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Original Articles

APPLICATION OF HIGH PERFORMANCE LIQUID CHROMATOGRAPHIC METHOD FOR THE DETERMINATION OF LEVODOPA, CARBIDOPA, AND ENTACAPONE IN TABLET DOSAGE FORMS

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Pages 2433-2447 | Published online: 18 Nov 2011

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Kemal Volkan Özdokur, Esra Engin, Çiğdem Yengin, Hasan Ertaş & F. Nil Ertaş. (2018) Determination of Carbidopa, Levodopa, and Droxidopa by High-Performance Liquid Chromatography–Tandem Mass Spectrometry. Analytical Letters 51:1-2, pages 73-82.
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Bhaskara P. V. Mantena, Sumathi V. Rao, K. M. Ch. Appa Rao, K. Ramakrishna & R. Srikanth Reddy. (2015) Rapid Separation Technique for the Determination of Potential Impurities Present in Levodopa, Carbidopa, and Entacapone in Fixed Dose Combination Drug Product Using Trifunctionally Bonded Phase Ethylene Bridged Sorbent Column with Smaller Ion-Pair Reagent. Journal of Liquid Chromatography & Related Technologies 38:10, pages 1073-1087.
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Articles from other publishers (12)

Hui Min, Shuangyan Wu, Zongsu Han, Zhonghang Chen, Tiankai Sun, Wei Shi & Peng Cheng. (2021) Fast Detection of Entacapone by a Lanthanide–Organic Framework with Rhombic Channels. Chemistry – A European Journal 27:69, pages 17459-17464.
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Rıfat Emre Burmaoğlu & Serap Sağlık Aslan. (2020) A rapid liquid chromatography/tandem mass spectrometry method for simultaneous determination of levodopa, carbidopa, entacapone and their six related compounds in film‐coated tablets. Rapid Communications in Mass Spectrometry 34:12.
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Guzide Pekcan Ertokus. (2019) The Determination of Parkinson’s Drugs in Human Urine by Applying Chemometric Methods. International Journal of Analytical Chemistry 2019, pages 1-8.
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F. Belal, F. Ibrahim, Z.A. Sheribah & H. Alaa. (2018) Micellar HPLC-UV method for the simultaneous determination of levodopa, carbidopa and entacapone in pharmaceuticals and human plasma. Journal of Chromatography B 1091, pages 36-45.
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Meraj Shoghi-Kalkhoran, Farnoush Faridbod, Parviz Norouzi & Mohammad Reza Ganjali. (2017) Praseodymium molybdate nanoplates/reduced graphene oxide nanocomposite based electrode for simultaneous electrochemical determination of entacapone, levodopa and carbidopa. Journal of Materials Science: Materials in Electronics 29:1, pages 20-31.
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F. Belal, F. Ibrahim, Z. A. Sheribah & H. Alaa. (2017) Micelle-enhanced spectrofluorimetric method for quantification of entacapone in tablets and human plasma. Luminescence 32:5, pages 713-722.
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Dasari Purnachand, Arava Veerareddy, Bhoomireddy Ramadevi, Ch.V.S.L. Kameswarrao & Bethi Madhusudhanreddy. (2016) Development and Validation of a RP-HPLC Method for Determination of Related Substances and Degradants in Entacapone. Journal of Chromatographic Science 54:8, pages 1310-1323.
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Mohamed Rizk, Ali K. Attia, Mona S. Elshahed & Amir S. Farag. (2015) Validated voltammetric method for the determination of antiparkinsonism drug entacapone in bulk, pharmaceutical formulation and human plasma. Journal of Electroanalytical Chemistry 743, pages 112-119.
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Nahla N. Salama, Shereen M. Azab, Mona A. Mohamed & Amany M. Fekry. (2015) A novel methionine/palladium nanoparticle modified carbon paste electrode for simultaneous determination of three antiparkinson drugs. RSC Advances 5:19, pages 14187-14195.
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Prashant P. Raut & Shrikant Y. Charde. (2014) Simultaneous estimation of levodopa and carbidopa by RP-HPLC using a fluorescence detector: its application to a pharmaceutical dosage form. Luminescence 29:7, pages 762-771.
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Ana Vemić, Biljana Jančić Stojanović, Ivana Stamenković & Anđelija Malenović. (2013) Chaotropic agents in liquid chromatographic method development for the simultaneous analysis of levodopa, carbidopa, entacapone and their impurities. Journal of Pharmaceutical and Biomedical Analysis 77, pages 9-15.
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Tzu‐Hsiang Lin, Chi‐Yu Lu & Wei‐Lung Tseng. (2012) Selective enrichment of catecholamines using iron oxide nanoparticles followed by CE with UV detection . ELECTROPHORESIS 34:2, pages 297-303.
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