Development of a Functional Ruthenium(II) Complex that Can Act as a Photoluminescent and Electrochemiluminescent Dual-signaling Probe for Hypochlorous Acid
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  • 作者:Xiaojing Yu ; Wenzhu Zhang ; Zhiqiang Ye ; Bo Song ; Jingli Yuan
  • 关键词:Ruthenium complex ; Luminescence probe ; Photoluminescence ; Electrochemiluminescence ; Hypochlorous acid
  • 刊名:Journal of Fluorescence
  • 出版年:2015
  • 出版时间:July 2015
  • 年:2015
  • 卷:25
  • 期:4
  • 页码:997-1004
  • 全文大小:723 KB
  • 参考文献:1.Aokl T, Munemorl M (1983) Water analysis. Anal Chem 55:209-12View Article
    2.Winterbourn CC, Hampton MB, Livesey JH, Kettle AJ (2006) Modeling the reactions of superoxide and myeloperoxidase in the neutrophil phagosome: implications for microbial killing. J Biol Chem 281:39860-9869PubMed View Article
    3.Pattison DI, Davies M (2006) Evidence for rapid inter- and intramolecular chlorine transfer reactions of histamine and carnosine chloramines: implications for the prevention of hypochlorous-acid-mediated damage. J Biochem 45:8152-162View Article
    4.Lapenna D, Cuccurullo F (1996) Hypochlorous acid and its pharmacological antagonism: an update picture. Gen Pharmacol 27:1145-147PubMed View Article
    5.Perez-Vilar J, Boucher RC (2004) Reevaluating gel-forming mucins-roles in cystic fibrosis lung disease. Free Radic Biol Med 37:1564-577PubMed View Article
    6.Hasegawa T, Malle E, Farhood A, Jaeschke H (2005) Generation of hypochlorite-modified proteins by neutrophils during ischemia-reperfusion injury in rat liver: attenuation by ischemic preconditioning. Am J Physiol Gastrointest Liver Physiol 289:760-67
    7.Rao R (2008) Oxidative stress-induced disruption of epithelial and endothelial tight junctions. Front Biosci 13:7210-226PubMed View Article
    8.Zhang R, Brennan ML, Fu X, Aviles RJ, Pearce GL, Penn MS, Topol EJ, Sprecher DL, Hazen SL (2001) Association between myeloperoxidase levels and risk of coronary artery disease. JAMA 286:2136-142PubMed View Article
    9.Hammerschmidt S, Buchler N, Wahn H (2002) Tissue lipid peroxidation and reduced glutathione depletion in hypochlorite-induced lung injury. Chest 121:573-81PubMed View Article
    10.Wu SM, Pizzo SV (2001) Alpha(2)-macroglobulin from rheumatoid arthritis synovial fluid: functional analysis defines a role for oxidation in inflammation. Arch Biochem Biophys 391:119-26PubMed View Article
    11.Chen X, Tian X, Shin I, Yoon J (2011) Fluorescent and luminescent probes for detection of reactive oxygen and nitrogen species. Chem Soc Rev 40:4783-804PubMed View Article
    12.Güeng?er N, Knaapen AM, Munnia A, Peluso M, Haenen GR, Chiu RK, Godschalk RWL, van Schooten FJ (2010) Genotoxic effects of neutrophils and hypochlorous acid. Mutagenesis 25:149-54View Article
    13.Suzuki T (2006) DNA damage and mutation caused by vital biomolecules, water, nitric oxide and hypochloorous acid. Genes Environ 28:48-5View Article
    14.March JG, Gual M, Simonet BM (2002) Determination of residual chlorine in grey water using o-tolidine. Talanta 58:995-001PubMed View Article
    15.Moberg L, Karlberg B (2000) An improved N, N-diethyl-p-phenylenediamine (DPD) method for the determination of free chlorine based on multiple wavelength detection. Anal Chim Acta 407:127-33View Article
    16.Ballesta Claver J, Valencia Mirón MC, Capitán-Vallvey LF (2004) Determination of hypochlorite in water using a chemiluminescent test strip. Anal Chim Acta 522:267-73View Article
    17.Setsukinai K, Urano Y, Kakinuma K, Majima HJ, Nagano T (2003) Development of novel fluorescence probes that can reliably detect reactive oxygen species and distinguish specific species. J Biol Chem 278:3170-175PubMed View Article
    18.Koide Y, Urano Y, Kenmoku S, Kojima H, Nagano T (2007) Design and synthesis of fluorescent probes for selective detection of highly reactive oxygen species in mitochondria of living cells. J Am Chem Soc 129:10324-0325PubMed View Article
    19.Zhang R, Ye ZQ, Song B, Dai ZC, An X, Yuan JL (2013) Development of a ruthenium(II) complex-based luminescent probe for hypochlorous acid in living cells. Inorg Chem 52:10325-0331PubMed View Article
    20.Lo KKW, Choi AWT, Law WHT (2012) Applications of luminescent inorganic and organometallic transition metal complexes as biomolecular and cellular probes. Dalton Trans 41:6021-047PubMed View Article
    21.Balasingham RG, Coogan MP, Thorp-Greenwood FL (2011) Complexes in context: attempting to control the cellular uptake and localisation of rhenium fac-tricarbonyl polypyridyl complexes. Dalton Trans 40:11663-1674PubMed View Article
    22.Liu ZP, He WJ, Guo ZJ (2013) Metal coordination in photoluminescent sensing. Chem Soc Rev 42:1568-600PubMed View Article
    23.Yang YM, Zhao Q, Feng W, Li FY (2013) Luminescent chemodosimeters for bioimaging. Chem Rev 113:192-70PubMed View Article
    24.Coronado E, Galan-Mascaro JR, Marti-Gastaldo C, Palomares E, Durrant JR, Vilar R, Gratzel M, Nazeeruddin MK (2005) Reversible colorimetric probes for mercury sensing. J Am Chem Soc 127:12351-2356PubMed View Article
    25.Sun Y, Hudson ZM, Rao YL, Wang SN (2011) Tuning and switching MLCT phosphorescence of [Ru(bpy)3]2+ complexes with triarylboranes and anions. Inorg Chem 50:3373-378PubMed View Article
    26.Tormo L, Bustamante N, Colmenarejo G, Orellana G (2010) Can luminescent Ru(II) polypyridyl dyes measure pH directly? Anal Chem 82:5195-204PubMed View Article
    27.Hu LZ, Bian Z, Li HJ, Han S, Yuan YL,
  • 作者单位:Xiaojing Yu (1)
    Wenzhu Zhang (1)
    Zhiqiang Ye (1)
    Bo Song (1)
    Jingli Yuan (1)

    1. State Key Laboratory of Fine Chemicals, School of Chemistry, Dalian University of Technology, Dalian, 116024, People’s Republic of China
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Biomedicine
    Biophysics and Biomedical Physics
    Biotechnology
    Biochemistry
    Analytical Chemistry
  • 出版者:Springer Netherlands
  • ISSN:1573-4994
文摘
A functional ruthenium(II) complex that can act as a probe for response to hypochlorous acid (HOCl) in aqueous media with photoluminescence (PL) and electrochemiluminescence (ECL) dual-signals, [Ru(bpy)2(DB-phen)](PF6)2 [bpy: 2,2-bipyridine; DB-phen: 5-(2,4-dimethoxybenzylamino)-1,10-phenanthroline)], has been designed and synthesized. The complex is highly luminescent both under the light excitation and the electrochemical induction. It can specifically react with HOCl in physiological pH aqueous media to afford its chlorinated derivative, [Ru(bpy)2(DBCA-phen)](PF6)2 [DBCA-phen: 5-(2,4-dimethoxybenzyl-chloroamino)- 1,10-phenanthroline], accompanied by remarkable decreases in its PL and ECL intensities. The PL and ECL abatements of [Ru(bpy)2(DB-phen)](PF6)2 show good linear correlation to the concentration of HOCl with detection limits at low micromolar concentration level, and the PL and ECL responses of the complex to HOCl are highly specific without interferences of other reactive oxygen/nitrogen species. These features enabled [Ru(bpy)2(DB-phen)](PF6)2 to be used as a probe for the highly selective and sensitive detection of HOCl in aqueous media with PL and ECL dual-modes.

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