Synthesis of novel fluorescent probe Tb(III)-7-carboxymethoxy-4-methylcoumarin complex for sensing of DNA
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[1] Karthik Vishwanath,et al. Fluorescence Spectroscopy In Vivo , 2011 .
[2] H. Azab,et al. Synthesis of Novel Eu(III) Luminescent Probe Based on 9- Acridinecarboxylic Acid Skelton for Sensing of ds-DNA , 2011, Journal of Fluorescence.
[3] B. H. Hussein. Spectroscopic studies of 7, 8-dihydroxy-4-methylcoumarin and its interaction with bovine serum albumin , 2011 .
[4] M. El-abadelah,et al. Synthesis, and Antitumor Activity of Some N1-(Coumarin-7-yl) Amidrazones and Related Congeners , 2011, Molecules.
[5] G. Melagraki,et al. Synthesis and evaluation of the antioxidant and anti-inflammatory activity of novel coumarin-3-aminoamides and their alpha-lipoic acid adducts. , 2009, European journal of medicinal chemistry.
[6] S. Biswal,et al. Antioxidant, antiinflammatory and antiinvasive activities of biopolyphenolics , 2008 .
[7] Zhoujian Hu,et al. Synchronous fluorescence determination of DNA based on the interaction between methylene blue and DNA. , 2007, Analytica chimica acta.
[8] A. Rodger,et al. Synthetic metallomolecules as agents for the control of DNA structure. , 2007, Chemical Society reviews.
[9] Wei-ping Liu,et al. Enoxacin-Tb3+ complex as an environmentally friendly fluorescence probe for DNA and its application. , 2007, Talanta.
[10] Wen Zhou,et al. Determination of nucleic acids based on the fluorescence quenching of Hoechst 33258 at pH 4.5 , 2006 .
[11] Changying Guo,et al. The Sensitive Determination of Nucleic Acids Using Fluorescence Enhancement of Eu3+-BenzoylacetoneCetyltrimethylammonium Bromide-Nucleic Acid System , 2005, Journal of Fluorescence.
[12] Wei-ping Liu,et al. Sensitive determination of DNA based on the interaction between norfloxacin-Tb3+ complex and DNA. , 2005, Journal of agricultural and food chemistry.
[13] I. Hemmilä,et al. Progress in Lanthanides as Luminescent Probes , 2005, Journal of Fluorescence.
[14] Yate-Ching Yuan,et al. Biochemical and Biological Characterization of a Novel Anti-aromatase Coumarin Derivative* , 2004, Journal of Biological Chemistry.
[15] Y. Wada,et al. Novel luminescent Eu(III) complex with remarkably narrow emission band , 2004 .
[16] R. O’Kennedy,et al. Studies on coumarins and coumarin-related compounds to determine their therapeutic role in the treatment of cancer. , 2004, Current pharmaceutical design.
[17] S. Takenaka,et al. Enhanced fluorescence of the Eu3+-naphthalenediimide derivative-phenanthroline ternary complex and the determination of DNA , 2004 .
[18] Shujuan Zhuo,et al. Fluorescence enhancement method for the determination of nucleic acids using cationic cyanine as a fluorescence probe. , 2004, The Analyst.
[19] Rutao Liu,et al. Study of the interaction of nucleic acids with acridine orange-CTMAB and determination of nucleic acids at nanogram levels based on the enhancement of resonance light scattering , 2003 .
[20] B. Cosimelli,et al. A new convenient route to 2-oxoethoxycoumarins: key intermediates in the synthesis of natural products , 2002 .
[21] Rutao Liu,et al. Study of the interaction between nucleic acid and oxytetracycline–Eu3+ and its analytical application , 2002 .
[22] A. Karaliota,et al. Synthesis and characterization of a binuclear coumarin-3-carboxylate copper(II) complex. , 2001, Journal of inorganic biochemistry.
[23] David E. Graves and Luminita M. Velea. Intercalative Binding of Small Molecules to Nucleic Acids , 2000 .
[24] D. H. Li,et al. Application of magdala red as a fluorescence probe in the determination of nucleic acids , 2000, Fresenius' journal of analytical chemistry.
[25] Rutao Liu,et al. Enhanced fluorescence of the terbium-gadolinium-nucleic acids system and the determination of nucleic acids , 2000 .
[26] Huang-Hao Yang,et al. Determination of nucleic acids using phosphin 3R as a fluorescence probe , 1999 .
[27] Xia Wu,et al. Study of the reaction between nucleic acids and Tb-BPMPHD-CTMAB complex and its analytical application , 1999 .
[28] C. Turro,et al. Energy Transfer from Nucleic Acids to Tb(III): Selective Emission Enhancement by Single DNA Mismatches , 1999 .
[29] Yang Zhao,et al. Interaction of a novel red-region fluorescent probe, Nile blue, with DNA and its application to nucleic acids assay. , 1999, The Analyst.
[30] Qing-Zhi Zhu,et al. A Novel Fluorometric Method for DNA and RNA Determination , 1997 .
[31] Wen-You Li,et al. Application of vitamin K3 as a photochemical fluorescence probe in the determination of nucleic acids , 1997 .
[32] A. S. Duhaiman. Inhibition of ζ-crystallin by coumarins: A structure-activity study , 1996 .
[33] Y. Ci,et al. Selective Determination of DNA by Its Enhancement Effect on the Fluorescence of the Eu3+-Tetracycline Complex , 1995 .
[34] J. Chaires,et al. Tris(phenanthroline)ruthenium(II) enantiomer interactions with DNA: mode and specificity of binding. , 1993, Biochemistry.
[35] Y. Ci,et al. Fluorescence reaction of terbium(III) with nucleic acids in the presence of phenanthroline , 1991 .
[36] K. Paigen,et al. A simple, rapid, and sensitive DNA assay procedure. , 1980, Analytical biochemistry.
[37] C. Paoletti,et al. A new fluorometric method for RNA and DNA determination. , 1966, Analytical biochemistry.
[38] F. P. Laming,et al. COMPLEXES OF 1.10-PHENANTHROLINE WITH LANTHANIDE CHLORIDES AND THIOCYANATES , 1964 .
[39] S. Udenfriend,et al. Fluorescence characteristics of purines, pyrimidines, and their derivatives: measurement of guanine in nucleic acid hydrolyzates. , 1962, Analytical biochemistry.
[40] J. Marmur. A procedure for the isolation of deoxyribonucleic acid from micro-organisms , 1961 .