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Adv Pharm Bull. 2015;5(4): 563-568. doi: 10.15171/apb.2015.076
PMID: 26819930        PMCID: PMC4729343

Original Research

Simple and Sensitive High-Performance Liquid Chromatography (HPLC) Method with UV Detection for Mycophenolic Acid Assay in Human Plasma. Application to a Bioequivalence Study

Hossein Danafar 1, Mehrdad Hamidi 2 *

Cited by CrossRef: 17


1- Danafar H, Hamidi M. Pharmacokinetics and Bioequivalence of Methotrexate in Human Plasma Studied by Liquid Chromatography-Mass Spectrometry (LC-MS). Jundishapur J Nat Pharm Prod. 2016;11(2) [Crossref]
2- Danafar H, Schumacher U. Simple and sensitive high performance liquid chromatographic (HPLC) method for the determination of the selegiline in human plasma. Cogent Medicine. 2016;3(1):1179244 [Crossref]
3- Danafar H. Study of the Composition of Polycaprolactone/Poly (Ethylene Glycol)/Polycaprolactone Copolymer and Drug-to-Polymer Ratio on Drug Loading Efficiency of Curcumin to Nanoparticles. Jundishapur J Nat Pharm Prod. 2016;Inpress(Inpress) [Crossref]
4- Danafar H. Study of the Composition of Polycaprolactone/Poly (Ethylene Glycol)/Polycaprolactone Copolymer and Drug-to-Polymer Ratio on Drug Loading Efficiency of Curcumin to Nanoparticles. Jundishapur J Nat Pharm Prod. 2016;12(1) [Crossref]
5- Garg U, Munar A, Frazee C. Determination of Mycophenolic Acid and Mycophenolic Acid Glucuronide Using Liquid Chromatography Tandem Mass Spectrometry (LC/MS/MS). CP Toxicology. 2018;75(1) [Crossref]
6- Kheiri Manjili H, Ghasemi P, Malvandi H, Mousavi M, Attari E, Danafar H. Pharmacokinetics and in vivo delivery of curcumin by copolymeric mPEG-PCL micelles. European Journal of Pharmaceutics and Biopharmaceutics. 2017;116:17 [Crossref]
7- Rahimpour K, Jouyban A, Teimuri‐Mofrad R. Derivatization of valproic acid using ferrocene derivatives: Synthesis, characterization and investigation of optical and electrochemical properties. Applied Organom Chemis. 2019;33(9) [Crossref]
8- Kheiri Manjili H, Malvandi H, Mosavi M, Danafar H. Preparation and Physicochemical Characterization of Biodegradable mPEG-PCL Core-Shell Micelles for Delivery of Artemisinin. Pharm Sci. 2016;22(4):234 [Crossref]
9- Al-Kulabi A, Gooden L, Uchegbu I. Nanoparticulate Mycophenolic Acid Eye Drops - Analytical Validation of a High Performance Liquid Chromatography Assay and Stability Studies. PNT. 2021;9(2):101 [Crossref]
10- Rivera Vélez S, Morassi A, Court M, Slovak J, Villarino N. Development and validation of an ultrafast chromatographic method for quantification of the immunosuppressant mycophenolic acid in canine, feline and human plasma. Journal of Pharmaceutical and Biomedical Analysis. 2016;131:94 [Crossref]
11- Zaghloul A, Lila A, Abd-Allah F, Nada A. Probucol Self-Emulsified Drug Delivery System: Stability Testing and Bioavailability Assessment in Human Volunteers . CDD. 2019;16(4):325 [Crossref]
12- Han Y, Chen L, Liu W, Xin X, Meng L, Chu X, Huang W, Jin M, Gao Z. An HPLC–MS/MS method for quantitation of trelagliptin and application in a comparative pharmacokinetic study. Bioanalysis. 2019;11(19):1755 [Crossref]
13- Kheiri Manjili H, Sharafi A, Attari E, Danafar H. Pharmacokinetics and in vitro and in vivo delivery of sulforaphane by PCL–PEG–PCL copolymeric-based micelles. Artificial Cells, Nanomedicine, and Biotechnology. 2017;45(8):1728 [Crossref]
14- Bakhshi F, Molavi O, Rashidi M, Shayanfar A, Amini H. Developing a high-performance liquid chromatography fast and accurate method for quantification of silibinin. BMC Res Notes. 2019;12(1) [Crossref]
15- Silva M, Ribeiro C, Gonçalves V, Tiritan M, Lima Á. Liquid chromatographic methods for the therapeutic drug monitoring of methotrexate as clinical decision support for personalized medicine: A brief review. Biomedical Chromatography. 2018;32(5) [Crossref]
16- Gholivand M, Solgi M. Simultaneous electrochemical sensing of warfarin and maycophenolic acid in biological samples. Analytica Chimica Acta. 2018;1034:46 [Crossref]
17- Garg U, Munar A, Frazee C. Quantitation of Mycophenolic Acid and Mycophenolic Acid Glucuronide in Serum or Plasma by LC‐MS/MS. Current Protocols. 2023;3(4) [Crossref]