RatioCAT - Rational Design of Multifunctional Electrode Interfaces for Efficient Electrocatalytic Hydrogen Production

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Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA

Rupar, Jelena; Aleksić, Mara; Dobričić, Vladimir; Čudina, Olivera; Brborić, Jasmina; Gavrilov, Nemanja

(Society of Physical Chemists of Serbia, 2021)

TY  - CONF
AU  - Rupar, Jelena
AU  - Aleksić, Mara
AU  - Dobričić, Vladimir
AU  - Čudina, Olivera
AU  - Brborić, Jasmina
AU  - Gavrilov, Nemanja
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5482
AB  - Oxidation of newly synthesized acridine derivatives was studied using cyclic voltammetry at glassy
carbon electrode. Oxidation occurs as irreversible, diffusion-controlled process at pH 4.6 for
compounds 1-3 and as adsorption controlled process for compound 4. The interaction between newly
synthesized acridine compounds (compounds 1-4) and dsDNA was studied using a multilayer dsDNA
biosensor applying square wave voltammetry. Peak current corresponding to deoxyadenosine
decreased after 30 minutes of interaction suggesting interaction with dsDNA.
PB  - Society of Physical Chemists of Serbia
C3  - Physical Chemistry 2021 (Proceedings), 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry, September 20-24, 2021. Belgrade, Serbia
T1  - Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA
VL  - I
SP  - 294
EP  - 297
UR  - https://hdl.handle.net/21.15107/rcub_farfar_5482
ER  - 
@conference{
author = "Rupar, Jelena and Aleksić, Mara and Dobričić, Vladimir and Čudina, Olivera and Brborić, Jasmina and Gavrilov, Nemanja",
year = "2021",
abstract = "Oxidation of newly synthesized acridine derivatives was studied using cyclic voltammetry at glassy
carbon electrode. Oxidation occurs as irreversible, diffusion-controlled process at pH 4.6 for
compounds 1-3 and as adsorption controlled process for compound 4. The interaction between newly
synthesized acridine compounds (compounds 1-4) and dsDNA was studied using a multilayer dsDNA
biosensor applying square wave voltammetry. Peak current corresponding to deoxyadenosine
decreased after 30 minutes of interaction suggesting interaction with dsDNA.",
publisher = "Society of Physical Chemists of Serbia",
journal = "Physical Chemistry 2021 (Proceedings), 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry, September 20-24, 2021. Belgrade, Serbia",
title = "Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA",
volume = "I",
pages = "294-297",
url = "https://hdl.handle.net/21.15107/rcub_farfar_5482"
}
Rupar, J., Aleksić, M., Dobričić, V., Čudina, O., Brborić, J.,& Gavrilov, N.. (2021). Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA. in Physical Chemistry 2021 (Proceedings), 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry, September 20-24, 2021. Belgrade, Serbia
Society of Physical Chemists of Serbia., I, 294-297.
https://hdl.handle.net/21.15107/rcub_farfar_5482
Rupar J, Aleksić M, Dobričić V, Čudina O, Brborić J, Gavrilov N. Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA. in Physical Chemistry 2021 (Proceedings), 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry, September 20-24, 2021. Belgrade, Serbia. 2021;I:294-297.
https://hdl.handle.net/21.15107/rcub_farfar_5482 .
Rupar, Jelena, Aleksić, Mara, Dobričić, Vladimir, Čudina, Olivera, Brborić, Jasmina, Gavrilov, Nemanja, "Electrochemical oxidation and interaction of newly synthesized acridine derivatives with DNA" in Physical Chemistry 2021 (Proceedings), 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry, September 20-24, 2021. Belgrade, Serbia, I (2021):294-297,
https://hdl.handle.net/21.15107/rcub_farfar_5482 .