PeptideHormone

Half-life & dosing calculator

How long a peptide stays bioactive is governed by its half-life — and how repeated doses build up depends on how the dosing interval compares to that half-life. Enter a half-life and an interval to see how long a single dose persists, how much repeated dosing accumulates, and how the concentration rises and falls over a schedule.

loads its reference half-life — then tune the interval below
Time unit

A one-compartment, first-order model. “Dose” is relative — results scale with whatever amount you enter. Find a compound’s half-life via the research agent or the literature.

How long one dose stays active

20 min
to 50%
40 min
to 25%
66.4 min
to 10%
2.2 h
to 1% (≈ cleared)
Accumulation
1.14×
peak vs a single dose
Peak : trough swing
fluctuation at steady state
Time to steady state
86.4 min
≈ 95% (4.3 × t½)
Steady-state range
14–114
trough → peak (your units)

Bioactivity over the schedule

your schedule one dose

Tighter intervals relative to half-life accumulate higher and fluctuate less; wide intervals barely accumulate and swing more. Concentration math only — not medical or dosing advice.

The pharmacokinetics

Half-life (t½) is the time for the amount in the body to fall by half. After one half-life 50% remains, after two 25%, and after about five half-lives roughly 97% is gone — the common rule of thumb for when a single dose is effectively cleared.

Accumulation happens when the next dose arrives before the last is gone. The ratio of the dosing interval to the half-life sets everything: dose often relative to the half-life and levels climb to a high, stable plateau with little swing; dose rarely, so each dose largely clears before the next, and levels barely accumulate but fluctuate widely.

Steady state — where input balances elimination — is reached after roughly four to five half-lives regardless of how often you dose. Dosing more frequently raises the plateau; it does not arrive sooner.

Not sure of a compound’s half-life? Ask the research agent, which can surface values and trials from the literature.

A simplified one-compartment model for understanding pharmacokinetic behavior. Real compounds have absorption phases, multi-compartment distribution, and nonlinear clearance this does not capture. Educational only — not medical advice, dosing guidance, or a recommendation to use any substance.

Peptide half-life & dosing calculator · Peptide Hormone