Volume 12 Issue 3
Jun.  2022
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Hui Yang, Gongxun Cao, Yongjun Huang, Ye Lin, Fengying Zheng, Luxiu Lin, Fengjiao Liu, Shunxing Li. Nitrogen-doped carbon@TiO2 double-shelled hollow spheres as an electrochemical sensor for simultaneous determination of dopamine and paracetamol in human serum and saliva[J]. Journal of Pharmaceutical Analysis, 2022, 12(3): 436-445. doi: 10.1016/j.jpha.2021.08.005
Citation: Hui Yang, Gongxun Cao, Yongjun Huang, Ye Lin, Fengying Zheng, Luxiu Lin, Fengjiao Liu, Shunxing Li. Nitrogen-doped carbon@TiO2 double-shelled hollow spheres as an electrochemical sensor for simultaneous determination of dopamine and paracetamol in human serum and saliva[J]. Journal of Pharmaceutical Analysis, 2022, 12(3): 436-445. doi: 10.1016/j.jpha.2021.08.005

Nitrogen-doped carbon@TiO2 double-shelled hollow spheres as an electrochemical sensor for simultaneous determination of dopamine and paracetamol in human serum and saliva

doi: 10.1016/j.jpha.2021.08.005
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This work was supported by the National Natural Science Foundation of China (Grant Nos.: 22074058 and 21675077), the Project of Industry-University-Research Cooperation of Fujian Province (Grant No.: 2019Y4010), and the Education-Science Research Project for Young and Middle-aged Teachers of Fujian (Grant No.: JAT200317).

  • Received Date: Nov. 04, 2020
  • Accepted Date: Aug. 30, 2021
  • Rev Recd Date: Aug. 21, 2021
  • Publish Date: Sep. 01, 2021
  • As the most commonly used antipyretic and analgesic drug, paracetamol (PA) coexists with neurotransmitter dopamine (DA) in real biological samples. Their simultaneous determination is extremely important for human health, but they also interfere with each other. In order to improve the conductivity, adsorption affinity, sensitivity, and selectivity of TiO2-based electrochemical sensor, N-doped carbon@TiO2 double-shelled hollow sphere (H-C/N@TiO2) is designed and synthesized by simple alcoholic and hydrothermal method, using polystyrene sphere (PS) as a template. Meanwhile, TiO2 hollow spheres (H-TiO2) or N-doped carbon hollow spheres (H-C/N) are also prepared by the same method. H-C/N@TiO2 has good conductivity, charge separation, and the highly enhanced and stable current responses for the detection of PA and DA. The detection limit and linear range are 50.0 nmol/L and 0.3-50 μmol/L for PA, 40.0 nmol/L and 0.3-50 μmol/L for DA, respectively, which are better than those of carbon-based sensors. Moreover, this electrochemical sensor, with high selectivity, strong anti-interference, high reliability, and long time durability, can be used for the simultaneous detection of PA and DA in human blood serum and saliva. The high electrochemical performance of H-C/N@TiO2 is attributed to the multi-functional combination of different layers, because of good conductivity, absorption and electrons transfer ability from in-situ N-doped carbon and electrocatalytic activity from TiO2.
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  • Y.C. Li, S.Q. Feng, Y.M. Zhong, et al., Simultaneous and highly sensitive determination of hydroquinone and catechol using carboxyl functionalized graphene self-assembled monolayers, Electroanal. 27(2015)2221-2229
    T. Madrakian, E. Haghshenas, A. Afkhami, Simultaneous determination of tyrosine, acetaminophen and ascorbic acid using gold nanoparticles/multiwalled carbon nanotube/glassy carbon electrode by differential pulse voltammetric method, Sensor Actuat. B-chem. 193(2014)451-460
    S. Wang, F. Xie, R, Hu, Carbon-coated nickel magnetic nanoparticles modified electrodes as a sensor for determination of acetaminophen, Sensor Actuat. B-chem. 123(2007)495-500
    E. Murugan, K. Kumar, Fabrication of SnS/TiO2@GO composite coated glassy carbon electrode for concomitant determination of paracetamol, tryptophan, and caffeine in pharmaceutical formulations, Anal. Chem. 91(2019)5667-5676
    B.G. Mahmoud, M. Khairy, F.A. Rashwan, et al., Simultaneous voltammetric determination of acetaminophen and isoniazid (hepatotoxicity-related drugs) utilizing bismuth oxide nanorod modified screen-printed electrochemical sensing platforms, Anal. Chem. 89(2017)2170-2178
    M.T. Olaleye, B.T.J. Rocha, Acetaminophen-induced liver damage in mice:effects of some medicinal plants on the oxidative defense system, Exp. Toxicol Pathol. 59(2008)319-327
    M. Mazer, J. Perrone, Acetaminophen-induced nephrotoxicity:pathophysiology, clinical manifestations, and management, J. Med. Toxicol. 4(2008)2-6
    D. Shankaran, K. Iimura, T. Kato, Simultaneous determination of ascorbic acid and dopamine at a sol-gel composite electrode, Sensor Actuat. B:chem. 94(2003)73-80
    V.V. Dutt, H.A. Mottola, Determination of uric acid at the microgram level by a kinetic procedure based on a pseudo-induction period, Anal. Chem. 46(1974)1777-1781
    J. Njagi, M.M. Chernov, J.C. Leiter, et al., Amperometric detection of dopamine in vivo with an enzyme based carbon fiber microbiosensor, Anal. Chem. 82(2010)989-996
    T. Iranmanesh, M.M. Foroughi, S. Jahani, et al., Green and facile microwave solvent-free synthesis of CeO2 nanoparticle-decorated CNTs as a quadruplet electrochemical platform for ultrasensitive and simultaneous detection of ascorbic acid, dopamine, uric acid and acetaminophen, Talanta 207(2020)120318
    M. Devaraj, R. Saravanan, R. Deivasigamani, et al., Fabrication of novel shape Cu and Cu/Cu2O nanoparticles modified electrode for the determination of dopamine and paracetamol, J. Mol. Liq. 221(2016)930-941
    R. Sandulescu, S. Mirel, R. Oprean, The development of spectrophotometric and electroanalytical methods for ascorbic acid and acetaminophen and their applications in the analysis of effervescent dosage forms, J. Pharmaceut. Biomed. 23(2000)77-87
    A. Safavi, M.A. Karimi, M.R.H. Nezhad, et al., Sensitive indirect spectrophotometric determination of isoniazid, Spectrochim. Acta A. 60(2004)765-769
    H.H. Liu, M.P. Li, R. B. Kaner, et al., Monolithically integrated self-charging power pack consisting of a silicon nanowire array/conductive polymer hybrid solar cell and a laser-scribed graphene supercapacitor, ACS Appl. Mater. Inter. 10(2018)15609-15615
    H.L. Yan, Y.P. Zhou, Q.J. Xie, et al., Simultaneous analysis of isoniazid and rifampicin by high-performance liquid chromatography with gradient elution and wall-jet/thin-layer electrochemical detection, Anal. Methods-uk. 6(2014)1530-1537
    B. Wu, Z. Wang, Z. Xue, et al., A novel molecularly imprinted electrochemiluminescence sensor for isoniazid detection, Analyst 137(2012)3644-3652
    M.F. Bergamini, D.P. Santos, M.V.B. Zanoni, Determination of isoniazid in human urine using screen-printed carbon electrode modified with poly-l-histidine, Bioelectrochemistry 77(2010)133-138
    X.J. Si, L. Jiang, X.Y. Wang, et al., Determination of isoniazid content via cysteic acid/graphene modified glassy carbon electrode, Anal. Methods-uk. 7(2015)793-798
    Z.H. Zhang, S. Zhang, L.H He, et al., Feasible electrochemical biosensor based on plasma polymerization-assisted composite of polyacrylic acid and hollow TiO2 spheres for sensitively detecting lysozyme, Biosens. Bioelectron. 74(2015)384-390
    S.A. Kumar, C.F. Tang, S.M. Chen, Electroanalytical determination of acetaminophen using nano-TiO2/polymer coated electrode in the presence of dopamine, Talanta 76(2008)997-1005
    H.F. Cui, W.W. Wu, M.M. Li, et al., A highly stable acetylcholinesterase biosensor based on chitosan-TiO2-graphene nanocomposites for detection of organophosphate pesticides, Biosens. Bioelectron. 99(2018)223-229
    H.F. Cui, K. Zhang, Y.F. Zhang, et al., Immobilization of glucose oxidase into a nanoporous TiO2 film layered on metallophthalocyanine modified vertically-aligned carbon nanotubes for efficient direct electron transfer, Biosens. Bioelectron. 46(2013)113-118
    H. Liu, W. Li, D.K. Shen, et al., Graphitic carbon conformal coating of mesoporous TiO2 hollow spheres for high-performance lithium ion battery anodes, J. Am. Chem. Soc. 137(2015)13161-13166
    A.H. Liu, M.D. Wei, I. Honma, et al., Biosensing properties of titanate-nanotube films:selective detection of dopamine in the presence of ascorbate and uric acid, Adv. Funct. Mater. 16(2006)371-376
    C.H. Yang, W.X. Que, X.T. Yin, et al., Improved capacitance of nitrogen-doped delaminated two-dimensional titanium carbide by urea-assisted synthesis, Electrochim. Acta 225(2017)416-424
    M.H. Naveen, K. Shim, M.S.A. Hossain, et al., Template free preparation of heteroatoms doped carbon spheres with trace Fe for efficient oxygen reduction reaction and supercapacitor, Adv. Energy Mater. 7(2017)1602002
    J.N. Zhang, X.L. Zhang, Y.C. Zhou, et al., Nitrogen-doped hierarchical porous carbon nanowhisker ensembles on carbon nanofiber for high-performance supercapacitors, ACS Sustain. Chem. Eng. 2(2014)1525-1533
    T.K. Zhao, J.K. Zhang, Z. Du, et al., Dopamine-derived N-doped carbon decorated titanium carbide composite for enhanced supercapacitive performance, Electrochim. Acta 254(2017),308-319
    J. Zhang, Q. Xu, Z.H. Feng, et al., Importance of the relationship between surface phases and photocatalytic activity of TiO2, Angew. Chem.Int. Edit. 47(2008)1766-1769
    S.X. Li, J. Chen, F.Y. Zheng, et al., Synthesis of the double-shell anatase-rutile TiO2 hollow spheres with enhanced photocatalytic activity, Nanoscale 5(2013)12150-12155
    R. Atchudan, T.N.J.I. Edison, S. Perumal, et al., In situ green synthesis of nitrogen-doped carbon dots for bioimaging and TiO2 nanoparticles@nitrogen-doped carbon composite for photocatalytic degradation of organic pollutants, J. Alloy. Compd. 766(2018)12-24
    W.W. Ji, Y.M. Mei, M. Yang, et al., The core-shell mesoporous titanium dioxide with in situ nitrogen doped carbon as the anode for high performance lithium-ion battery, J. Alloy. Compd. 806(2019)946-952
    R. Atchudan, N. Muthuchamy, T.N.J.I. Edison, et al., An ultrasensitive photoelectrochemical biosensor for glucose based on bio-derived nitrogen-doped carbon sheets wrapped titanium dioxide nanoparticles, Biosens. Bioelectron. 126(2019)160-169
    Y. Zhang, C.W. Wang, H.H. Hou, et al., Nitrogen doped/carbon tuning yolk-like TiO2 and its remarkable impact on sodium storage performances, Adv. Energy Mater. 7(2017)160-173
    A.M. Abdullah, N.J. Al-Thani, K. Tawbi, et al., Carbon/nitrogen-doped TiO2:New synthesis route, characterization and application for phenol degradation, Arab. J. Chemi. 9(2016)229-237
    S.X. Li, J.B. Cai, X.Q. Wu, et al., Fabrication of positively and negatively charged, double-shelled, nanostructured hollow spheres for photodegradation of cationic and anionic aromatic pollutants under sunlight irradiation, Appl. Catal. B Environ. 160(2014)279-285
    W.G. Leng, M. Chen, S.X. Zhou, et al., Capillary force induced formation of monodisperse polystyrene/silica organic-inorganic hybrid hollow spheres, Langmuir 26(2010)14271-14275
    G. Wu, K.L. More, C.M. Johnston, et al., High-performance electrocatalysts for oxygen reduction derived from polyaniline, iron, and cobalt, Science 332(2011)443-447
    X.H. Kang, J. Wang, H. Wu, et al., A graphene-based electrochemical sensor for sensitive detection of paracetamol, Talanta 81(2010)754-759
    A. Mao, H.B. Li, D.Q. Jin, et al., Fabrication of electrochemical sensor for paracetamol based on multi-walled carbon nanotubes and chitosan-copper complex by self-assembly technique, Talanta 144(2015)252-257
    R. Liu, X.B. Zeng, J.C. Liu, et al., A glassy carbon electrode modified with an amphiphilic, electroactive and photosensitive polymer and with multi-walled carbon nanotubes for simultaneous determination of dopamine and paracetamol, Microchim. Acta 183(2016)1543-1551
    Z.A. Alothman, N. Bukhari, S.M. Wabaidur, et al., Simultaneous electrochemical determination of dopamine and acetaminophen using multiwall carbon nanotubes modified glassy carbon electrode, Sensor Actuat. B 146(2010)314-320
    P. Chandra, N.X. Son, H. Noh, et al., Investigation on the downregulation of dopamine by acetaminophen administration based on their simultaneous determination in urine, Biosens. Bioelectron. 39(2013)139-144
    B. Habibi, M. Jahanbakhshi, M.H. Pournaghi-Azar, Simultaneous determination of acetaminophen and dopamine using SWCNT modified carbon-ceramic electrode by differential pulse voltammetry, Electrochim. Acta 56(2011)2888-2894
    N.T.T. Tu, P.C. Sy, T.V. Thien, et al., Microwave-assisted synthesis and simultaneous electrochemical determination of dopamine and paracetamol using ZIF-67-modified electrode, J. Mater. Sci. 54(2019)11654-11670
    B.D Liu, X.Q. Ouyang, Y.P. Ding, et al., Electrochemical preparation of nickel and copper oxides-decorated graphene composite for simultaneous determination of dopamine, acetaminophen and tryptophan, Talanta 146(2016)114-121
    L. Fu, K. Xie, Y. Zheng, et al., Graphene ink film based electrochemical detector for paracetamol analysis, Electronics 7(2018)15
    Y. Kumar, P. Pramanik, D.K. Das, Electrochemical detection of paracetamol and dopamine molecules using nano-particles of cobalt ferrite and manganese ferrite modified with graphite, Heliyon, 5(2019) e02031
    S.X. Li, L.X. Lin, F.Y. Zheng, et al., Metal bioavailability and risk assessment from edible brown alga Laminaria japonica, using biomimetic digestion and absorption system and determination by ICP-MS, J. Agr. Food Chem. 59(2011)822-828
    L.X. Lin, F.Y. Zheng, H.F. Zhou, et al., Biomimetic gastrointestinal tract functions for metal absorption assessment in edible plants:comparison to in vivo absorption, J. Agr. Food Chem. 65(2017)6282-6287
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