VitMode

Melatonin

The hormone that governs your circadian rhythm — as a supplement it works better at resetting the body clock than as a classic 'sleeping pill.'

JWJulia WiśniewskaReviewed by dr Piotr ZielińskiUpdated: 5 lipca 2026
Strong evidence
4.6

Number of studies

2

Safety

Requires caution

Time to effects

Works quickly — a shorter time to fall asleep is often noticeable on the very first night of use, typically 30–60 minutes after taking it.

Monthly cost

ok. 10–25 zł/miesiąc

Price in Poland

10–25 zł za opakowanie 30–60 tabletek (1–2 miesiące)

Who it's for

People with jet lag or working shift schedulesPeople with delayed sleep phase (difficulty falling asleep at a 'normal' hour)People preparing to travel across multiple time zones

Jeden z najtańszych suplementów w bazie — wysoka skuteczność przy niskim koszcie.

Indicative prices for the Polish market — we don't point to specific retailers; the real price depends on the manufacturer, form and place of purchase.

Table of contents

TL;DR

The hormone that governs your circadian rhythm — as a supplement it works better at resetting the body clock than as a classic 'sleeping pill.'

  • Shortened time to fall asleep (well documented in meta-analyses)
  • Effective support for resynchronizing the circadian rhythm (jet lag, shift work)
  • Possible support for children with neurodevelopmental disorders and sleep-onset difficulties (under a doctor's supervision)
Chemical compoundMelatonin (N-acetyl-5-methoxytryptamine), an indole hormone
Group/classPineal hormone, chronobiotic supplement
FormIR tablets, PR/ER tablets, sublingual spray, phytomelatonin
Evidence levelStrong — numerous meta-analyses and Cochrane reviews
InteractionsYes — anticoagulants, immunosuppressants, sedatives
StatusOver-the-counter up to 1 mg in most markets; higher doses often prescription-only

Understand

Overview

Melatonin is a hormone released by the pineal gland (a small gland in the brain) in response to darkness, signaling to the body that sleep time is approaching. Its secretion rises in the evening, peaks in the middle of the night, and falls off toward morning — a process strongly suppressed by light, especially blue light, which is why evening screen exposure can delay natural sleep onset.

Melatonin works most strongly and predictably in people with circadian rhythm disorders — after crossing multiple time zones, during shift work, or with delayed sleep phase (falling asleep and waking up much later than the people around you). In these groups, supplementation resynchronizes the body clock rather than just 'knocking you out' for a while. People with classic primary insomnia — driven by stress rather than a circadian disorder, for example — tend to see a noticeably more modest effect, because melatonin doesn't act as a general sedative, only as a chronobiological signal. It's also worth remembering that more isn't better: in studies, doses of 0.5–1 mg have proven just as effective as 5–10 mg, so reaching for a high dose 'to be safe' usually doesn't add any extra sleep-inducing effect — it mainly raises the risk of next-day grogginess.

It's worth stressing that melatonin isn't a classic 'sleeping pill' in the sense of benzodiazepines or Z-drugs — it doesn't cause direct sedation, but acts as a chronobiological signal that synchronizes the body clock. That's why supplementation is particularly well studied and effective for jet lag, shift work, and delayed sleep phase, and less so as a universal remedy for every kind of insomnia.

History of use

Melatonin was first isolated and described in 1958, when the American dermatologist Aaron B. Lerner studied extracts from cattle pineal glands while searching for a substance that lightens amphibian skin — hence the name, which references its effect on melanocytes. Only in the following decades was its key role as a hormone synchronizing the human circadian rhythm uncovered, which led to its commercial use as a supplement supporting sleep onset and coping with jet lag.

Mechanism of action

Melatonin binds to MT1 and MT2 receptors in the suprachiasmatic nucleus of the hypothalamus (SCN) — the body's master 'clock' that coordinates the circadian rhythms of all tissues — synchronizing the circadian rhythm with the light-dark cycle. The MT1 receptor is mainly linked to suppressing wakefulness, while MT2 is linked to shifting the phase of the body clock, which explains melatonin's dual use: as immediate support for falling asleep and as a way to resynchronize rhythm when crossing time zones.

The signal that triggers melatonin production itself runs in the opposite direction: light detected by specialized retinal ganglion cells (containing melanopsin) suppresses signaling along the retinohypothalamic tract leading to the SCN, and from there — via the sympathetic nervous system — to the pineal gland, where the enzyme AANAT (aralkylamine N-acetyltransferase) controls the rate at which melatonin is synthesized from serotonin. MT1 and MT2 receptors are Gi protein-coupled receptors, so their activation lowers cAMP levels in SCN neurons and dampens their electrical activity — this is the direct mechanism by which melatonin 'quiets' the body clock and shifts its phase.

1

Light detection by the retina

Ganglion cells containing melanopsin detect the intensity and color of light, especially blue light.

2

Signal to the suprachiasmatic nucleus (SCN)

The retinohypothalamic tract relays information about darkness to the brain's 'clock.'

3

Pineal activation and synthesis via AANAT

In darkness, the enzyme AANAT speeds up the conversion of serotonin into melatonin.

4

Binding to MT1/MT2 receptors

Circulating melatonin activates receptors in the SCN and other tissues.

5

SCN quieting and the sleep signal

Falling cAMP and reduced SCN neuron activity synchronize the circadian rhythm and make it easier to fall asleep.

Evidence: strong — based on 2 studies in this database.

Benefits

Shortened time to fall asleep (well documented in meta-analyses)
Effective support for resynchronizing the circadian rhythm (jet lag, shift work)
Possible support for children with neurodevelopmental disorders and sleep-onset difficulties (under a doctor's supervision)
Antioxidant properties in preclinical studies, not directly related to its sleep-inducing effect

Common myths

MythMelatonin is addictive, just like sleeping pills.

FactThere is no evidence of physical dependence or pharmacological tolerance with typical use, unlike classic sleep medications.

MythA higher dose of melatonin works better and faster.

FactStudies indicate that doses of 0.5–1 mg can be just as effective as 5–10 mg, while higher doses mainly increase the risk of next-day grogginess.

Forms & variants

Melatonin comes in several forms that differ in bioavailability and use case — the form you pick genuinely matters for how effective the supplementation is.

Immediate release (IR)

Fast absorption and a quick peak concentration — helps shorten the time it takes to fall asleep, but hormone levels drop before the night is over.

Best for: Trouble falling asleep, jet lag, rhythm resynchronization

Extended/prolonged release (PR/ER)

Gradual release of melatonin over several hours, mimicking the natural secretion profile of the hormone through the night.

Best for: Trouble staying asleep, frequent nighttime waking

Sublingual melatonin spray

Bypasses partial liver metabolism (the first-pass effect) — a faster onset of action than tablets.

Best for: People wanting a faster effect or who have difficulty swallowing tablets

Phytomelatonin

Melatonin sourced from plants (e.g. cherries, tomatoes) instead of chemical synthesis — an identical molecule, marketed as 'natural,' with no evidence of superior effectiveness.

Best for: A preference around ingredient origin, with no pharmacological difference

Practice

Frequently asked questions

There is no evidence of physical dependence or pharmacological tolerance with typical use — unlike classic sleep medications.

No — studies indicate that doses of 0.5–1 mg can be just as effective as much higher ones (5–10 mg), while higher doses increase the risk of next-day grogginess.

It depends on the problem: for trouble falling asleep, immediate release tends to work better, while for frequent nighttime waking, extended release — which mimics the natural, stretched-out secretion profile of the hormone — works better.

The strongest evidence concerns resynchronizing the circadian rhythm (jet lag, shift work, delayed sleep phase) — in classic primary insomnia, the effect is usually more modest than in circadian rhythm disorders.

Dosage & timing

Typical dose

0.5–3 mg, 30–60 minutes before bed (lower doses can be just as effective as higher ones)

Form

Immediate-release melatonin (falling asleep) or extended-release (staying asleep)

Dosing is informational and reflects the ranges used in the cited studies — it does not replace consulting a doctor or pharmacist. In some markets, doses above 1 mg require a prescription or are available only as a lower-dose OTC product.

Best times to take it

  • 30–60 minutes before your planned bedtime, in a dimly lit room

What to combine with

Good combinations

MagnezComplementary sleep-hygiene protocols

Safety

Side effects & contraindications

Possible side effects

Next-day grogginess at excessively high doses

Rarely: headaches, dizziness, vivid dreams

Contraindications

Autoimmune diseases — potential immunomodulation

Pregnancy — insufficient safety data

Interactions

Anticoagulants — possible enhanced effect

Immunosuppressants

Sedatives — additive sedative effect

Is it worth taking?

Who it's for

  • People with jet lag or working shift schedules
  • People with delayed sleep phase (difficulty falling asleep at a 'normal' hour)
  • People preparing to travel across multiple time zones

Not for

  • Autoimmune diseases — potential immunomodulation
  • Pregnancy — insufficient safety data

Evidence

Worth knowing

In many markets, doses above 1 mg require a prescription or are available only as a lower-dose OTC product.

Melatonin acts as a chronobiological signal that synchronizes the body clock, not as a classic sedating sleep aid.

It's best taken in a dimly lit room, since light — especially blue light — suppresses its natural secretion.

Studies

A Cochrane review confirms that melatonin effectively reduces jet lag symptoms when crossing multiple time zones.

Herxheimer A, Petrie KJ., Cochrane Database of Systematic Reviews, 2002

Efficacy and safety of exogenous melatonin for secondary sleep disorders: a meta-analysis

Strong evidence

Buscemi N, et al. · Journal of General Internal Medicine · 2006

A meta-analysis confirming a shorter time to fall asleep with a good short-term safety profile.

View study

Melatonin for the treatment of jet lag

Strong evidence

Herxheimer A, Petrie KJ. · Cochrane Database of Systematic Reviews · 2002

A Cochrane review confirming melatonin's effectiveness in reducing jet lag symptoms when crossing multiple time zones.

View study

Sources & bibliography

Citations are illustrative for this demo version and require full bibliographic verification by the editorial team before production publication.

Compare with similar entries

About the authors of this entry

JW

Author

Julia Wiśniewska

Editor, Neurohacking & Sleep

Julia writes about nootropics, chronobiology and recovery protocols.

34 publications on this site

PZ

Medical review

dr Piotr Zieliński

Endocrinologist

Piotr reviews content on hormones, metabolic health and supplement pharmacology.

47 publications on this site

Published: 15 stycznia 2025Updated: 5 lipca 2026

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Comments (2)

  • KW

    Kasia W. 2 weeks ago

    Very clearly explained, especially the interactions section — I hadn't seen it laid out this well anywhere else.

  • MT

    Marek T. a month ago

    Are you planning to update this with the newest study from this year? I saw an interesting meta-analysis.