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Copper-Ruthenium Composite as Perspective Material for Bioelectrodes: Laser-Assisted Synthesis, Biocompatibility Study, and an Impedance-Based Cellular Biosensor as Proof of Concept.
Stupin, Daniil D; Abelit, Anna A; Mereshchenko, Andrey S; Panov, Maxim S; Ryazantsev, Mikhail N.
Affiliation
  • Stupin DD; Nanotechnology Research and Education Centre RAS, Saint Petersburg Academic University, 8/3 Khlopina Street, 194021 St. Petersburg, Russia.
  • Abelit AA; Nanotechnology Research and Education Centre RAS, Saint Petersburg Academic University, 8/3 Khlopina Street, 194021 St. Petersburg, Russia.
  • Mereshchenko AS; Institute of Chemistry, Saint Petersburg State University, 7/9 Universitetskaya nab., 199034 St. Petersburg, Russia.
  • Panov MS; Institute of Chemistry, Saint Petersburg State University, 7/9 Universitetskaya nab., 199034 St. Petersburg, Russia.
  • Ryazantsev MN; Center for Biophysical Studies, St. Petersburg State Chemical Pharmaceutical University, Professor Popov Str., 14, Lit. A, 197022 St. Petersburg, Russia.
Biosensors (Basel) ; 12(7)2022 Jul 14.
Article in En | MEDLINE | ID: mdl-35884330
ABSTRACT
Copper is an inexpensive material that has found wide application in electronics due to its remarkable electric properties. However, the high toxicity of both copper and copper oxide imposes restrictions on the application of this metal as a material for bioelectronics. One way to increase the biocompatibility of pure copper while keeping its remarkable properties is to use copper-based composites. In the present study, we explored a new copper-ruthenium composite as a potential biocompatible material for bioelectrodes. Sample electrodes were obtained by subsequent laser deposition of copper and ruthenium on glass plates from a solution containing salts of these metals. The fabricated Cu-Ru electrodes exhibit high effective area and their impedance properties can be described by simple R-CPE equivalent circuits that make them perspective for sensing applications. Finally, we designed a simple impedance cell-based biosensor using this material that allows us to distinguish between dead and alive HeLa cells.
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Full text: 1 Database: MEDLINE Main subject: Ruthenium / Biosensing Techniques Limits: Humans Language: En Year: 2022 Type: Article

Full text: 1 Database: MEDLINE Main subject: Ruthenium / Biosensing Techniques Limits: Humans Language: En Year: 2022 Type: Article