Aleksic, Ivana

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  • Aleksic, Ivana (3)
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Author's Bibliography

N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa

Aleksic, Ivana; Jeremić, Jelena; Milivojevic, Dusan; Ilić-Tomić, Tatjana; Šegan, Sandra; Zlatović, Mario; Opsenica, Dejan; Senerovic, Lidija

(American Chemical Society (ACS), 2019)

TY  - JOUR
AU  - Aleksic, Ivana
AU  - Jeremić, Jelena
AU  - Milivojevic, Dusan
AU  - Ilić-Tomić, Tatjana
AU  - Šegan, Sandra
AU  - Zlatović, Mario
AU  - Opsenica, Dejan
AU  - Senerovic, Lidija
PY  - 2019
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3198
AB  - Pseudomonas aeruginosa is a leading cause of nosocomial infections that are becoming increasingly difficult to treat due to the occurrence of antibiotic resistant strains. Since P. aeruginosa virulence is controlled through quorum sensing, small molecule treatments inhibiting quorum sensing signaling pathways provide a promising therapeutic option. Consequently, we synthesized a series of N-octaneamino-4-aminoquinoline derivatives to optimize this chemotype’s antivirulence activity against P. aeruginosa via inhibition of pyocyanin production. The most potent derivative, which possesses a benzofuran substituent, provided effective inhibition of pyocyanin production (IC50 = 12 μM), biofilm formation (BFIC50 = 50 μM), and motility. Experimentally, the compound’s activity is achieved through competitive inhibition of PqsR, and structure–activity data were rationalized using molecular docking studies.
PB  - American Chemical Society (ACS)
T2  - ACS Chemical Biology
T1  - N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa
VL  - 14
IS  - 12
SP  - 2800
EP  - 2809
DO  - 10.1021/acschembio.9b00682
ER  - 
@article{
author = "Aleksic, Ivana and Jeremić, Jelena and Milivojevic, Dusan and Ilić-Tomić, Tatjana and Šegan, Sandra and Zlatović, Mario and Opsenica, Dejan and Senerovic, Lidija",
year = "2019",
abstract = "Pseudomonas aeruginosa is a leading cause of nosocomial infections that are becoming increasingly difficult to treat due to the occurrence of antibiotic resistant strains. Since P. aeruginosa virulence is controlled through quorum sensing, small molecule treatments inhibiting quorum sensing signaling pathways provide a promising therapeutic option. Consequently, we synthesized a series of N-octaneamino-4-aminoquinoline derivatives to optimize this chemotype’s antivirulence activity against P. aeruginosa via inhibition of pyocyanin production. The most potent derivative, which possesses a benzofuran substituent, provided effective inhibition of pyocyanin production (IC50 = 12 μM), biofilm formation (BFIC50 = 50 μM), and motility. Experimentally, the compound’s activity is achieved through competitive inhibition of PqsR, and structure–activity data were rationalized using molecular docking studies.",
publisher = "American Chemical Society (ACS)",
journal = "ACS Chemical Biology",
title = "N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa",
volume = "14",
number = "12",
pages = "2800-2809",
doi = "10.1021/acschembio.9b00682"
}
Aleksic, I., Jeremić, J., Milivojevic, D., Ilić-Tomić, T., Šegan, S., Zlatović, M., Opsenica, D.,& Senerovic, L.. (2019). N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa. in ACS Chemical Biology
American Chemical Society (ACS)., 14(12), 2800-2809.
https://doi.org/10.1021/acschembio.9b00682
Aleksic I, Jeremić J, Milivojevic D, Ilić-Tomić T, Šegan S, Zlatović M, Opsenica D, Senerovic L. N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa. in ACS Chemical Biology. 2019;14(12):2800-2809.
doi:10.1021/acschembio.9b00682 .
Aleksic, Ivana, Jeremić, Jelena, Milivojevic, Dusan, Ilić-Tomić, Tatjana, Šegan, Sandra, Zlatović, Mario, Opsenica, Dejan, Senerovic, Lidija, "N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa" in ACS Chemical Biology, 14, no. 12 (2019):2800-2809,
https://doi.org/10.1021/acschembio.9b00682 . .
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20
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N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa

Aleksic, Ivana; Jeremić, Jelena; Milivojevic, Dusan; Ilić-Tomić, Tatjana; Šegan, Sandra; Zlatović, Mario; Opsenica, Dejan; Senerovic, Lidija

(American Chemical Society (ACS), 2019)

TY  - JOUR
AU  - Aleksic, Ivana
AU  - Jeremić, Jelena
AU  - Milivojevic, Dusan
AU  - Ilić-Tomić, Tatjana
AU  - Šegan, Sandra
AU  - Zlatović, Mario
AU  - Opsenica, Dejan
AU  - Senerovic, Lidija
PY  - 2019
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3198
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3341
AB  - Pseudomonas aeruginosa is a leading cause of nosocomial infections that are becoming increasingly difficult to treat due to the occurrence of antibiotic resistant strains. Since P. aeruginosa virulence is controlled through quorum sensing, small molecule treatments inhibiting quorum sensing signaling pathways provide a promising therapeutic option. Consequently, we synthesized a series of N-octaneamino-4-aminoquinoline derivatives to optimize this chemotype’s antivirulence activity against P. aeruginosa via inhibition of pyocyanin production. The most potent derivative, which possesses a benzofuran substituent, provided effective inhibition of pyocyanin production (IC50 = 12 μM), biofilm formation (BFIC50 = 50 μM), and motility. Experimentally, the compound’s activity is achieved through competitive inhibition of PqsR, and structure–activity data were rationalized using molecular docking studies.
PB  - American Chemical Society (ACS)
T2  - ACS Chemical Biology
T1  - N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa
VL  - 14
IS  - 12
SP  - 2800
EP  - 2809
DO  - 10.1021/acschembio.9b00682
ER  - 
@article{
author = "Aleksic, Ivana and Jeremić, Jelena and Milivojevic, Dusan and Ilić-Tomić, Tatjana and Šegan, Sandra and Zlatović, Mario and Opsenica, Dejan and Senerovic, Lidija",
year = "2019",
abstract = "Pseudomonas aeruginosa is a leading cause of nosocomial infections that are becoming increasingly difficult to treat due to the occurrence of antibiotic resistant strains. Since P. aeruginosa virulence is controlled through quorum sensing, small molecule treatments inhibiting quorum sensing signaling pathways provide a promising therapeutic option. Consequently, we synthesized a series of N-octaneamino-4-aminoquinoline derivatives to optimize this chemotype’s antivirulence activity against P. aeruginosa via inhibition of pyocyanin production. The most potent derivative, which possesses a benzofuran substituent, provided effective inhibition of pyocyanin production (IC50 = 12 μM), biofilm formation (BFIC50 = 50 μM), and motility. Experimentally, the compound’s activity is achieved through competitive inhibition of PqsR, and structure–activity data were rationalized using molecular docking studies.",
publisher = "American Chemical Society (ACS)",
journal = "ACS Chemical Biology",
title = "N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa",
volume = "14",
number = "12",
pages = "2800-2809",
doi = "10.1021/acschembio.9b00682"
}
Aleksic, I., Jeremić, J., Milivojevic, D., Ilić-Tomić, T., Šegan, S., Zlatović, M., Opsenica, D.,& Senerovic, L.. (2019). N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa. in ACS Chemical Biology
American Chemical Society (ACS)., 14(12), 2800-2809.
https://doi.org/10.1021/acschembio.9b00682
Aleksic I, Jeremić J, Milivojevic D, Ilić-Tomić T, Šegan S, Zlatović M, Opsenica D, Senerovic L. N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa. in ACS Chemical Biology. 2019;14(12):2800-2809.
doi:10.1021/acschembio.9b00682 .
Aleksic, Ivana, Jeremić, Jelena, Milivojevic, Dusan, Ilić-Tomić, Tatjana, Šegan, Sandra, Zlatović, Mario, Opsenica, Dejan, Senerovic, Lidija, "N-benzyl derivatives of long-chained 4-Amino-7-chloro-quionolines as inhibitors of pyocyanin production in Pseudomonas aeruginosa" in ACS Chemical Biology, 14, no. 12 (2019):2800-2809,
https://doi.org/10.1021/acschembio.9b00682 . .
1
20
9
21

Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents

Senerovic, Lidija; Opsenica, Dejan; Moric, Ivana; Aleksic, Ivana; Spasić, Marta; Vasiljevic, Branka

(Springer Nature, 2019)

TY  - CHAP
AU  - Senerovic, Lidija
AU  - Opsenica, Dejan
AU  - Moric, Ivana
AU  - Aleksic, Ivana
AU  - Spasić, Marta
AU  - Vasiljevic, Branka
PY  - 2019
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3094
AB  - Infective diseases have become health threat of
a global proportion due to appearance and
spread of microorganisms resistant to majority
of therapeutics currently used for their treatment.
Therefore, there is a constant need for
development of new antimicrobial agents, as
well as novel therapeutic strategies.
Quinolines and quinolones, isolated from
plants, animals, and microorganisms, have
demonstrated numerous biological activities
such as antimicrobial, insecticidal, antiinflammatory,
antiplatelet, and antitumor. For
more than two centuries quinoline/quinolone
moiety has been used as a scaffold for drug
development and even today it represents an
inexhaustible inspiration for design and development
of novel semi-synthetic or synthetic
agents exhibiting broad spectrum of
bioactivities. The structural diversity of
synthetized compounds provides high and
selective activity attained through different
mechanisms of action, as well as low toxicity
on human cells. This review describes quinoline
and quinolone derivatives with
antibacterial, antifungal, anti-virulent,
antiviral, and anti-parasitic activities with the
focus on the last 10 years literature.
PB  - Springer Nature
T2  - Advances in Experimental Medicine and Biology - Advances in Microbiology, Infectious Diseases and Public Health
T1  - Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents
DO  - 10.1007/5584_2019_428
ER  - 
@inbook{
author = "Senerovic, Lidija and Opsenica, Dejan and Moric, Ivana and Aleksic, Ivana and Spasić, Marta and Vasiljevic, Branka",
year = "2019",
abstract = "Infective diseases have become health threat of
a global proportion due to appearance and
spread of microorganisms resistant to majority
of therapeutics currently used for their treatment.
Therefore, there is a constant need for
development of new antimicrobial agents, as
well as novel therapeutic strategies.
Quinolines and quinolones, isolated from
plants, animals, and microorganisms, have
demonstrated numerous biological activities
such as antimicrobial, insecticidal, antiinflammatory,
antiplatelet, and antitumor. For
more than two centuries quinoline/quinolone
moiety has been used as a scaffold for drug
development and even today it represents an
inexhaustible inspiration for design and development
of novel semi-synthetic or synthetic
agents exhibiting broad spectrum of
bioactivities. The structural diversity of
synthetized compounds provides high and
selective activity attained through different
mechanisms of action, as well as low toxicity
on human cells. This review describes quinoline
and quinolone derivatives with
antibacterial, antifungal, anti-virulent,
antiviral, and anti-parasitic activities with the
focus on the last 10 years literature.",
publisher = "Springer Nature",
journal = "Advances in Experimental Medicine and Biology - Advances in Microbiology, Infectious Diseases and Public Health",
booktitle = "Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents",
doi = "10.1007/5584_2019_428"
}
Senerovic, L., Opsenica, D., Moric, I., Aleksic, I., Spasić, M.,& Vasiljevic, B.. (2019). Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents. in Advances in Experimental Medicine and Biology - Advances in Microbiology, Infectious Diseases and Public Health
Springer Nature..
https://doi.org/10.1007/5584_2019_428
Senerovic L, Opsenica D, Moric I, Aleksic I, Spasić M, Vasiljevic B. Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents. in Advances in Experimental Medicine and Biology - Advances in Microbiology, Infectious Diseases and Public Health. 2019;.
doi:10.1007/5584_2019_428 .
Senerovic, Lidija, Opsenica, Dejan, Moric, Ivana, Aleksic, Ivana, Spasić, Marta, Vasiljevic, Branka, "Quinolines and Quinolones as Antibacterial, Antifungal, Antivirulence, Antiviral and Anti-parasitic Agents" in Advances in Experimental Medicine and Biology - Advances in Microbiology, Infectious Diseases and Public Health (2019),
https://doi.org/10.1007/5584_2019_428 . .
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