TY - JOUR
T1 - Kinetic Analysis of the Peritoneal Transport of Quinolonecarboxylic Acids in Rats
AU - Sato, Hitoshi
AU - Ishikawa, Fusashi
AU - Tsuji, Akira
AU - Okezaki, Eiichi
AU - Nagata, Osamu
AU - Nakashima, Emi
AU - Deguchi, Yoshiharu
AU - Ichimura, Fujio
PY - 1988
Y1 - 1988
N2 - In order to describe quantitatively the peritoneal transport of quinolonecarboxylic acids (quinolones), we employed a kinetic model based on the hydrodynamic pore theory of transcapillary exchange, which involves the changes in the volume and osmolality of the dialysate as well as the diffusion and convection of drugs across the peritoneum. Among the quinolones, we tested cinoxacin, enoxacin, norfloxacin, ofloxacin and a new quinolone, NY-198. The observed data on the osmolality, volume and drug concentration in the dialysate (hypertonic and hypotonic) after intraperitoneal administration were analyzed according to the kinetic model to estimate the hydrodynamic parameters of peritoneal transport, i.e., apparent capillary membrane permeability and the reflection coefficient, of each drug by a computer-aided curve-fitting procedure. It was found that the peritoneal transport of the quinolones examined was diffusion-limited and was not affected by the tonicity of the dialysate, indicating that solvent drag played a minor role in the peritoneal transport of these drugs.
AB - In order to describe quantitatively the peritoneal transport of quinolonecarboxylic acids (quinolones), we employed a kinetic model based on the hydrodynamic pore theory of transcapillary exchange, which involves the changes in the volume and osmolality of the dialysate as well as the diffusion and convection of drugs across the peritoneum. Among the quinolones, we tested cinoxacin, enoxacin, norfloxacin, ofloxacin and a new quinolone, NY-198. The observed data on the osmolality, volume and drug concentration in the dialysate (hypertonic and hypotonic) after intraperitoneal administration were analyzed according to the kinetic model to estimate the hydrodynamic parameters of peritoneal transport, i.e., apparent capillary membrane permeability and the reflection coefficient, of each drug by a computer-aided curve-fitting procedure. It was found that the peritoneal transport of the quinolones examined was diffusion-limited and was not affected by the tonicity of the dialysate, indicating that solvent drag played a minor role in the peritoneal transport of these drugs.
KW - capillary membrane permeability
KW - peritoneal dialysis
KW - peritoneal transport
KW - pore theory
KW - quinolone
KW - quinolonecarboxylic acid
KW - reflection coefficient
KW - solvent drag
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U2 - 10.1248/cpb.36.3180
DO - 10.1248/cpb.36.3180
M3 - Article
C2 - 2853652
AN - SCOPUS:0023810580
SN - 0009-2363
VL - 36
SP - 3180
EP - 3185
JO - Chemical and Pharmaceutical Bulletin
JF - Chemical and Pharmaceutical Bulletin
IS - 8
ER -