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Pharm Sci. 2016;22(1): 35-41. doi: 10.15171/PS.2016.07

Research Article

Determination of Edoxaban in Bulk and in Tablet Dosage Form by Stability Indicating High-Performance Liquid Chromatography

Pasam Satyanarayana Reddy 1 * , V. Shanmukha Kumar Jagarlapudi 1, Chandra Bala Sekaran 2

Cited by CrossRef: 13


1- Ayish N, Marzouk H, El‐Zeany B, Fayed A. A Novel Nanoparticles‐based Electrochemical Sensing Platform for Sensitive Detection of Oral Anticoagulant; Edoxaban in Human Plasma. Electroanalysis. 2022;34(8):1266 [Crossref]
2- Alwael H, Dabi M, Bahaidarah E, Abduljabbar T, Alshareef F, Hatahet O, Soomro M, El-Shahawi M. A highly sensitive and selective electrochemical sensing probe for detection of Edoxaban anticoagulant drug residue in environmental water and drug formulations. International Journal of Environmental Analytical Chemistry. 2024;:1 [Crossref]
3- Valavala S, Seelam N, Tondepu S, Jagarlapudi V, Sundarmurthy V. Analytical Method Development and Validation for the Quantification of Acetone and Isopropyl Alcohol in the Tartaric Acid Base Pellets of Dipyridamole Modified Release Capsules by Using Headspace Gas Chromatographic Technique. Journal of Analytical Methods in Chemistry. 2018;2018:1 [Crossref]
4- Mostafa Y, Elsebaei F, Metwally M. Bio-inspired one-pot synthesis of luminescent silver nanoparticles and its significant utility as a fluorescence nano sensor for analysis of two adjunctive COVID-19 drugs. BMC Chemistry. 2024;18(1) [Crossref]
5- Oliveira Rocha M, Bordignon Primieri G, Ribeiro Wingert N, Arguello Da Silva J, Steppe M. Development and validation of capillary zone electrophoresis and high‐performance liquid chromatography methods for the determination of oral anticoagulant edoxaban in pharmaceutical tablets. Electrophoresis. 2022;43(15):1617 [Crossref]
6- Hassan Y, Alzahrani E, Saraya R, Abdel-Lateef M, El-Shoura E, Batakoushy H, Ibrahim A, Farouk A, Abdel-Aal M, Salman B. A promising green fluorimetric approach for analysis of edoxaban in real human plasma using green carbon dots decorated with terbium ions. Chem Pap. 2024; [Crossref]
7- Sedaghat S, Molavi O, Faridi A, Shayanfar A, Rashidi M. Development of an HPLC-UV Method for Quantification of Stattic. CPA. 2019;15(6):568 [Crossref]
8- Rizk M, Abou El-Alamin M, Abd Elkhalek O, Shallan A. Validated and selective potentiometric analysis of anti-coagulant edoxaban via a screen-printed electrode: green assessment by Eco-Scale and Complex-GAPI. J IRAN CHEM SOC. 2023;20(9):2319 [Crossref]
9- Patel D, Rana B, Maru S, Vyas A, Patel A, Patel A, Patel N. Stability Indicating RP-UPLC Photo-Diode Array based Method for Determination of Edoxaban Tosylate. ajomc. 2020;5(3):273 [Crossref]
10- Pazhani P, Prakash Dharmian J, Arumugam S, pazhani P, Vara Prasad Medapati V. Arg-Specific serine Protease-Targeted edoxaban tosylate monohydrate-Poly (lactic-co-glycolic acid) Nanoparticles: Investigating Stuart-Prower factor targeting and intestinal distribution through Ex-Vivo fluorescent visualization. European Journal of Pharmaceutics and Biopharmaceutics. 2024;203:114459 [Crossref]
11- Rocha M, Dallegrave A, Klein T, Lavayen V, Steppe M, Da Silva J. Electrochemical oxidation of edoxaban and its determination in pharmaceutical samples and human serum. Microchemical Journal. 2024;204:110926 [Crossref]
12- Anupama B, Tejaswi P, Lakshmi K, Vishwanadh A. DEVELOPMENT AND VALIDATION OF RP-HPLC METHOD FOR ESTIMATION OF EDOXABAN TOSYLATE IN TABLET DOSAGE FORMS. IND DRU. 2020;57(07):47 [Crossref]