Research Article
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Year 2025, Volume: 8 Issue: 1, 1 - 7, 03.07.2025
https://doi.org/10.54994/emujpharmsci.1661092

Abstract

References

  • Chinchole A, Poul B, Panchal C, Chavan D (2014). A review on stability guidelines by ICH and USFDA guidelines for new formulation and dosage form. PharmaTutor 2(8): 32-53.
  • Ciaramitaro V, Piacenza E, Meo PL, Librici C, Calvino MM, et al. (2023). From micro to macro: Physical-chemical characterization of wheat starch-based films modified with PEG200, sodium citrate, or citric acid. Int J Biol Macromol 253: 127225.
  • Dominiak M, Gędek A, Sikorska M, Mierzejewski P, Wojnar M, et al. (2022). Acetylsalicylic acid and mood disorders: a systematic review. Pharmaceuticals 16(1): 67.
  • González-González O, Ramirez IO, Ramirez BI, O’Connell P, Ballesteros MP, et al. (2022). Drug stability: ICH versus accelerated predictive stability studies. Pharmaceutics 14(11): 2324.
  • Khouri SIJ, Alsaad D, Altwaiq AM. (2024). Salicylic Acid Solubility and Thermodynamic Dissociation Constant at Various Temperatures in Water: Variable Ionic Strength Titrimetric Analysis. J Solution Chem 53(7): 1006-1016. Kowalska M, Woźniak M, Kijek M, Mitrosz P, Szakiel J, et al. (2022). Management of validation of HPLC method for determination of acetylsalicylic acid impurities in a new pharmaceutical product. Scientific Reports 12(1): 1.
  • Merimi C, Hammouti B, Zaidi K, Hafez B, Elmsellem H, et al. (2023). Acetylsalicylic acid as an environmentally friendly corrosion inhibitor for carbon steel XC48 in chloride environment. J Solution Chem 1278: 134883.
  • Yenda P, Katari NK, Ettaboina SK, Satheesh B, Muchakayala SK, et al. (2023). An effective and stability‐indicating method development and optimization utilizing the Box–Behnken design for the simultaneous determination of acetaminophen, caffeine, and aspirin in tablet formulation. Biomedical Chromatography 37(4): e5585.

Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures

Year 2025, Volume: 8 Issue: 1, 1 - 7, 03.07.2025
https://doi.org/10.54994/emujpharmsci.1661092

Abstract

This study investigated the stability of acetylsalicylic acid (ASA) in aqueous citric acid solutions at various temperatures (21°C, 37°C, 45°C, and 60°C). The degradation of ASA was monitored using a titrimetric method to quantify its hydrolysis product, salicylic acid. Kinetic analysis based on the Arrhenius equation was performed to evaluate the stability profile of ASA under different storage conditions. The findings indicate that hydrolysis occurs even at room temperature, leading to a significant decrease in ASA concentration over time. The activation energy was calculated as 7.48 kcal, suggesting a rapid degradation process. The results highlight the instability of ASA in aqueous formulations, making it unsuitable for liquid dosage forms. To improve stability and prevent hydrolysis, alternative solvents such as propylene glycol and polyethylene glycol may be used instead of water. Additionally, microencapsulation techniques can offer a protective barrier against degradation, ensuring extended shelf life and improved pharmaceutical efficacy. These findings provide crucial insights for the formulation of stable liquid aspirin preparations and emphasize the necessity of selecting appropriate solvents and excipients in pharmaceutical development.

References

  • Chinchole A, Poul B, Panchal C, Chavan D (2014). A review on stability guidelines by ICH and USFDA guidelines for new formulation and dosage form. PharmaTutor 2(8): 32-53.
  • Ciaramitaro V, Piacenza E, Meo PL, Librici C, Calvino MM, et al. (2023). From micro to macro: Physical-chemical characterization of wheat starch-based films modified with PEG200, sodium citrate, or citric acid. Int J Biol Macromol 253: 127225.
  • Dominiak M, Gędek A, Sikorska M, Mierzejewski P, Wojnar M, et al. (2022). Acetylsalicylic acid and mood disorders: a systematic review. Pharmaceuticals 16(1): 67.
  • González-González O, Ramirez IO, Ramirez BI, O’Connell P, Ballesteros MP, et al. (2022). Drug stability: ICH versus accelerated predictive stability studies. Pharmaceutics 14(11): 2324.
  • Khouri SIJ, Alsaad D, Altwaiq AM. (2024). Salicylic Acid Solubility and Thermodynamic Dissociation Constant at Various Temperatures in Water: Variable Ionic Strength Titrimetric Analysis. J Solution Chem 53(7): 1006-1016. Kowalska M, Woźniak M, Kijek M, Mitrosz P, Szakiel J, et al. (2022). Management of validation of HPLC method for determination of acetylsalicylic acid impurities in a new pharmaceutical product. Scientific Reports 12(1): 1.
  • Merimi C, Hammouti B, Zaidi K, Hafez B, Elmsellem H, et al. (2023). Acetylsalicylic acid as an environmentally friendly corrosion inhibitor for carbon steel XC48 in chloride environment. J Solution Chem 1278: 134883.
  • Yenda P, Katari NK, Ettaboina SK, Satheesh B, Muchakayala SK, et al. (2023). An effective and stability‐indicating method development and optimization utilizing the Box–Behnken design for the simultaneous determination of acetaminophen, caffeine, and aspirin in tablet formulation. Biomedical Chromatography 37(4): e5585.
There are 7 citations in total.

Details

Primary Language English
Subjects Clinical Pharmacology and Therapeutics
Journal Section Research Article
Authors

Emine Dilek Özyılmaz

Publication Date July 3, 2025
Submission Date March 19, 2025
Acceptance Date June 2, 2025
Published in Issue Year 2025 Volume: 8 Issue: 1

Cite

APA Özyılmaz, E. D. (2025). Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures. EMU Journal of Pharmaceutical Sciences, 8(1), 1-7. https://doi.org/10.54994/emujpharmsci.1661092
AMA Özyılmaz ED. Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures. EMUJPharmSci. July 2025;8(1):1-7. doi:10.54994/emujpharmsci.1661092
Chicago Özyılmaz, Emine Dilek. “Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures”. EMU Journal of Pharmaceutical Sciences 8, no. 1 (July 2025): 1-7. https://doi.org/10.54994/emujpharmsci.1661092.
EndNote Özyılmaz ED (July 1, 2025) Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures. EMU Journal of Pharmaceutical Sciences 8 1 1–7.
IEEE E. D. Özyılmaz, “Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures”, EMUJPharmSci, vol. 8, no. 1, pp. 1–7, 2025, doi: 10.54994/emujpharmsci.1661092.
ISNAD Özyılmaz, Emine Dilek. “Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures”. EMU Journal of Pharmaceutical Sciences 8/1 (July2025), 1-7. https://doi.org/10.54994/emujpharmsci.1661092.
JAMA Özyılmaz ED. Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures. EMUJPharmSci. 2025;8:1–7.
MLA Özyılmaz, Emine Dilek. “Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures”. EMU Journal of Pharmaceutical Sciences, vol. 8, no. 1, 2025, pp. 1-7, doi:10.54994/emujpharmsci.1661092.
Vancouver Özyılmaz ED. Investigation of the Stability of Acetylsalicylic Acid at Different Temperatures. EMUJPharmSci. 2025;8(1):1-7.