📘 Peptide basics

Peptide hormones explained

A peptide hormone is a hormone made of amino acids — a short chain that travels through the bloodstream and delivers instructions to distant cells. Insulin, glucagon, oxytocin, and growth hormone are all peptide hormones, and so are the GLP-1 drugs behind Ozempic and Mounjaro. This guide covers the definition, how they differ from steroid hormones, how they work, and a full list of examples.

What is a peptide hormone?

Hormones are chemical messengers released by glands and tissues into the bloodstream. They fall into three broad chemical classes, and the class determines how the hormone behaves:

  • Peptide (and protein) hormones — chains of amino acids. Water-soluble; they cannot cross the fatty cell membrane, so they act on receptors on the cell surface. Insulin, glucagon, oxytocin, ACTH.
  • Steroid hormones — built from cholesterol. Fat-soluble; they pass through the membrane and act on receptors inside the cell. Testosterone, estrogen, cortisol.
  • Amino-acid-derived hormones — made from a single amino acid. Thyroid hormone, adrenaline.

The terms peptide hormone, polypeptide hormone, and protein hormone all describe the same amino-acid class; the only difference is chain length, and the boundaries are informal. Insulin (51 amino acids) is called both a peptide and a protein hormone.

How peptide hormones work

Because they are water-soluble, peptide hormones cannot enter a cell. Instead they bind to a receptor on the cell surface — very often a G-protein-coupled receptor — which triggers a cascade of second messengers inside the cell.[1]

This has three practical consequences worth knowing:

  • They act fast. Surface signaling produces effects in seconds to minutes, versus hours for steroid hormones that must alter gene transcription.
  • They are short-lived. Many are broken down within minutes. Natural GLP-1, for instance, has a half-life of about two minutes — which is precisely why drugmakers re-engineered it to last a week.[1]
  • They can't be taken as pills. Digestion breaks them into amino acids, which is why insulin is injected rather than swallowed.

Release is usually controlled by feedback loops: rising blood glucose triggers insulin, and rising insulin lowers glucose, which shuts the signal off.[2] Some are also released in pulses on a daily rhythm, as with ACTH and cortisol.[4]

List of peptide hormones (with examples)

Peptide hormones are found throughout the body. Here are the major ones grouped by where they come from — entries linked in blue have a full guide on this site.

Peptide hormoneSourceMain role
InsulinPancreas (beta cells)Lowers blood glucose; stores nutrients[2]
GlucagonPancreas (alpha cells)Raises blood glucose
GLP-1 & GIP (incretins)GutAmplify insulin release after eating; curb appetite[1]
OxytocinPosterior pituitaryLabour contractions, milk let-down, social bonding
Vasopressin (ADH)Posterior pituitaryWater retention by the kidney
Growth hormone (GH)Anterior pituitaryGrowth and metabolism
ACTHAnterior pituitaryDrives cortisol release from the adrenals[4]
GnRH (gonadorelin)HypothalamusControls LH and FSH, and therefore sex hormones
GhrelinStomachStimulates hunger and GH release[3]
LeptinFat tissueSignals energy stores; suppresses appetite[3]
CalcitoninThyroid (C cells)Lowers blood calcium
Parathyroid hormone (PTH)Parathyroid glandsRaises blood calcium — see teriparatide
SecretinSmall intestineThe first hormone ever discovered; controls pancreatic bicarbonate
α-MSHPituitaryPigmentation and appetite via melanocortin receptors

Peptide hormones as medicines

Because peptide hormones are so specific, copying or blocking them has produced some of medicine's most important drugs. Insulin, isolated in 1921, was the first — and the model for everything since.

These are all FDA-approved, prescription-only medicines — a very different category from the unapproved "research peptides" sold online. See what are peptides? for that distinction, or browse the full A–Z list of peptides.

Frequently asked questions

What is a peptide hormone?

A peptide hormone is a hormone made of a chain of amino acids, such as insulin, glucagon, or oxytocin. Because they are water-soluble they cannot enter cells, so they bind to receptors on the cell surface to deliver their signal.

Which of the following are peptide hormones?

Insulin, glucagon, oxytocin, vasopressin, growth hormone, ACTH, GnRH, ghrelin, leptin, calcitonin, PTH, and the incretins GLP-1 and GIP are all peptide hormones. Testosterone, estrogen, and cortisol are not — they are steroid hormones.

What is the difference between peptide and steroid hormones?

Peptide hormones are chains of amino acids that are water-soluble and act on receptors on the cell surface, producing fast effects. Steroid hormones are made from cholesterol, are fat-soluble, pass through the cell membrane, and act more slowly by changing gene expression.

Is insulin a peptide hormone?

Yes. Insulin is a peptide hormone of 51 amino acids released by the beta cells of the pancreas to lower blood glucose. It sits at the informal border between peptide and protein, so it is described as both.

Why can't peptide hormones be taken as pills?

Digestive enzymes break amino-acid chains down before they reach the bloodstream, so a swallowed peptide hormone is destroyed. That is why insulin is injected. A few peptide drugs use special absorption enhancers to work orally.

Are polypeptide hormones the same as peptide hormones?

Yes — the terms describe the same class of amino-acid-based hormones. 'Polypeptide' or 'protein hormone' generally implies a longer chain, but there is no strict cut-off and the terms are used interchangeably.

Further reading

Selected peer-reviewed sources on this topic, labelled by type. A citation is a reference, not an endorsement.

  1. Baggio LL, Drucker DJ. Biology of incretins: GLP-1 and GIP. Gastroenterology. 2007. Peer-reviewed study
  2. Fu Z, Gilbert ER, Liu D. Regulation of insulin synthesis and secretion and pancreatic Beta-cell dysfunction in diabetes. Curr Diabetes Rev. 2013. Peer-reviewed study
  3. Klok MD, Jakobsdottir S, Drent ML. The role of leptin and ghrelin in the regulation of food intake and body weight in humans: a review. Obes Rev. 2007. Peer-reviewed study
  4. Lightman SL, Birnie MT, Conway-Campbell BL. Dynamics of ACTH and Cortisol Secretion and Implications for Disease. Endocr Rev. 2020. Peer-reviewed study

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