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Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines

Authorized Users Only
2022
Authors
Vujatović, Tamara B.
Vitorović - Todorović, Maja D.
Cvijetić, Ilija
Vasović, Tamara
Nikolić, Milan R.
Novaković, Irena
Bjelogrlić, Snežana
Article (Accepted Version)
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Abstract
In the present work, the α, β-double bond of the aroylacrylic acid phenylamides was suitably modified to optimize the toxicity–antiproliferative activity ratio of the resulting compounds 1 –5 . The phenylamides were modified by Michael’s addition of suitably chosen piperidine-containing fragments: 1-amino-N- benzylpiperidine ( a1 ), 4-benzylpiperidine ( a2 ), and N , N -dimethyl- N -[2-(1-piperazinyl)-ethyl]amine ( a3 ). The compounds exerted micromolar activity toward three cancer cell lines, A549, LoVo, and Skov-3, caus- ing apoptotic cell death. It was shown that the nature of the cyclic amine moiety at position C2 of the compounds is probably the primary determinant of anticancer activity toward tested cell lines and the acute toxicity toward brine shrimp ( Artemia salina ). The majority of compounds revealed the ability to vigorously induce mitochondrial superoxide anion generation in all treated cell lines, which together with cell cycle arrest at the S phase and activation of in...trinsic caspase cascade, indicates the possibility that apoptosis was triggered due to irreparable chromosomal damage by acute oxidative stress. Two deriva- tives also exerted significant antibacterial activity with one order of magnitude higher potency than chlo- ramphenicol in most of the investigated bacterial strains. Also, the drug-like properties for all compounds were estimated by available software tools.

Keywords:
phenylamides / cancer / toxicity / drug-like properties
Source:
Journal of Molecular Structure, 2022, 1250, 131702-
Publisher:
  • Elsevier
Funding / projects:
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200325 (Military Technical Institute - MTI, Belgrade) (RS-200325)
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200168 (University of Belgrade, Faculty of Chemistry) (RS-200168)
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM) (RS-200026)
Note:
  • This is the peer-reviewed version of the article: Vujatović, Tamara B., Vitorović - Todorović, Maja D., Cvijetić, Ilija, Vasović, Tamara, Nikolić, Milan R., Novaković, Irena, Bjelogrlić, Snežana, "Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-me diate d pathway in several cancer cell lines" in Journal of Molecular Structure, 1250 (2022):131702, https://doi.org/10.1016/j.molstruc.2021.131702
  • The published version: https://cer.ihtm.bg.ac.rs/handle/123456789/4853
Related info:
  • Version of
    https://cer.ihtm.bg.ac.rs/handle/123456789/4853
  • Version of
    https://doi.org/10.1016/j.molstruc.2021.131702

DOI: 10.1016/j.molstruc.2021.131702

ISSN: 0022-2860

WoS: 000718042800003

Scopus: 2-s2.0-85117959646
[ Google Scholar ]
URI
https://cer.ihtm.bg.ac.rs/handle/123456789/4857
Collections
  • Radovi istraživača / Researchers' publications
Institution/Community
IHTM
TY  - JOUR
AU  - Vujatović, Tamara B.
AU  - Vitorović - Todorović, Maja D.
AU  - Cvijetić, Ilija
AU  - Vasović, Tamara
AU  - Nikolić, Milan R.
AU  - Novaković, Irena
AU  - Bjelogrlić, Snežana
PY  - 2022
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/4857
AB  - In the present work, the α, β-double bond of the aroylacrylic acid phenylamides was suitably modified to optimize the toxicity–antiproliferative activity ratio of the resulting compounds 1 –5 . The phenylamides were modified by Michael’s addition of suitably chosen piperidine-containing fragments: 1-amino-N- benzylpiperidine ( a1 ), 4-benzylpiperidine ( a2 ), and N , N -dimethyl- N -[2-(1-piperazinyl)-ethyl]amine ( a3 ). The compounds exerted micromolar activity toward three cancer cell lines, A549, LoVo, and Skov-3, caus- ing apoptotic cell death. It was shown that the nature of the cyclic amine moiety at position C2 of the compounds is probably the primary determinant of anticancer activity toward tested cell lines and the acute toxicity toward brine shrimp ( Artemia salina ). The majority of compounds revealed the ability to vigorously induce mitochondrial superoxide anion generation in all treated cell lines, which together with cell cycle arrest at the S phase and activation of intrinsic caspase cascade, indicates the possibility that apoptosis was triggered due to irreparable chromosomal damage by acute oxidative stress. Two deriva- tives also exerted significant antibacterial activity with one order of magnitude higher potency than chlo- ramphenicol in most of the investigated bacterial strains. Also, the drug-like properties for all compounds were estimated by available software tools.
PB  - Elsevier
T2  - Journal of Molecular Structure
T1  - Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines
VL  - 1250
SP  - 131702
DO  - 10.1016/j.molstruc.2021.131702
ER  - 
@article{
author = "Vujatović, Tamara B. and Vitorović - Todorović, Maja D. and Cvijetić, Ilija and Vasović, Tamara and Nikolić, Milan R. and Novaković, Irena and Bjelogrlić, Snežana",
year = "2022",
abstract = "In the present work, the α, β-double bond of the aroylacrylic acid phenylamides was suitably modified to optimize the toxicity–antiproliferative activity ratio of the resulting compounds 1 –5 . The phenylamides were modified by Michael’s addition of suitably chosen piperidine-containing fragments: 1-amino-N- benzylpiperidine ( a1 ), 4-benzylpiperidine ( a2 ), and N , N -dimethyl- N -[2-(1-piperazinyl)-ethyl]amine ( a3 ). The compounds exerted micromolar activity toward three cancer cell lines, A549, LoVo, and Skov-3, caus- ing apoptotic cell death. It was shown that the nature of the cyclic amine moiety at position C2 of the compounds is probably the primary determinant of anticancer activity toward tested cell lines and the acute toxicity toward brine shrimp ( Artemia salina ). The majority of compounds revealed the ability to vigorously induce mitochondrial superoxide anion generation in all treated cell lines, which together with cell cycle arrest at the S phase and activation of intrinsic caspase cascade, indicates the possibility that apoptosis was triggered due to irreparable chromosomal damage by acute oxidative stress. Two deriva- tives also exerted significant antibacterial activity with one order of magnitude higher potency than chlo- ramphenicol in most of the investigated bacterial strains. Also, the drug-like properties for all compounds were estimated by available software tools.",
publisher = "Elsevier",
journal = "Journal of Molecular Structure",
title = "Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines",
volume = "1250",
pages = "131702",
doi = "10.1016/j.molstruc.2021.131702"
}
Vujatović, T. B., Vitorović - Todorović, M. D., Cvijetić, I., Vasović, T., Nikolić, M. R., Novaković, I.,& Bjelogrlić, S.. (2022). Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines. in Journal of Molecular Structure
Elsevier., 1250, 131702.
https://doi.org/10.1016/j.molstruc.2021.131702
Vujatović TB, Vitorović - Todorović MD, Cvijetić I, Vasović T, Nikolić MR, Novaković I, Bjelogrlić S. Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines. in Journal of Molecular Structure. 2022;1250:131702.
doi:10.1016/j.molstruc.2021.131702 .
Vujatović, Tamara B., Vitorović - Todorović, Maja D., Cvijetić, Ilija, Vasović, Tamara, Nikolić, Milan R., Novaković, Irena, Bjelogrlić, Snežana, "Novel derivatives of aroylacrylic acid phenylamides as inducers of apoptosis through the ROS-mediated pathway in several cancer cell lines" in Journal of Molecular Structure, 1250 (2022):131702,
https://doi.org/10.1016/j.molstruc.2021.131702 . .

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