Compound Universe Genome

Independent peptide research

The peptide research universe, mapped.

Compound Universe Genome translates complex peptide science into clear, evidence-tiered research profiles—separating human outcomes, animal findings, laboratory mechanisms, safety signals, and regulatory facts.

Primary literatureResearch traced to PubMed, original DOIs, trials, and regulators.
Evidence classifiedHuman, animal, in-vitro, and regulatory evidence kept distinct.
Limits disclosedUncertainty, weak study design, and missing safety data remain visible.
No peptide salesAn informational research project without a product storefront.

What CU-Genome is

A navigable genome of peptide evidence.

Compound Universe Genome, abbreviated as CU-Genome, is an independent informational research project covering peptides, peptide therapeutics, signaling compounds, and related investigational molecules.

The project maps the complete evidence chain behind each compound: molecular target, proposed mechanism of action, study model, human clinical outcomes, adverse events, approval status, and the questions science has not yet answered.

CU-Genome does not treat biological plausibility as clinical proof. A laboratory mechanism, an animal experiment, a controlled human trial, and a regulatory decision represent different kinds of evidence—and they are presented that way.

The research landscape

Peptide science across biological systems

CU-Genome organizes peptide research by biological system and study objective. These topic areas connect mechanisms, individual compounds, experimental models, clinical findings, safety data, and regulatory context.

Healing and recovery

BPC-157, thymosin beta-4–related research, tissue repair, tendon models, wound healing, angiogenesis, and gastrointestinal studies.

Weight and metabolism

GLP-1, GIP, and glucagon receptor agonism, obesity trials, glycemic control, appetite signaling, and body-composition outcomes.

Skin and hair

GHK-Cu, copper peptides, collagen, extracellular-matrix biology, skin remodeling, wound response, and hair research.

Muscle and performance

Growth-hormone secretagogues, GHRH analogs, lean mass, exercise physiology, recovery, and performance-related evidence.

Brain, sleep, and cognition

Peptide research involving neurological pathways, cognition, mood, circadian biology, neuroprotection, and sleep.

Immune and inflammation

Thymic peptides, immune signaling, inflammatory pathways, host defense, cellular repair, and preclinical models.

Sexual health

Melanocortin signaling and peptide studies related to sexual desire, arousal, reproductive biology, and function.

Aging and longevity

Experimental compounds, cellular senescence, mitochondrial biology, aging pathways, lifespan models, and translational limits.

Compound knowledge base

Widely researched and discussed peptides

The peptide landscape includes approved medicines, discontinued drugs, clinical-stage candidates, naturally occurring peptides, synthetic analogs, and research-only compounds. Their evidence and legal status are not interchangeable.

BPC-157Primarily preclinical repair research
GHK-CuCopper peptide and matrix biology
TB-500Thymosin beta-4–related fragment
TesamorelinGHRH analog with human clinical evidence
SermorelinGrowth hormone–releasing analog
IpamorelinGrowth hormone secretagogue research
RetatrutideInvestigational triple receptor agonist
SemaglutideGLP-1 receptor agonist
TirzepatideDual GIP and GLP-1 receptor agonist
PT-141Melanocortin receptor agonist
Thymosin alpha-1Immune-modulating peptide research
CJC-1295Long-acting GHRH analog research

Evidence is not one thing

Different studies answer different questions.

CU-Genome classifies claims according to the type and maturity of the underlying evidence. This prevents an effect observed in isolated cells or rodents from being presented as an established human outcome.

In vitro

Experiments in cells, tissues, or isolated biological systems that can explore mechanisms but cannot establish a clinical effect.

Animal

Preclinical models that may identify biological signals, safety concerns, or therapeutic hypotheses requiring human validation.

Human

Observational studies, pharmacology research, and controlled clinical trials, evaluated according to design and outcome quality.

Regulatory

Approval labels, safety communications, compounding decisions, and other legal documents dated to their jurisdiction.

Research beyond efficacy

Mechanisms, comparisons, safety, and status

Useful peptide research requires more than listing potential benefits. CU-Genome places biological findings inside a broader framework that includes evidence quality, pharmacology, safety, legality, and clinical relevance.

01 / MECHANISMS

How peptides interact with biology

Receptor activity, signaling pathways, half-life, bioavailability, metabolism, and the difference between a plausible mechanism and a demonstrated outcome.

02 / COMPARISONS

Like-for-like evidence

Compounds are compared by molecular target, study population, evidence maturity, measured outcomes, safety information, and regulatory position.

03 / REGULATION

Status with a date and jurisdiction

FDA approval, compounding eligibility, prescribing rules, research status, and sporting restrictions are separate questions and can change over time.

The CU-Genome editorial standard

Evidence before excitement.

Every research summary is designed to show not only what a study reports, but also how much confidence that study deserves and what it cannot establish.

01 / SOURCE

Start with primary literature

Original research, trial registries, PubMed records, DOIs, approved labels, and regulator documents take priority over commercial summaries.

02 / CLASSIFY

Label the evidence

Laboratory, animal, observational, controlled human, systematic-review, and regulatory evidence are identified separately.

03 / QUALIFY

Report the limitations

Small samples, weak controls, surrogate outcomes, conflicts, absent replication, and missing long-term safety data remain visible.

04 / MAINTAIN

Date material updates

New trials, approvals, safety communications, and regulatory decisions are incorporated with a visible review date.

Medical and regulatory disclaimer: Compound Universe Genome is an independent educational resource, not a medical provider, pharmacy, laboratory, or peptide seller. Content is informational only and is not medical advice, diagnosis, treatment, or a recommendation to obtain or use any substance. Many compounds discussed are investigational or are not approved for human use. Legal and regulatory status varies by jurisdiction and changes over time. Consult a qualified, licensed clinician for medical decisions.