Compound Library
Alford Molecular Research evaluates peptides, peptide analogues, proteins, mitochondrial-derived signaling molecules, growth-factor systems, metabolic compounds, and related bioactive research materials through an integrated molecular, analytical, and translational framework.
Our compound library emphasizes molecular identity, structural chemistry, receptor biology, signaling pathways, evidence quality, analytical characterization, and quality-control considerations. The inclusion of a compound in this library indicates research interest or analytical evaluation and does not imply therapeutic endorsement or suitability for human or veterinary administration.
SS-31 / Elamipretide
Mitochondria-Targeting Aromatic-Cationic Tetrapeptide
Mitochondrial Signaling
Synthetic Peptide
Evidence: Supported / Preliminary
Source-verified research profile covering molecular identity, mitochondrial membrane targeting, bioenergetic mechanisms, analytical documentation, and evidence classification for SS-31 / elamipretide.
MOTS-c
Mitochondrial-Derived Metabolic Signaling Peptide
Mitochondrial Peptide
Metabolic Signaling
AMPK-Associated Research
Evidence: Preclinical / Preliminary
MOTS-c is a mitochondrial-derived 16-amino-acid peptide investigated in mitochondrial signaling, metabolic adaptation, AMPK-associated pathways, glucose metabolism, exercise and skeletal-muscle biology, and aging & cellular stress, framed strictly as research-only.
Thymosin Alpha-1 / Thymalfasin
N-Terminally Acetylated 28-Amino-Acid Thymic Peptide
Immune & Thymic Peptide
Adaptive Immunity
Innate Immune Signaling
Evidence: Supported
Thymosin Alpha-1 (thymalfasin, Tα1) is an N-terminally acetylated 28-amino-acid thymic peptide investigated in innate and adaptive immune signaling, dendritic-cell biology, T-cell responses, Toll-like-receptor-associated pathways, cytokine networks, and translational immunology, framed strictly as research-only.
Semax
Synthetic ACTH-Derived Neuroactive Heptapeptide
Neuroactive Peptide
Neurotrophic Signaling
Neuroplasticity Research
Evidence: Preliminary
Semax is a synthetic ACTH-derived heptapeptide investigated in neurotrophic signaling, cognitive biology, neuroplasticity, melanocortin-related mechanisms, stress-response models, ischemia-related experimental models, and neuronal signaling, framed strictly as research-only.
KPV
Tripeptide derived from the C-terminal region of alpha-melanocyte-stimulating hormone
Inflammatory Signaling
NF-kappaB-Associated Pathways
Epithelial & Intestinal Models
A tripeptide fragment of alpha-MSH studied in inflammatory signaling, NF-kappaB-associated pathways, intestinal inflammation models, melanocortin-associated biology, and epithelial signaling, framed strictly as research-only.
GHK-Cu / Copper Tripeptide-1
Copper-Binding Tripeptide Complex
Extracellular Matrix Biology
Copper-Dependent Signaling
Evidence: Supported / Preliminary
Source-verified research profile covering extracellular-matrix biology, copper-dependent signaling, dermal biology, and gene-expression research for the GHK-Cu complex.
Selank / TP-7
Synthetic Tuftsin-Derived Heptapeptide
Neuroactive Peptide
Stress-Response Biology
Neurotrophic Research
Evidence: Preliminary
Selank (TP-7) is a synthetic tuftsin-derived heptapeptide investigated in neuroactive peptide signaling, stress-response biology, cognitive signaling, anxiolytic mechanisms, neurotrophic pathways, and neurotransmitter-related research, framed strictly as research-only.
Thymosin Beta-4 / TB-500-Class Material
Actin-Binding Thymosin Peptide
Actin Binding
Tissue-Repair Signaling
Evidence: Preclinical / Preliminary
Research profile cataloging actin binding, cytoskeletal biology, cell migration, angiogenesis, and tissue-repair signaling for thymosin beta-4 and TB-500-class materials, with explicit identity controls.
Kisspeptin-10 / KP-10
KISS1R-Active Reproductive Signaling Decapeptide
Endocrine Signaling
KISS1R
Reproductive Neuroendocrinology
Evidence: Supported / Preliminary
C-terminally amidated kisspeptin decapeptide investigated in KISS1R signaling, GnRH-associated neuroendocrine regulation, pituitary LH/FSH responses, and reproductive-axis biology.
Structured compound profiles, evidence classifications, and analytical summaries will be organized here as the library expands.