Supersaturation formulation is an effective way to improve the oral bioavailability of poorly water-soluble drugs, and water-soluble polymers are commonly used to prolong the supersaturation. However, the mechanism for such supersaturation prolonging effect is not clearly understood. Using the hydrocortisone/hydroxypropyl methylcellulose (HPMC) pair as a model system, we found that HPMC prolongs hydrocortisone supersaturation by inducing the formation of a metastable crystal polymorph of higher solubility, hence lowering the actual supersaturation level in the solution. A possible mechanism is proposed to explain the selective polymorph formation in the presence of polymers
noThe formulation of poorly water-soluble drugs is a challenging problem within pharmaceutical deve...
The purpose of this study was to gain further understanding of how the substituent heterogeneity of ...
Poor aqueous solubility is a major hindrance to oral delivery of many emerging drugs. Supersaturated...
The maintenance mechanism of the supersaturated state of poorly water-soluble drugs, glibenclamide (...
The objective of this study was to investigate if the increase in apparent solubility induced by lip...
We investigated the drug–polymer interactions in nonaqueous and aqueous environments between a poorl...
The purpose of this study was to investigate the hydration behavior of two matrix formulations conta...
The polymer used in supersaturated solutions plays a critical role in maintaining supersaturation le...
We prepared hydroxypropyl methylcellulose (HPMC) esters of substituted succinates and examined their...
Poor aqueous solubility is a major impediment to the oral delivery of over 75% of pharmaceutical com...
The increasing number of poorly water-soluble drug candidates in pharmaceutical development is a maj...
Formulation of poorly water-soluble drugs is a challenging problem encountered during the drug devel...
A major concern of investigators during the last decade has been the evaluation of the relative ther...
Systematic investigations on the diffusion of ibuprofen (IBU) from supersaturated solutions through ...
Solubility advantage of thermodynamically highly unstable cocrystals, which undergo solution-mediate...
noThe formulation of poorly water-soluble drugs is a challenging problem within pharmaceutical deve...
The purpose of this study was to gain further understanding of how the substituent heterogeneity of ...
Poor aqueous solubility is a major hindrance to oral delivery of many emerging drugs. Supersaturated...
The maintenance mechanism of the supersaturated state of poorly water-soluble drugs, glibenclamide (...
The objective of this study was to investigate if the increase in apparent solubility induced by lip...
We investigated the drug–polymer interactions in nonaqueous and aqueous environments between a poorl...
The purpose of this study was to investigate the hydration behavior of two matrix formulations conta...
The polymer used in supersaturated solutions plays a critical role in maintaining supersaturation le...
We prepared hydroxypropyl methylcellulose (HPMC) esters of substituted succinates and examined their...
Poor aqueous solubility is a major impediment to the oral delivery of over 75% of pharmaceutical com...
The increasing number of poorly water-soluble drug candidates in pharmaceutical development is a maj...
Formulation of poorly water-soluble drugs is a challenging problem encountered during the drug devel...
A major concern of investigators during the last decade has been the evaluation of the relative ther...
Systematic investigations on the diffusion of ibuprofen (IBU) from supersaturated solutions through ...
Solubility advantage of thermodynamically highly unstable cocrystals, which undergo solution-mediate...
noThe formulation of poorly water-soluble drugs is a challenging problem within pharmaceutical deve...
The purpose of this study was to gain further understanding of how the substituent heterogeneity of ...
Poor aqueous solubility is a major hindrance to oral delivery of many emerging drugs. Supersaturated...