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Optical sensor with liquid crystal sensitive element for amino acids detection

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Warianty tytułu
PL
Sensor optyczny z elementem ciek ł okrystalicznym do wykrywania aminokwasów
Języki publikacji
EN
Abstrakty
EN
The sensor of amino acids has been investigated. Ranges of linearity have been established on dependences of the wavelength of minimum transmission of optical radiation on the concentration of amino acids.
PL
Badana jest możliwość wykorzystania materiałów ciekłokrystalicznych jako czułego elementu optycznego czujnika aminokwasów. Ustalono granice liniowości na zależności długości fali minimalnej transmitancji promieniowania optycznego od stężenia aminokwasów.
Rocznik
Strony
178--181
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
  • Lublin University of Technology, Institute of Electronics and Information Technology, Nadbystrzycka 38A, 20-618 Lublin, Poland
  • Lviv Polytechnic National University, 12 S.Bandery Str., 79013 Lviv
autor
  • D.Halytsky Lviv National Medical University, 69 Pekarska Str., 79010 Lviv, Ukraine
  • Lviv Polytechnic National University, 12 S.Bandery Str., 79013 Lviv
  • Yuryi Fedkovych Chernivtchi National University,2 Kozubynskoho Str.,58012 Chernivtchi
  • D.Halytsky Lviv National Medical University, 69 Pekarska Str., 79010 Lviv
autor
  • Lviv Polytechnic National University, 12 S.Bandery Str., 79013 Lviv
autor
  • Lviv Polytechnic National University, 12 S.Bandery Str., 79013 Lviv
  • Lviv Affiliate of Europen University
Bibliografia
  • [1] Saiapina O.Y., Dzyadevych S.V., Jaffrezic-Renault N., Potentiality of the conductometric L-arginine biosensors, Biopolymers and cell, 28 (2012), No 6,. 441-448
  • [2] Ju Li, Jianquan Wang, and Leonidas G. Bachas. Biosensor for Asparagine Using a Thermostable Recombinant Asparaginase from Archaeoglobus fulgidus, Analytical Chemistry, 74(2002), No.14, 3336 - 3341
  • [3] Verma, N., K. Kumar, G. Kaur and S. Anand, Asparagine Biosensor for Leukemia Based on L-asparaginase obtained from Erwinia carotovora, National J life Sci, 4 (2007), 1-5
  • [4] Khokhani K., Ram V., Bhatt J., Khatri T., Joshi. Spectrophotometric and chromatographic analysis of amino acids present in leaves of Ailanthus excels, International Journal of ChemTech Research, 4(2012), nr 1, 389-393
  • [5] Tcherkas Y.V., Kartsova L.A., Krasnova I.N., Analysis of amino acids in human serum by isocratic reversed-phase highperformance liquid chromatography with electrochemical detection, Journal of Chromatography A, 913 (2001), 303-308
  • [6] Jia Shanshan, Luo Bin, Zhao Ying, Li Zengning Kang Weijun, Determination of Glutamine and Arginine in Human Serum by Capillary Electrophoresis with UV Detection, Asian Journal of Chemistry, 24 (2012), No.2, 565-567
  • [7] Młyńczak J., Kopczyński K., Kubicki J., Mierczyk J., Possibilities of stand-off detection of alcohol in car cabins with windows, Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska (IAPGOS), 5 (2015), No. 15, 53-58
  • [8] Neelam Verma and Kuldeep Kumar, Asparaginase-based Asparagine Biosensors and Their Application to Leukemia, by Taylor & Francis Group, LLC, (2013), 211-226
  • [9] Wang J., J. Li and LG Bachas. Biosensor for asparagine using a thermostable recombinant asparaginase from Archeoglobus fulgidus, Anal Chem, 74(2002), 3336-3341
  • [10] Verma N., Kumar K., Kaur G. and Anand S., Coli K-12 based Asparaginase-based Asparagine biosensor for leukemia. Artificial Cells, Blood Substitutes, and Biotechnology 35 (2007), 449-456
  • [11] Kudpeed Kumar, Mandeep Kataria, Neelam Verma, Plant asparaginase-based asparagines biosensor for leukemia, Artificial Cells, Nanomedicine, and Biotechnology, 41 (2013), 184-188
  • [12] Febus Reidj, G. Cruz, Clarissa M.Magsipoc. Francez Eunika B. Alinea. Marvin Edrian P.Baronia. Mohammad M. Jumahadi. Ramon G.Garcia. and Wen-Yaw Chung, Application Specific Integrated Circuit (ASIC) for Ion Sensitive Field Effect Transistor (ISFET) L-Asparagine Biosensor, IEEE Region 10 Conference (TENCON), Proceedings of the International Conference, (2016), 2698-2702
  • [13] Ali Erdogan, Suleyman Koytepe, Burhan Ates, Ismet Yilmaz, Turgay Seckin, Preparation of the L-Asparaginase-Based Biosensor With Polyimide Membrane Electrode for Monitoring L-Asparagine Levels in Leukemia, International Journal of of Polymeric Materials, 63 (2014), nr 17, 909-917
  • [14] Mohd. Mohsin, Altaf Ahmadn, Genetically-encoded nanosensor for quantitative Monitoring of methionine in bacterial and yeast cells, 59 (2014), 358-364
  • [15] Nurie Mustafi, Alexander Grünberger, Dietrich Kohlheyer, Michael Bott, Julia Frunzken, The development and application of a single-cell biosensor for the detection of L-methionine and branched-chain amino acids, Metabolic Engineering, 14 (2012), 449-457
  • [16] Tereshchenko A., Viter R., Konup I., Ivanitsa V., Geveliuk S., Ishkov Y., Smyntyna V., TiO2 Optical Sensor for Amino Acid Detection, Proc. of SPIE, (2013) Vol.9032 90320T, 1
  • [17] Vistak M., Dmytrah V., Mykytyuk Z., Sushynskyi O., Barylo G., Prysiazhniuk V., Horbenko Y., Optical triglycerides biosensor on the base of cholesteric liquid crystals, 2017 2nd International Conference on Advanced Information and Communication Technologies (AICT), (2017), 31-34
  • [18] Vistak M, Dmytrah V., Fafula R., Diskovskyi I., Halytsky D., Mykytyuk Z., Sushynskyi O., Barylo G., Horbenko Y., Liquid Crystals as an Active Medium of Enzymes Optical Sensors, NAP-2017, 2017 IEEE 7th International Conference on Nanomaterials: Applications and Properties (NAP), (2017), 04NB13-1 - 04NB13-4
  • [19] Vistak M., Mykytyuk Z., Polishuk V., Vezyr F., Cholestericnematic mixture as sensitive medium of the optical sensor of amino acids. Processes in Organic and Inorganic Materials(ISEPOM-11), (2018), 83
  • [20] Barylo G.I., Holyaka R.L., Virt V.V., Vezyr F.F., Parametric analysis of synchronous detector devices of impedance spectroscopy, Харьковский национальный университет радиоэлектроники. Научно-технический журнал «Прикладная радиоэлектроника», 16, № 1, 2. (2017), 41-45
  • [21] Mykytyuk Z., Barylo G., Virt V., Vistak M., Diskovskyi I., Rudyak Y., Optoelectronic Sensor Based on Liquid Cryst,al Substances for the Monitoring of Amino Acids, International Scientific- Practical Connference “Problems of Infocommunications Science and Technology", (2018), 177-181
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d0efaedf-817e-44f4-9e0f-4c36471b4d33
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