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Published on: September 17, 2015
In vitro availability of atorvastatin in presence of losartan
M Saeed Arayne1, Najma Sultana, Urooj Haroon
1Department of Chemistry, University of Karachi, Karachi-75270, Pakistan. arrayne@gawab.com
Insights
The study investigated atorvastatin and losartan availability, finding that pH and temperature significantly influence their absorption, with complex formation affecting drug availability in simulated body conditions.
Area of Science:
- Pharmacology
- Drug Interactions
- Physical Chemistry
Background:
- Hydroxymethylglutaryl-coenzyme A reductase inhibitors (statins) and angiotensin II receptor blockers (ARBs) are commonly co-administered for cardiovascular disease risk.
- Understanding drug availability is crucial for optimizing therapeutic efficacy.
Purpose of the Study:
- To investigate the in vitro availability of atorvastatin in the presence of losartan potassium under various temperature and pH conditions.
- To explore the potential formation of drug complexes and their impact on absorption.
Main Methods:
- In vitro studies simulating human body compartments.
- Assessment of atorvastatin and losartan availability at temperatures of 37, 48, and 60 degrees C.
- Evaluation across different pH environments (1, 4, 7.4, and 9).
Main Results:
- Atorvastatin showed high availability at pH 1, 7.4, and 9, while losartan was unavailable. Conversely, at pH 4, atorvastatin was unavailable, and losartan availability increased.
- Temperature and pH influenced the stability of a charge-transfer complex between the drugs, affecting their individual availabilities.
- Atorvastatin exhibited maximum availability in simulated gastric juice (pH 1).
Conclusions:
- The in vitro availability of atorvastatin and losartan is significantly dependent on pH and temperature.
- Formation and stability of a charge-transfer complex play a key role in modulating the availability of these co-administered drugs.
- Findings highlight the importance of considering physicochemical interactions for drug formulation and co-administration strategies.
Abstract:
Hydroxymethylglutaryl-coenzyme A reductase inhibitors (statins) are a group of cholesterol lowering agents that have become the largest selling drugs in the world. They are of proven clinical benefit in coronary heart disease, at least in those patients who do not have overt chronic heart failure (CHF). Co-administration of statins with angiotensin II receptor blockers (ARBs) is most common, since there is strong synergy between hypertension and hypercholesterolemia in terms of risk factors for the development of cardiovascular diseases. In present paper, we describe the in vitro availability of atorvastatin, a potent HMG-CoA reductase inhibitor, in presence of losartan potassium, which is a non-peptide angiotensin II receptor antagonist. These studies were carried out at 37, 48 and 60 degrees C in different pH environments simulating human body compartments. It was observed that in pH 1, 7.4 and 9 the availability of atorvastatin was very high while losartan was not at all available. However in pH 4 these effects were reversed and atorvastatin was not available at all. At 48 degrees C the availability of atorvastatin was high and that of losartan was depressed at pH 9, whereas the later was not available at pH 1, 4 and 7.4 at all. Likewise at 60 degrees C, the availability of atorvastatin at pH 7.4 and 9 was high, whereas the charge-transfer complex formed between the two drugs was broken at pH 1 at this temperature and the entire drug was available. On the other hand the availability of losartan at pH 4 and 9 was high while it was not available at pH 1 and 7.4. The availability of atorvastatin was maximum in simulated gastric juice as compared to buffer of pH 7.4 and 9. This high availability of one drug in presence of other is attributed to the formation of a charge-transfer complex, which was stable at elevated temperatures, except at 60 degrees C in pH 1.
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