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Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis

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2015
3145.pdf (925.3Kb)
Authors
Tolić, Ljiljana
Lović, Jelena
Petrović, Slobodan
Mijin, Dušan
Grujić, Svetlana
Laušević, Mila
Avramov-Ivić, Milka
Article (Published version)
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Abstract
Anisomycin is an immunosuppressant in low doses ( lt 0.1 mu M) with possible application in treatment of some autoimmune diseases and in inhibiting transplantation rejection. Anisomycin suppresses malignant tumor cell growth and affects memory. For the first time it was the subject of the electrochemical investigations by cyclic voltammetry and square wave voltammetry on gold electrode in 0.05 M NaHCO3 using its electrochemical activity. The cyclic voltammetry experiments at different sweep rates show that electrochemical process is irreversible and diffusion controlled. Based on square wave voltammetry measurements, the calculated values of LOD and LOQ were 1 and 4 nM (in the absence of biological fluid), as well as 2 and 6 nM (in the presence of spiked urine) indicating the high sensitivity of the proposed electroanalytical method. High performance liquid chromatography-tandem mass spectrometry was a reference method for quantification of anisomycin and served for structural identifi...cation of its hydrolysis product (deacetylanisomycin).

Keywords:
Anisomycin / Electroactivity / SWV / HPLC-MS/MS
Source:
Electrochemistry Communications, 2015, 58, 20-24
Publisher:
  • Elsevier Science Inc, New York
Funding / projects:
  • Study of the Synthesis, Structure and Activity of Natural and Synthetic Organic Compounds (RS-172013)
  • New approach in designing materials for energy conversion and energy storage systems (RS-172060)
  • Development and Application of Methods and Materials for Monitoring New Organic Contaminants, Toxic Compounds and Heavy Metals (RS-172007)

DOI: 10.1016/j.elecom.2015.05.017

ISSN: 1388-2481

WoS: 000360514600005

Scopus: 2-s2.0-84934888024
[ Google Scholar ]
2
3
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3148
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
  • Radovi istraživača (Inovacioni centar) / Researchers’ publications (Innovation Centre)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Tolić, Ljiljana
AU  - Lović, Jelena
AU  - Petrović, Slobodan
AU  - Mijin, Dušan
AU  - Grujić, Svetlana
AU  - Laušević, Mila
AU  - Avramov-Ivić, Milka
PY  - 2015
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3148
AB  - Anisomycin is an immunosuppressant in low doses ( lt 0.1 mu M) with possible application in treatment of some autoimmune diseases and in inhibiting transplantation rejection. Anisomycin suppresses malignant tumor cell growth and affects memory. For the first time it was the subject of the electrochemical investigations by cyclic voltammetry and square wave voltammetry on gold electrode in 0.05 M NaHCO3 using its electrochemical activity. The cyclic voltammetry experiments at different sweep rates show that electrochemical process is irreversible and diffusion controlled. Based on square wave voltammetry measurements, the calculated values of LOD and LOQ were 1 and 4 nM (in the absence of biological fluid), as well as 2 and 6 nM (in the presence of spiked urine) indicating the high sensitivity of the proposed electroanalytical method. High performance liquid chromatography-tandem mass spectrometry was a reference method for quantification of anisomycin and served for structural identification of its hydrolysis product (deacetylanisomycin).
PB  - Elsevier Science Inc, New York
T2  - Electrochemistry Communications
T1  - Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis
EP  - 24
SP  - 20
VL  - 58
DO  - 10.1016/j.elecom.2015.05.017
ER  - 
@article{
author = "Tolić, Ljiljana and Lović, Jelena and Petrović, Slobodan and Mijin, Dušan and Grujić, Svetlana and Laušević, Mila and Avramov-Ivić, Milka",
year = "2015",
abstract = "Anisomycin is an immunosuppressant in low doses ( lt 0.1 mu M) with possible application in treatment of some autoimmune diseases and in inhibiting transplantation rejection. Anisomycin suppresses malignant tumor cell growth and affects memory. For the first time it was the subject of the electrochemical investigations by cyclic voltammetry and square wave voltammetry on gold electrode in 0.05 M NaHCO3 using its electrochemical activity. The cyclic voltammetry experiments at different sweep rates show that electrochemical process is irreversible and diffusion controlled. Based on square wave voltammetry measurements, the calculated values of LOD and LOQ were 1 and 4 nM (in the absence of biological fluid), as well as 2 and 6 nM (in the presence of spiked urine) indicating the high sensitivity of the proposed electroanalytical method. High performance liquid chromatography-tandem mass spectrometry was a reference method for quantification of anisomycin and served for structural identification of its hydrolysis product (deacetylanisomycin).",
publisher = "Elsevier Science Inc, New York",
journal = "Electrochemistry Communications",
title = "Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis",
pages = "24-20",
volume = "58",
doi = "10.1016/j.elecom.2015.05.017"
}
Tolić, L., Lović, J., Petrović, S., Mijin, D., Grujić, S., Laušević, M.,& Avramov-Ivić, M.. (2015). Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis. in Electrochemistry Communications
Elsevier Science Inc, New York., 58, 20-24.
https://doi.org/10.1016/j.elecom.2015.05.017
Tolić L, Lović J, Petrović S, Mijin D, Grujić S, Laušević M, Avramov-Ivić M. Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis. in Electrochemistry Communications. 2015;58:20-24.
doi:10.1016/j.elecom.2015.05.017 .
Tolić, Ljiljana, Lović, Jelena, Petrović, Slobodan, Mijin, Dušan, Grujić, Svetlana, Laušević, Mila, Avramov-Ivić, Milka, "Investigation of electrochemical behavior of anisomycin on gold electrode followed by HPLC-MS/MS analysis" in Electrochemistry Communications, 58 (2015):20-24,
https://doi.org/10.1016/j.elecom.2015.05.017 . .

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