International audienceMesoporous silica (MPS) carriers are considered as a promising strategy to increase the solubility of poorly soluble drugs and to stabilize the amorphous drug delivery system. The development by the authors of a solvent-free method (milling-assisted loading, MAL) made it possible to manipulate the physical state of the drug within the pores. The present study focuses on the effects of the milling intensity and the pore architecture (chemical surface) on the physical state of the confined drug and its release profile. Ibuprofen (IBP) and SBA-15 were used as the model drug and the MPS carrier, respectively. It was found that decreasing the milling intensity promotes nanocrystallization of confined IBP. Scanning electron ...
Oral drug administration is the most important method of administering drugs for systemic therapy. C...
Promising active pharmaceutical ingredients (APIs) often exhibit poor aqueous solubility and thus a ...
Mesoporous silica nanoparticles (MSNs) with multimodal pore channels were fully characterized by TEM...
International audienceMesoporous silica (MPS) carriers are considered as a promising strategy to inc...
Mesoporous silica (MPS) carriers are considered as a promising strategy to increase the solubility o...
International audienceUsing the Milling-Assisted Loading (MAL) solid-state method for loading a poor...
International audienceMesoporous Silica Nanoparticles (MSN) are used in an increasing number of appl...
International audienceMesoporous Silica Nanoparticles (MSN) are used in an increasing number of appl...
Mesoporous silica spheres were synthesized by using Stöber theory (MSN-40). Calcination of the mesos...
A novel approach was applied to fabricate mesoporous silica nanoparticles (MSNs) with different pore...
The aim of the study was to investigate the effects of the loading factors, i.e., the initial drug l...
The ordered mesoporous silica material SBA-15 was loaded with the model drugs itraconazole and ibupr...
Mesoporous silica nanoparticles with unique structure (SBA-15) were synthesized and modified by[3-(2...
The mesoporous SBA-15 silica with uniform hexagonal pore, narrow pore size distribution and tuneable...
Milling involves the application of mechanical energy to physically break down coarse particles to f...
Oral drug administration is the most important method of administering drugs for systemic therapy. C...
Promising active pharmaceutical ingredients (APIs) often exhibit poor aqueous solubility and thus a ...
Mesoporous silica nanoparticles (MSNs) with multimodal pore channels were fully characterized by TEM...
International audienceMesoporous silica (MPS) carriers are considered as a promising strategy to inc...
Mesoporous silica (MPS) carriers are considered as a promising strategy to increase the solubility o...
International audienceUsing the Milling-Assisted Loading (MAL) solid-state method for loading a poor...
International audienceMesoporous Silica Nanoparticles (MSN) are used in an increasing number of appl...
International audienceMesoporous Silica Nanoparticles (MSN) are used in an increasing number of appl...
Mesoporous silica spheres were synthesized by using Stöber theory (MSN-40). Calcination of the mesos...
A novel approach was applied to fabricate mesoporous silica nanoparticles (MSNs) with different pore...
The aim of the study was to investigate the effects of the loading factors, i.e., the initial drug l...
The ordered mesoporous silica material SBA-15 was loaded with the model drugs itraconazole and ibupr...
Mesoporous silica nanoparticles with unique structure (SBA-15) were synthesized and modified by[3-(2...
The mesoporous SBA-15 silica with uniform hexagonal pore, narrow pore size distribution and tuneable...
Milling involves the application of mechanical energy to physically break down coarse particles to f...
Oral drug administration is the most important method of administering drugs for systemic therapy. C...
Promising active pharmaceutical ingredients (APIs) often exhibit poor aqueous solubility and thus a ...
Mesoporous silica nanoparticles (MSNs) with multimodal pore channels were fully characterized by TEM...