7.15
Two-compartment models for extravascular administration involve a central and a peripheral compartment.
For a drug entering the body via a first-order process, the equation measuring the drug concentration change over time is as follows.
This rate of change is described by three factors: the absorption, distribution, and elimination exponents.
The absorption exponent denotes how quickly the drug is absorbed, the distribution exponent describes how the drug is distributed throughout the body, and the elimination exponent accounts for how the drug is eliminated.
These terms can be resolved using the method of residuals to estimate the pharmacokinetic drug parameters.
The Loo-Riegelman method can also be used to determine ka, specifically for drugs that exhibit two-compartment characteristics.
Here, plasma drug concentration-time data is required after oral and intravenous administration of the drug to the same subject.
In contrast, the Wagner-Nelson method is typically used for drugs with one-compartment characteristics.
The two-compartment model for extravascular administration represents a drug's absorption and distribution process. It features a central compartment,…
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