Hd. Beall et al., THE ESTIMATION OF RELATIVE WATER SOLUBILITY FOR PRODRUGS THAT ARE UNSTABLE IN WATER, International journal of pharmaceutics, 93(1-3), 1993, pp. 37-47
The pH 4.0 buffer solubilities (S(H2O)) of three series of N-acyl-5-fl
uorouracil (5-FU) prodrugs have been estimated from their solubilities
in isopropyl myristate (IPM) and their very rapidly determined partit
ion coefficient values between IPM and pH 4.0 buffer (K). These estima
ted values have been compared (1) with directly determined values for
the two more hydrolytically stable series (1-alkyloxycarbonyl- and 1-a
lkylaminocarbonyl-5-FU), (2) with literature values and (3) with value
s calculated from (log water solubility) = -(log partition coefficient
)-0.01(melting point) + 1.05. There is good agreement between the abso
lute and relative values of the estimated and directly measured buffer
solubilities for the two more hydrolytically stable series. There is
also excellent agreement between the estimated values for the two more
hydrolytically stable series and the literature values except for the
1-ethyloxycarbonyl-5-FU derivative where the literature value appears
to be almost an order of magnitude too low. The calculated water solu
bilities give values that are one to three orders of magnitude too hig
h and do not accurately reflect trends in the series. The partition co
efficient and estimated buffer solubility values for the hydrolyticall
y unstable series (1-alkylcarbonyl-5-FU) are reproducible and consiste
nt with those of the two more stable series. Thus, the estimated buffe
r solubilities for the hydrolytically unstable series are reliable val
ues that are accurate relative to other series of N-acyl prodrugs.