A comparative single-dose bioequivalence study of two enteric coated Aspirin brands among healthy volunteers. (c2001)

2001 ◽  
Author(s):  
Abeer Abbas Zeitoun
1987 ◽  
Author(s):  
J V Lloyd ◽  
S E Rodgers ◽  
D M Siebert ◽  
F Bochner ◽  
G H McIntosh ◽  
...  

The antithrombotic effect of aspirin might be enhanced if platelet cyclooxygenase could be inhibited in the portal ciculation while sparing cyclooxygenase in the systemic vascular endothelium. This might be achieved by modifying the dose and formulation to maximise presystemic aspirin clearance by the liver. To test this hypothesis low dose enteric coated aspirin (Astrix, 50mg single dose, lOOmg single dose and lOOmg daily for 1 week) was orally administered to pigs with permanent indwelling arterial and portal vein catheters. Plasma aspirin concentrations were measured by high performance liquid chromatography in blood obtained simultaneously from the artery and portal vein for 6 hours after dosage. Platelet aggregation and thromboxane generation were measured in 4 pigs before and after the lOOmg chronic dosage regimen. Aortic prostacyclin production was measured in aspirin treated (lOOmg daily for 1 week) and untreated pigs after sacrifice. After the 50mg single dose the arterial:portal areas under the plasma concentration versus time curve (AUC) ratio was 0.63±0.09 (n=6). In 3 pigs which received all 3 dosage regimens the arterial:portal AUC ratios were 0.48±0.05 after 50mg single dose, 0.52±0.02 after lOOmg single dose and 0.47+0.03 after lOOmg daily for 1 week. Platelet aggregation in response to sodium arachidonate (1.65mM) was completely abolished after chronic aspirin administration. Thromboxane production (pg/106 platelets) by this stimulus decreased from 536±117 before aspirin to 57±14 after aspirin (n=4; p=0.017). Aortic prostacyclin synthesis (ng/disc after 10 min incubation) was 1.66±0.28 (n=4) in untreated pigs and 0.97±0.25 (n=4) in treated pigs (p=0.06).With this slow release aspirin formulation there was substantial but incomplete clearance of aspirin by the liver. This may not be sufficient to spare cyclooxygenase in the systemic vessels from the effect of aspirin.


2019 ◽  
Vol 65 (01) ◽  
pp. 11-17
Author(s):  
Dimce Zafirov ◽  
Jasmina Trojacanec ◽  
Dragica Zendelovska ◽  
Nikola Kolovcevski ◽  
Bojan Labachevski

Zolpidem is a hypnotic agent with a chemical structure unrelated to benzodiazepines, barbiturates, pyrrolopyrazines, pyrazolopyrimidines or other drugs with known hypnotic properties. Zolpidem as conventional tablets is used as a hypnotic agent in the short-term management of insomnia, generally for periods not exceeding 7–10 days in duration. The objective of this study was to evaluate and compare the relative bioavailability, and therefore the bioequivalence of Zolpidem 10 mg test formulation versus a reference Zolpidem 10 mg formulation, following a single dose administration under fasting conditions The study was a single center, open, single dose, randomized, two - way crossover study in healthy male volunteers with a wash - out period of one week between study periods. Twenty-eight male healthy volunteers, aged 20-49 years were included into study. Blood samples for determination of zolpidem plasma concentrations were withdraw at 0 (pre-drug administration), 0.33, 0.66, 1, 1.33, 1.66, 2, 2.5, 3, 3.5, 4, 5, 6, 8, 10, 12, 16 and 24 hours post-drug. The zolpidem concentrations in plasma were determined with HPLC, using fluorescence detection. The test formulation of zolpidem, dosed at 10 mg is bioequivalent for primary zolpidem parameters (Cmax, AUC0-t and AUC0-∞) to the reference formulation after a single oral administration of 10 mg zolpidem. Both medications are well tolerated with no serious adverse events. Thus, in view of the clinical use, both formulations are exchangeable without restrictions. Keywords: Zolpidem, bioavailability, bioequivalence study, single-dose


Drug Research ◽  
2013 ◽  
Vol 63 (07) ◽  
pp. 346-350 ◽  
Author(s):  
P. Zakeri-Milani ◽  
Z. Islambulchilar ◽  
S. Ghanbarzadeh ◽  
H. Valizadeh

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