Multiple Dosing

Multiple dosing is the repeated administration of a drug at defined intervals to maintain therapeutic exposure over time, making it a central principle in pharmacology and clinical treatment. With each dose, drug concentrations rise and fall according to absorption, distribution, metabolism, and elimination; when the dosing interval is shorter than the drug’s effective elimination period, accumulation occurs until steady state is reached. Pharmacokinetic factors such as half-life, dose size, and dosing interval guide regimen design. Multiple dosing supports sustained drug effects, helps balance efficacy with toxicity, and informs monitoring and dose adjustment for chronic therapies.

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JoVE Core - Pharmacokinetics and Pharmacodynamics

Determination of Multiple Dosing Parameters: Loading and Maintenance Doses

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2025

A loading dose is an essential pharmacological strategy to rapidly achieve the target plasma drug concentration necessary for an immediate therapeutic effect. This approach is especially critical for drugs characterized by slow absorption or extended half-lives, where delaying therapeutic plasma levels could compromise treatment outcomes. By administering a loading dose, clinicians ensure a prompt onset of drug action, even for agents with complex pharmacokinetic profiles.Achieving steady-state...

Bioavailability Study Design: Single Versus Multiple Dose Studies

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2025

Bioavailability studies are essential for understanding how a drug is absorbed, distributed, metabolized, and excreted in the body. These studies assess the extent and rate at which the active pharmaceutical agent becomes available at the site of action. The design of bioavailability studies can involve single-dose or multiple-dose regimens, each with distinct advantages and limitations.Single-dose studies are the preferred approach due to their simplicity and reduced drug exposure for...

Drug Accumulation During Multiple Dosing: Repetitive IV Injections

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2025

Calculating drug dosage and accumulation in multiple-dose regimens is crucial for achieving therapeutic efficacy while avoiding toxicity. This involves determining the plasma drug concentrations over time to optimize dosing schedules. The principle of superposition is fundamental in this process, allowing for the prediction of drug concentration in plasma following multiple doses based on single-dose data.The principle of superposition asserts that the plasma concentration-time curves from...

Drug Accumulation During Multiple Dosing: Intermittent IV Infusions

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2025

Intermittent intravenous (IV) infusion is a method of drug administration where medications are delivered over short infusion periods followed by intervals of no drug delivery. This approach helps to prevent sustained high drug concentrations in the bloodstream, reducing the risk of adverse effects associated with prolonged exposure. Unlike continuous infusion, steady-state concentrations may not be achieved during a single dosing cycle but can be reached through repeated...

Determination of Multiple Dosing Parameters: Steady-State, Minimum and Maximum Concentrations

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2025

Gentamicin, an aminoglycoside antibiotic, is commonly administered via intermittent intravenous infusion to treat severe infections. An intermittent one-hour infusion of gentamicin, administered at eight-hour intervals, allows for precise control of plasma drug concentrations, minimizing toxicity while ensuring therapeutic efficacy. Pharmacokinetic principles govern the dynamics of plasma concentrations and can be mathematically described using specific equations.The plasma drug concentration...

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