While porous silica supports have been previously studied as carriers for nanocrystalline forms of poorly water-soluble active pharmaceutical ingredients (APIs), increasing the loading of API in these matrices is of great importance if these carriers are to be used in drug formulations. A dual-stage mixed-suspension, mixed-product removal (MSMPR) crystallizer was designed in which the poorly soluble API fenofibrate was loaded into the porous matrices of pore sizes 35 nm-300 nm in the first stage, and then fed to a second stage in which the crystals were further grown in the pores. This resulted in high loadings of over 50 wt % while still producing nanocrystals confined to the pores without the formation of bulk-sized crystals on the surfac...
open access articleEncapsulation of poorly water-soluble drugs into mesoporous materials (e.g. silic...
Although roughly 40% of pharmaceuticals being developed are poorly water-soluble, this major class o...
In a previous study we have developed a novel process to produce drug nanocrystals. This process, "c...
Producing stable nanocrystals confined to porous excipient media is a desirable way to increase the ...
Homogeneous seed size and shape irregularities in batch crystallisation processes lead to variations...
Solubility enhancement of poorly-soluble active pharmaceutical ingredients (APIs) remains a scientif...
The poor aqueous solubility of new and existing drug compounds represents a significant challenge in...
A major hurdle in pharmaceutical formulation is water insolubility of most of drugs affecting their ...
The sorption of poorly aqueous soluble active pharmaceutical ingredients (API) to mesoporous silica ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Among the many methods available for solubility enhancement, mesoporous carriers are generating sign...
Mesoporous silica with uniform 2-D hexagonal pores has been newly employed as facile reservoir to im...
Encapsulation of pharmaceuticals inside nanoporous materials is of increasing interest due to their ...
It is estimated that about 40% of compounds being developed by the pharmaceutical industry are poor...
AbstractWith hydrophilic surface and high surface area, porous silica has been applied to load insol...
open access articleEncapsulation of poorly water-soluble drugs into mesoporous materials (e.g. silic...
Although roughly 40% of pharmaceuticals being developed are poorly water-soluble, this major class o...
In a previous study we have developed a novel process to produce drug nanocrystals. This process, "c...
Producing stable nanocrystals confined to porous excipient media is a desirable way to increase the ...
Homogeneous seed size and shape irregularities in batch crystallisation processes lead to variations...
Solubility enhancement of poorly-soluble active pharmaceutical ingredients (APIs) remains a scientif...
The poor aqueous solubility of new and existing drug compounds represents a significant challenge in...
A major hurdle in pharmaceutical formulation is water insolubility of most of drugs affecting their ...
The sorption of poorly aqueous soluble active pharmaceutical ingredients (API) to mesoporous silica ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Among the many methods available for solubility enhancement, mesoporous carriers are generating sign...
Mesoporous silica with uniform 2-D hexagonal pores has been newly employed as facile reservoir to im...
Encapsulation of pharmaceuticals inside nanoporous materials is of increasing interest due to their ...
It is estimated that about 40% of compounds being developed by the pharmaceutical industry are poor...
AbstractWith hydrophilic surface and high surface area, porous silica has been applied to load insol...
open access articleEncapsulation of poorly water-soluble drugs into mesoporous materials (e.g. silic...
Although roughly 40% of pharmaceuticals being developed are poorly water-soluble, this major class o...
In a previous study we have developed a novel process to produce drug nanocrystals. This process, "c...