A porous molecularly imprinted nanofilm for selective and sensitive sensing of an anticancer drug ruxolitinib

被引:27
作者
corman, M. Emin [1 ,2 ]
Cetinkaya, Ahmet [1 ]
Ozcelikay, Goksu [1 ]
Ozgur, Erdogan [3 ]
Atici, Esen B. [4 ]
Uzun, Lokman [5 ]
Ozkan, Sibel A. [1 ]
机构
[1] Ankara Univ, Dept Analyt Chem, Fac Pharm, Ankara, Turkey
[2] Sinop Univ, Fac Sci & Arts, Dept Chem, Sinop, Turkey
[3] Hacettepe Univ, Adv Technol Applicat & Res Ctr, Ankara, Turkey
[4] DEVA Holding AS, R&D Ctr, Tekirdag, Turkey
[5] Hacettepe Univ, Dept Chem, Fac Sci, Ankara, Turkey
关键词
Ruxolitinib; Molecularly imprinted polymer; Photopolymerization; Voltammetry; Drug analysis; POLYMERS; MYELOFIBROSIS;
D O I
10.1016/j.aca.2021.339143
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel methodology has been applied to generate a porous molecularly imprinted material for highly selective and sensitive recognition of Janus kinase inhibitor ruxolitinib (RUX). The porous material-based nucleobase-derivative functional monomer was developed by a photopolymerization method. The thymine methacrylate (ThyM) as a functional monomer was synthesized and copolymerized with 2hydroxyethyl methacrylate (HEMA) in the presence of ethylene glycol dimethacrylate (EGDMA) onto the glassy carbon electrode [glassy carbon electrode/molecularly imprinted polymer@poly(2hydroxyethyl methacrylate-co-thymine methacrylate), (GCE/MIP@PHEMA-ThyM)] for the first time. The presence of ThyM results in the functional groups in imprinting binding sites, while the presence of poly(vinyl alcohol) (PVA) allows to generate porous materials for sensitive sensing. The characterization of GCE/MIP@PHEMA-ThyM was investigated by Fourier transform infrared (FT-IR) spectroscopy, scanning electron microscopy (SEM), and impedance spectroscopy technique. Then, the porous MIP modified glassy carbon electrode was optimized with effecting parameters including removal agent, removal time, and incubation time to get a better response for RUX. Under well-controlled optimum conditions, the GCE/MIP@PHEMA-ThyM linearly responded to the RUX concentration up to 0.01 pM at the limit of detection (LOD) of 0.00191 pM. The non-imprinted polymer (NIP) was also prepared to serve as a control in the same way but without the template. The proposed method improves the accessibility of binding sites by generating the porous material resulting in highly selective and sensitive recognition of drugs in the pharmaceutical dosage form and synthetic human serum samples. (c) 2021 Elsevier B.V. All rights reserved.
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页数:9
相关论文
共 32 条
[1]   Overcoming treatment challenges in myelofibrosis and polycythemia vera: the role of ruxolitinib [J].
Bryan, Jeffrey C. ;
Verstovsek, Srdan .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 2016, 77 (06) :1125-1142
[2]   A molecularly imprinted electrochemical sensor based on highly selective and an ultra-trace assay of anti-cancer drug axitinib in its dosage form and biological samples [J].
Cetinkaya, Ahmet ;
Kaya, S. Irem ;
Ozcelikay, Goksu ;
Atici, Esen Bellur ;
Ozkan, Sibel A. .
TALANTA, 2021, 233
[3]   Development and Validation of a Reverse-Phase High-Performance Liquid Chromatography with Fluorescence Detection (RP-HPLC-FL) Method to Quantify Ruxolitinib in Plasma Samples [J].
Charlier, Bruno ;
Marino, Luigi ;
Dal Piaz, Fabrizio ;
Pingeon, Marine ;
Coglianese, Albino ;
Izzo, Barbara ;
Serio, Bianca ;
Selleri, Carmine ;
Filippelli, Amelia ;
Izzo, Viviana .
ANALYTICAL LETTERS, 2019, 52 (08) :1328-1339
[4]   Recent advances in molecular imprinting technology: current status, challenges and highlighted applications [J].
Chen, Lingxin ;
Xu, Shoufang ;
Li, Jinhua .
CHEMICAL SOCIETY REVIEWS, 2011, 40 (05) :2922-2942
[5]   Electrochemical methods for the determination of antibiotic residues in milk: A critical review [J].
de Faria, Lucas Vinicius ;
Lisboa, Thalles Pedrosa ;
Campos, Naira da Silva ;
Alves, Guilherme Figueira ;
Matos, Maria Auxiliadora Costa ;
Matos, Renato Camargo ;
Munoz, Rodrigo Alejandro Abarza .
ANALYTICA CHIMICA ACTA, 2021, 1173
[6]   Improved Achiral and Chiral HPLC-UV Analysis of Ruxolitinib in Two Different Drug Formulations [J].
Di Michele, Alessandro ;
Schoubben, Aurelie ;
Varfaj, Ina ;
D'Arpino, Alessandro ;
Mercolini, Laura ;
Sardella, Roccaldo ;
Ricci, Maurizio ;
Tiacci, Enrico .
SEPARATIONS, 2020, 7 (03) :1-11
[7]   Imprinting Technology in Electrochemical Biomimetic Sensors [J].
Frasco, Manuela F. ;
Truta, Liliana A. A. N. A. ;
Sales, M. Goreti F. ;
Moreira, Felismina T. C. .
SENSORS, 2017, 17 (03)
[8]   Recent advances and future prospects in molecularly imprinted polymers-based electrochemical biosensors [J].
Gui, Rijun ;
Jin, Hui ;
Guo, Huijun ;
Wang, Zonghua .
BIOSENSORS & BIOELECTRONICS, 2018, 100 :56-70
[9]  
Ich Harmonised Tripartite Guideline, 1996, GUIDANCE IND Q2B VAL, V20857, P301
[10]  
Kauffmann J, 2019, ELECTROANALYTICAL ME