Высокоэффективные лактатные биосенсоры на основе инженерии иммобилизованной лактатоксидазы (1105559), страница 25
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2004. T.91, № 1. C. 1-6.88. Hirst N. A., Hazelwood L. D., Jayne D. G., Millner P. A. An amperometric lactatebiosensor using H2O2 reduction via a Prussian Blue impregnated poly(ethyleneimine)surface on screen printed carbon electrodes to detect anastomotic leak and sepsis // Sens.Actuators, B.
2013. T. 186. C. 674-680.89. Yashina E. I., Borisova A. V., Karyakina E. E., Shchegolikhina O. I., Vagin M. Y.,Sakharov D. A., Tonevitsky A. G., Karyakin A. A. Sol-gel immobilization of lactateoxidase from organic solvent: toward the advanced lactate biosensor // Anal. Chem..2010. T. 82, № 5. C. 1601-1604.90. Nesakumar N., Sethuraman S., Krishnan U. M., Rayappan J. B.
B. Fabrication oflactate biosensor based on lactate dehydrogenase immobilized on cerium oxidenanoparticles // J. Colloid Interface Sci. 2013. T. 410, № 10. C. 158-164.91. Nesakumar N., Thandavan K., Sethuraman S., Krishnan U. M., Rayappan J. B. B. Anelectrochemical biosensor with nanointerface for lactate detection based on lactatedehydrogenase immobilized on zinc oxide nanorods // J.
Colloid Interface Sci. 2014. T.414, № 11. C. 90-96.92. Jia W. Z., Bandodkar A. J., Valdes-Ramirez G., Windmiller J. R., Yang Z. J.,Ramirez J., Chan G., Wang J. Electrochemical tattoo biosensors for real-timenoninvasive lactate monitoring in human perspiration // Anal. Chem.. 2013. T. 85, № 14.C. 6553-6560.93. Dutkiewicz E. P., Lin J.-D., Tseng T.-W., Wang Y.-S., Urban P. L. HydrogelMicropatches for sampling and profiling skin metabolites // Anal. Chem. 2014.
T. 79, №14. C. 653-660.94. Karyakin A. A. Prussian Blue and its analogues: Electrochemistry and analyticalapplications // Electroanalysis. 2001. T. 13, № 10. C. 813-819.95. Turner A. Biosensors: fundamentals and applications. 1987. C. 245-251.96. Wang J. Electrochemical biosensors: towards point-of-care cancer diagnostics //Biosens. Bioelectron. 2006.
T. 21, № 10. C. 1887-1892.97. Тернер Э., Карубе И., Уилсон Д. Биосенсоры: основы и приложения // М.: Мир.1992. C. 212-218.98. Hansson K. M., Vikinge T. P., Rånby M., Tengvall P., Lundström I., Johansen K.,Lindahl T. L. Surface plasmon resonance (SPR) analysis of coagulation in whole bloodwith application in prothrombin time assay // Biosen. Bioelectron.
1999. T. 14, № 8. C.671-682.99. Karyakin A. A., Gitelmacher O. V., Karyakina E. E. A high-sensitive glucoseamperometric biosensor based on Prussian Blue modified electrodes // Anal. Lett. 1994.T. 27, № 15. C. 2861-2869.156100. Walsh D. A., Fernández J. L., Bard A. J. Rapid screening of bimetallicelectrocatalysts for oxygen reduction in acidic media by scanning electrochemicalmicroscopy // J.
Electrochem. Soc. 2006. T. 153, № 6. C. 99-103.101. Ferapontova E. E., Shleev S., Ruzgas T., Stoica L., Christenson A., Tkac J.,Yaropolov A. I., Gorton L., Palacek E., Scheller F. W. Electrochemistry of nucleic acidsand proteins // Electrochem. Sens. Genom. Proteom. 2005. C. 517-598.102. Zhang Y., Wilson G. S. Electrochemical oxidation of H2O2 on Pt and Pt + Irelectrodes in physiological buffer and its applicability to H2O2-based biosensors // J.Electroanal. Chem. 1993.
T. 345, № 1-2. C. 253-271.103. Karyakin A. A., Karyakina E. E. Prussian Blue-based 'artificial peroxidase' as atransducer for hydrogen peroxide detection. Application to biosensors // Sens. Actuators,B. 1999. T. 57, № 1-3. C. 268-273.104. Е.Е. Карякина, Карякин А. А. Электрохимические биосенсоры на основепроводящих полимеров и электроактивных поликристаллов. / Биохим. методыанализа. М.: «Наука». 2010. C.
93-138.105. Evans S. A. G., Elliott J.M., Andrews L.M., Bartlett P.N., Doyle P.J., Denuault G.Detection of hydrogen peroxide at mesoporous platinum microelectrodes // Anal. Chem.2002. T. 74. C. 1322-1326.106. Kulys J., Schmid R.D. Mediatorless peroxidase electrode and preparation ofbienzyme sensors // Bioelectrochem. Bioenerget. 1990. T. 24. C. 305-315.107. Karyakin A. A., Karyakina, E.E. Electroanalitical applications Prussian Blue and itsanalogs // Russ. Chem.
Bull., International Edition. 2001. T. 50. C. 1-7.108. Karyakin A. A., Gitelmacher O. V., Karyakina E. E. Prussian blue-based firstgeneration biosensor. A sensitive amperometric electrode for glucose // Anal. Chem.1995. T. 67, № 14. C. 2419-2423.109. Lin M. S., Shih W. C. Chromium hexacyanoferrate based glucose biosensor // Anal.Chim.
Acta. 1999. T. 381, № 2. C. 183-189.110. Itaya K., Uchida I., Neff V. D. Electrochemistry of polynuclear transition metalcyanides: Prussian blue and its analogues // Acc. Chem. Res. 1986. Т. 19. №. 6. С. 162168.111. Neff V.D. Electrochemical oxidation and reduction of thin films of Prussian Blue //J. Electrochem. Soc. 1978. T. 128.
C. 886-887.112. Itaya K., Ataka T., Toshima S. Spectroelectrochemistry and electrochemicalpreparation method of Prussian blue modified electrodes // J. Am. Chem. Soc. 1982. T.104, № 18. C. 4767-4772.113. Ibers J. A., Davidson N. On the Interaction between Hexacyanatoferrate (III) Ionsand (a) Hexacyanatoferrate (II) or (b) Iron (III) Ions1a, 2 // J. Am. Chem. Soc. 1951. T.73, № 1.
C. 476-478.114. Karyakin A. A., Karyakina E. E., Gorton L. Prussian-Blue-based amperometricbiosensors in flow-injection analysis // Talanta. 1996. T. 43, № 9. C. 1597-1606.157115. Itaya K., Shoji N., Uchida I. Catalysis of the reduction of molecular oxygen to waterat Prussian blue modified electrodes // J. Am. Chem. Soc. 1984. T. 106, № 12. C. 34233429.116.
Karyakin A. A., Karyakina E. E., Gorton L. The electrocatalytic activity of Prussianblue in hydrogen peroxide reduction studied using a wall-jet electrode with continuousflow // J. Electroanal. Chem. 1998. T. 456, № 1–2. C. 97-104.117. Crumbliss A. L., Lugg P. S., Morosoff N. Alkali metal cation effects in a Prussianblue surface modified electrode // Inorg. Chem. 1984. T. 23, № 26. C. 4701-4708.118. Варфоломеев С.
Д. Химическая энзимология. М.: Изд. центр "Академия".2005. C. 115-140.119. Jaffari S. A., Turner A. P. F. Novel hexacyanoferrate (III) modified graphite discelectrodes and their application in enzyme electrodes—Part I // Biosens. Bioelectron.1997. T. 12, № 1. C. 1-9.120. Zhang Y., Wilson G.
S. Electrochemical oxidation of H2O2 on Pt and Pt+ Irelectrodes in physiological buffer and its applicability to H2O2-based biosensors // J.Electroanal. Chem. 1993. T. 345, № 1. C. 253-271.121. Milardović S., Kruhak I., Iveković D., Rumenjak V., Tkalčec M., Grabarić B. S.Glucose determination in blood samples using flow injection analysis and anamperometric biosensor based on glucose oxidase immobilized on hexacyanoferratemodified nickel electrode // Anal.
Chim. Acta. 1997. T. 350, № 1. C. 91-96.122. Milardović S., Grabarić Z., Tkalčec M., Rumenjak V. Determination of oxalate inurine, using an amperometric biosensor with oxalate oxidase immobilized on the surfaceof a chromium hexacyanoferrate-modified graphite electrode // J. of AOAC Intern. 2000.T. 83, № 5. C. 1212-1217.123. Karyakin A. A., Karyakina E. E., Gorton L. Amperometric biosensor for glutamateusing Prussian Blue-based ―Artificial Peroxidase‖ as a transducer for hydrogen peroxide// Anal. Chem. 2000. T.
72, № 7. C. 1720-1723.124. Бидей С., Броделиус П., Кабрал И. Иммобилизованные клетки и ферменты.Методы. 1988. C. 96-105.125. Thevenot D. R., Toth K., Durst R. A., Wilson G. S. Electrochemical biosensors:recommended definitions and classification // Pure and Appl.
Chem. 1999. T. 71, № 12.C. 2333-2348.126. Cui G., Kim S., Paeng K. Disposable amperometric sensor screen printed on anitrocellulose strip: a glucose biosensor employing lead oxide as an interferenceremoving agent // Anal. Chem. 2000. T. 72. C.
1925-1929.127. Turner A., Karube I., Wilson G. Biosensors. Fundamentas and applications //Oxford Univ. Press, Oxford. 1987. C. 200-215.128. Pandey P., Upadhyay S., Pathak H. A. New glucose biosensor based on sandwichconfiguration of organically modified sol-gel glass // Electroanal.
1998. T. 11. C. 59-64.129. Fu G., Yue X., Dai Z. Glucose biosensor based on covalent immobilization ofenzyme in sol–gel composite film combined with Prussian blue/carbon nanotubes hybrid// Biosen. Bioelectron. 2011. T. 26, № 9. C. 3973-3976.158130. Dong S., Kuwana T. Cobalt-porphyrin-Nafion film on carbon microarray electrodeto monitor oxygen for enzyme analysis for glucose // Electroanal.