Title of article :
Prediction of Satranidazole Solubility in Water-Polyethylene Glycol 400 Mixtures Using Extended Hildebrand Solubility Approach
Author/Authors :
Rathi, Pavan B. Department of Pharmaceutics - Shri Bhagwan College of Pharmacy- CIDCO, Auranagabad, India
Abstract :
The Extended Hildebrand Solubility Parameter Approach (EHSA) is used to
estimate the solubility of satranidazole in binary solvent systems. The solubility of
satranidazole in various water-PEG 400 mixtures was analyzed in terms of solutesolvent
interactions using a modified version of Hildebrand-Scatchard treatment for
regular solutions. The solubility equation employs term interaction energy (W) to
replace the geometric mean (δ1δ2), where δ1 and δ2 are the cohesive energy densities
for the solvent and solute, respectively. The new equation provides an accurate
prediction of solubility once the interaction energy ‘W’ is obtained. In this case, the
energy term is regressed against a polynomial in δ1 of the binary mixture. A quartic
expression of ‘W’ in terms of solvent solubility parameter was found for predicting
the solubility of satranidazole in water-PEG 400 mixtures. The expression yields
an error in mole fraction solubility of ~2.17%, a value approximating that of the
experimentally determined solubility. The method has potential usefulness in preformulation
and formulation studies during which solubility prediction is important
for drug design.
Keywords :
Extended hildebrand approach , Satranidazole , Solubility parameter , Regular solution theory
Journal title :
Astroparticle Physics