Plasma Drug Concentration

Plasma drug concentration is the amount of a medication present in blood plasma at a specific time, a key measure for understanding exposure and therapeutic response. After administration, concentration changes as the drug is absorbed, distributed between tissues, metabolized, and eliminated, producing a time-dependent concentration profile. Clinicians and researchers measure these levels from blood samples using analytical methods to determine pharmacokinetic parameters such as peak concentration, trough concentration, and exposure over time. This information supports dose selection, therapeutic drug monitoring, assessment of drug interactions, and evaluation of safety and efficacy in clinical studies.

Plasma Drug Concentration - Related Videos

Education

JoVE Core - Pharmacokinetics and Pharmacodynamics
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Drug Concentrations: Measurements

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2024

Drug concentration is the quantity of a drug present in a biological sample. Measuring drug amounts in biological samples allows the clinician to understand how a drug is absorbed, distributed, metabolized, and excreted. Samples can be obtained through invasive or non-invasive methods. Invasive techniques involve surgical or parenteral interventions to gather blood, cerebrospinal fluid, or tissue biopsy. Conversely, non-invasive approaches provide samples like urine, feces, and saliva. Plasma —...

Drug Concentration Versus Time Correlation

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2024

The plasma drug concentration-time curve is a crucial tool in pharmacokinetics, representing the drug's concentration in plasma at different time intervals post-administration. This curve illustrates the drug's journey from absorption into the systemic circulation, distribution to body tissues, and eventual elimination through excretion or biotransformation. Two pivotal parameters are the minimum effective concentration (MEC) and the minimum toxic concentration (MTC). The MEC is the lowest drug...

Education

JoVE Core - Pharmacology

Drug Distribution: Plasma Protein Binding

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2023

Drugs predominantly attach to plasma proteins, with only a small percentage remaining unbound. The unbound portion can be calculated as one minus the bound fraction. Acidic drugs form large, inactive complexes by reversibly binding to plasma albumin, which prevents them from diffusing across biological barriers. These drug-protein complexes act as reservoirs for the drugs. As the concentration of unbound drugs decreases, these complexes quickly dissociate to release the free drug, maintaining...

Pharmacodynamic Models: Emax Drug–Concentration Effect Model

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2026

The Emax drug-concentration effect model is central to pharmacodynamics in drug discovery and development. This model is predicated on the receptor occupancy theory, which posits that the effect of a drug is directly related to the number of receptors occupied by the drug and the resultant complex formation.The model describes the reversible interaction between a drug (C) and a receptor (R) to form a drug-receptor complex (RC). The kinetics of this interaction are quantified by an equation that...

Research

JoVE Journal - Engineering
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An Atmospheric Pressure Plasma Setup to Investigate the Reactive Species Formation

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Cited by 20 •

2016

An experimental setup was created for the helium-operated kHz frequency plasma jet. The setup includes a cage for the plasma power supply and jet and an in-house built reactor to monitor plasma-induced reactive species without the interference of the ambient atmosphere.

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