In this study, we determined the pH and buffer capacity of human gastrointestinal (GI) fluids (aspirated from the stomach, duodenum, proximal jejunum, and mid/distal jejunum) as a function of time, from 37 healthy subjects after oral administration of an 800 mg immediate-release tablet of ibuprofen (reference listed drug; RLD) under typical prescribed bioequivalence (BE) study protocol conditions in both fasted and fed states (simulated by ingestion of a liquid meal). Simultaneously, motility was continuously monitored using water-perfused manometry. The time to appearance of phase III contractions (i.e., housekeeper wave) was monitored following administration of the ibuprofen tablet. Our results clearly demonstrated the dynamic change in ...
Poor water dissolution of active pharmaceutical ingredients (API) limits the rate of absorption from...
Oral drug products must dissolve in the gastrointestinal (GI) tract before being absorbed and reachi...
The FDA Biopharmaceutical Classification System guidance allows waivers for in vivo bioavailabilit...
In this study, we determined the pH and buffer capacity of human gastrointestinal (GI) fluids (aspir...
<i>In vivo</i> drug dissolution in the gastrointestinal (GI) tract is largely unmeasured. The purpos...
Exploring the intraluminal behavior of an oral drug product in the human gastrointestinal (GI) tract...
The goal of this project was to explore and to statistically evaluate the responsible gastrointestin...
The dissolution rate of ionizable drugs is affected by the pH and buffer capacity of the medium. Oth...
The goal of this project was to explore and to statistically evaluate the responsible gastrointestin...
Multiple approaches such as mathematical deconvolution and mechanistic oral absorption models have b...
Accurate in vivo predictions of intestinal absorption of low solubility drugs require knowing their ...
The solubility of drugs in the gastrointestinal tract is very challenging to simulate with artificia...
Accurate in vivo predictions of intestinal absorption of low solubility drugs require knowing their ...
The solubility of drugs in the gastrointestinal tract is very challenging to simulate with artificia...
Oral drug products must dissolve in the gastrointestinal (GI) tract before being absorbed and reachi...
Poor water dissolution of active pharmaceutical ingredients (API) limits the rate of absorption from...
Oral drug products must dissolve in the gastrointestinal (GI) tract before being absorbed and reachi...
The FDA Biopharmaceutical Classification System guidance allows waivers for in vivo bioavailabilit...
In this study, we determined the pH and buffer capacity of human gastrointestinal (GI) fluids (aspir...
<i>In vivo</i> drug dissolution in the gastrointestinal (GI) tract is largely unmeasured. The purpos...
Exploring the intraluminal behavior of an oral drug product in the human gastrointestinal (GI) tract...
The goal of this project was to explore and to statistically evaluate the responsible gastrointestin...
The dissolution rate of ionizable drugs is affected by the pH and buffer capacity of the medium. Oth...
The goal of this project was to explore and to statistically evaluate the responsible gastrointestin...
Multiple approaches such as mathematical deconvolution and mechanistic oral absorption models have b...
Accurate in vivo predictions of intestinal absorption of low solubility drugs require knowing their ...
The solubility of drugs in the gastrointestinal tract is very challenging to simulate with artificia...
Accurate in vivo predictions of intestinal absorption of low solubility drugs require knowing their ...
The solubility of drugs in the gastrointestinal tract is very challenging to simulate with artificia...
Oral drug products must dissolve in the gastrointestinal (GI) tract before being absorbed and reachi...
Poor water dissolution of active pharmaceutical ingredients (API) limits the rate of absorption from...
Oral drug products must dissolve in the gastrointestinal (GI) tract before being absorbed and reachi...
The FDA Biopharmaceutical Classification System guidance allows waivers for in vivo bioavailabilit...