Evaluation of Amikacin Pharmacokinetics and Pharmacodynamics for Optimal Initial Dosing Regimen

Hideo Kato1,2, Mao Hagihara1,2, Jun Hirai1

  • 1Department of Infection Control and Prevention, Aichi Medical University Hospital, 1-1, Yazakokarimata, Nagakute, Aichi, 480-1195, Japan.

Drugs in R&D
|January 8, 2017
PubMed

Insights

The optimal initial amikacin dosage for Gram-negative infections is 15 mg/kg once daily. This regimen effectively achieves the pharmacokinetic/pharmacodynamic target, ensuring treatment success for susceptible bacterial infections.

Area of Science:

  • Pharmacology
  • Infectious Diseases
  • Clinical Pharmacy

Background:

  • Amikacin is a critical antimicrobial for Gram-negative pathogens.
  • Discrepancy exists in recommended amikacin initial dosages (15-20 mg/kg vs. ≥25 mg/kg).
  • Optimal dosing is crucial for maximizing efficacy and minimizing resistance.

Purpose of the Study:

  • To evaluate the optimal initial dosing regimen for amikacin.
  • To determine the pharmacokinetic/pharmacodynamic (PK/PD) target achievement for various amikacin doses.
  • To provide evidence-based recommendations for amikacin dosing strategies.

Main Methods:

  • Population pharmacokinetic (PK) analysis to estimate PK parameters.
  • Monte Carlo simulations to predict peak concentrations (Cpeak) for different dosing regimens.
  • Analysis of Cpeak/minimal inhibitory concentration (MIC) ratio against MICs from 0.5 to 32 μg/mL.

Main Results:

  • A 15 mg/kg amikacin regimen achieved the PK/PD target (Cpeak/MIC ≥8) in ≥90% of patients for MICs ≤4 μg/mL.
  • For *Pseudomonas aeruginosa*, 76% of patients achieved the target Cpeak/MIC of 8 with 15 mg/kg/day.
  • Total body clearance correlated with creatinine clearance; volume of distribution correlated with body weight.

Conclusions:

  • The 15 mg/kg once-daily dosage is recommended as the initial amikacin dose.
  • Maintenance dosing of 15 mg/kg/day is adequate for MICs ≤4 μg/mL.
  • Amikacin monotherapy for MICs ≥8 μg/mL should be avoided.

Related Concept Videos

Estimation of k and VD of Aminoglycosides01:20

Estimation of k and VD of Aminoglycosides

Aminoglycosides are a class of antibiotics used to treat various bacterial infections. Clinicians must determine the elimination rate constant (k) and volume of distribution (VD) to optimize therapeutic efficacy and minimize toxicity. The k value represents the rate at which the drug is removed from the body, and the VD reflects the degree to which the drug distributes into body tissues. Accurately estimating these parameters allows healthcare professionals to tailor drug dosing to individual...
289
Determination of Multiple Dosing Parameters: Steady-State, Minimum and Maximum Concentrations01:15

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

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...
305
Dosage Interval and Administration Route: Determination Methods01:19

Dosage Interval and Administration Route: Determination Methods

A medication’s effectiveness largely depends on its appropriate dosage and the route of administration. Dosage ensures that a sufficient drug concentration is maintained in the bloodstream to elicit the desired therapeutic effect without causing toxicity. The route of administration affects the drug's bioavailability, rate of absorption, and onset of action, which are crucial for achieving optimal therapeutic outcomes. Drug dosage calculations are critical to tailoring therapy to...
378
Dosage Regimens: Partial Pharmacokinetic Parameters01:01

Dosage Regimens: Partial Pharmacokinetic Parameters

It is not uncommon for complete drug pharmacokinetic profiles to remain elusive in pharmacokinetics. This necessitates certain educated assumptions by pharmacokineticists to determine appropriate dosage regimens without comprehensive pharmacokinetic data from animal or human studies. One prevalent assumption is setting the bioavailability factor, denoted as F, to 1 or 100%. This assumption caters to the scenario where a drug doesn't achieve full systemic absorption, resulting in the patient...
242
Pharmacokinetics in Pediatric Patients: Drug Excretion01:26

Pharmacokinetics in Pediatric Patients: Drug Excretion

In pediatric medicine, understanding the renal function and drug elimination nuances is crucial for administering safe and effective treatments. Newborns, in particular, display markedly slower renal functions than adults, profoundly affecting how drugs are cleared from their bodies. This slower drug clearance requires clinicians to extend the dosing intervals for many medications to prevent drug accumulation and toxicity while ensuring therapeutic efficacy.One key area where these adjustments...
343
Drug Dosing in Renal Diseases: Dose Adjustments Based on Drug Clearance and Elimination Rate Constant01:25

Drug Dosing in Renal Diseases: Dose Adjustments Based on Drug Clearance and Elimination Rate Constant

In patients with renal disease, dosage adjustments are necessary to maintain therapeutic plasma drug concentrations and prevent toxicity or subtherapeutic exposure. Renal impairment alters drug pharmacokinetics, especially in conditions like uremia, where changes such as prolonged elimination half-life and altered apparent volume of distribution can significantly affect drug disposition. These changes require careful modification of the dosing regimen to achieve the desired clinical...
289