APPLICATION OF LOGISTIC GROWTH-MODEL TO PHARMACODYNAMIC ANALYSIS OF IN-VITRO BACTERICIDAL KINETICS
Citation
Y. Yano et al., APPLICATION OF LOGISTIC GROWTH-MODEL TO PHARMACODYNAMIC ANALYSIS OF IN-VITRO BACTERICIDAL KINETICS, Journal of pharmaceutical sciences, 87(10), 1998, pp. 1177-1183
Categorie Soggetti
Chemistry Medicinal","Pharmacology & Pharmacy",Chemistry
SICI code
0022-3549(1998)87:10<1177:AOLGTP>2.0.ZU;2-A
Abstract
A new pharmacodynamic model for the analysis of in vitro bactericidal
kinetics was developed based on the logistic growth model, with the ba
cterial phases divided into two compartments. The model equations are
expressed as nonlinear simultaneous differential equations, and the Ru
nge-Kutta-Gill method was adopted to numerically solve the equations i
n both the simulation and the least squares curve-fitting procedures.
The model can describe the initial killing and the regrowth phases and
can explain the nonlinear dependence of the killing rate on the drug
concentration. The model can also explain the plateau in the bacterial
growth curve that is often observed in in vitro experiments. The mode
l was applied to analysis of the in vitro time-killing data of beta-la
ctam antibiotics, S-4661, meropenem, imipenem, cefpirome, and ceftazid
im against three types of bacteria, Escherichia coli, Pseudomonas aeru
ginosa, and Staphylococcus aureus. The results of curve-fitting using
the least squares program MULTI (Runge) showed good fits for all types
of drugs and bacteria. The relationship between the characteristics o
i the drug-bacteria interactions and the estimated pharmacodynamic par
ameters is discussed.