Bogojević, Katarina

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orcid::0000-0003-4858-0668
  • Bogojević, Katarina (6)
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Author's Bibliography

Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice

Konstantinović, Jelena M.; Videnović, Milica; Orsini, Stefania; Bogojević, Katarina; D'Alessandro, Sarah; Scaccabarozzi, Diletta; Terzić-Jovanović, Nataša; Gradoni, Luigi; Basilico, Nicoletta; Šolaja, Bogdan A.

(Amer Chemical Soc, Washington, 2018)

TY  - JOUR
AU  - Konstantinović, Jelena M.
AU  - Videnović, Milica
AU  - Orsini, Stefania
AU  - Bogojević, Katarina
AU  - D'Alessandro, Sarah
AU  - Scaccabarozzi, Diletta
AU  - Terzić-Jovanović, Nataša
AU  - Gradoni, Luigi
AU  - Basilico, Nicoletta
AU  - Šolaja, Bogdan A.
PY  - 2018
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/2948
AB  - In this Letter, a detailed analysis of 30 4-aminoquinoline-based compounds with regard to their potential as antileishmanial drugs has been carried out. Ten compounds demonstrated IC50  lt  1 mu M against promastigote stages of L. infantum and L. tropica, and five compounds showed IC50  lt  1 mu M against intramacrophage L. infantum amastigotes. Two compounds showed dose-dependent enhancement of NO and ROS production by bone marrow-derived macrophages and remarkable reduction of parasite load in vivo, with advantage of being short-term and orally active. To the best of our knowledge, this is the first example of 4-amino-7-chloroquinoline derivatives active in Leishmania infantum infected mice.
PB  - Amer Chemical Soc, Washington
T2  - ACS Medicinal Chemistry Letters
T1  - Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice
VL  - 9
IS  - 7
SP  - 629
EP  - 634
DO  - 10.1021/acsmedchemlett.8b00053
ER  - 
@article{
author = "Konstantinović, Jelena M. and Videnović, Milica and Orsini, Stefania and Bogojević, Katarina and D'Alessandro, Sarah and Scaccabarozzi, Diletta and Terzić-Jovanović, Nataša and Gradoni, Luigi and Basilico, Nicoletta and Šolaja, Bogdan A.",
year = "2018",
abstract = "In this Letter, a detailed analysis of 30 4-aminoquinoline-based compounds with regard to their potential as antileishmanial drugs has been carried out. Ten compounds demonstrated IC50  lt  1 mu M against promastigote stages of L. infantum and L. tropica, and five compounds showed IC50  lt  1 mu M against intramacrophage L. infantum amastigotes. Two compounds showed dose-dependent enhancement of NO and ROS production by bone marrow-derived macrophages and remarkable reduction of parasite load in vivo, with advantage of being short-term and orally active. To the best of our knowledge, this is the first example of 4-amino-7-chloroquinoline derivatives active in Leishmania infantum infected mice.",
publisher = "Amer Chemical Soc, Washington",
journal = "ACS Medicinal Chemistry Letters",
title = "Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice",
volume = "9",
number = "7",
pages = "629-634",
doi = "10.1021/acsmedchemlett.8b00053"
}
Konstantinović, J. M., Videnović, M., Orsini, S., Bogojević, K., D'Alessandro, S., Scaccabarozzi, D., Terzić-Jovanović, N., Gradoni, L., Basilico, N.,& Šolaja, B. A.. (2018). Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice. in ACS Medicinal Chemistry Letters
Amer Chemical Soc, Washington., 9(7), 629-634.
https://doi.org/10.1021/acsmedchemlett.8b00053
Konstantinović JM, Videnović M, Orsini S, Bogojević K, D'Alessandro S, Scaccabarozzi D, Terzić-Jovanović N, Gradoni L, Basilico N, Šolaja BA. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice. in ACS Medicinal Chemistry Letters. 2018;9(7):629-634.
doi:10.1021/acsmedchemlett.8b00053 .
Konstantinović, Jelena M., Videnović, Milica, Orsini, Stefania, Bogojević, Katarina, D'Alessandro, Sarah, Scaccabarozzi, Diletta, Terzić-Jovanović, Nataša, Gradoni, Luigi, Basilico, Nicoletta, Šolaja, Bogdan A., "Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice" in ACS Medicinal Chemistry Letters, 9, no. 7 (2018):629-634,
https://doi.org/10.1021/acsmedchemlett.8b00053 . .
1
10
6
10
8

Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053

Konstantinović, Jelena M.; Videnović, Milica; Orsini, Stefania; Bogojević, Katarina; D'Alessandro, Sarah; Scaccabarozzi, Diletta; Terzić-Jovanović, Nataša; Gradoni, Luigi; Basilico, Nicoletta; Šolaja, Bogdan A.

(Amer Chemical Soc, Washington, 2018)

TY  - DATA
AU  - Konstantinović, Jelena M.
AU  - Videnović, Milica
AU  - Orsini, Stefania
AU  - Bogojević, Katarina
AU  - D'Alessandro, Sarah
AU  - Scaccabarozzi, Diletta
AU  - Terzić-Jovanović, Nataša
AU  - Gradoni, Luigi
AU  - Basilico, Nicoletta
AU  - Šolaja, Bogdan A.
PY  - 2018
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/2949
PB  - Amer Chemical Soc, Washington
T2  - ACS Medicinal Chemistry Letters
T1  - Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053
UR  - https://hdl.handle.net/21.15107/rcub_cherry_2949
ER  - 
@misc{
author = "Konstantinović, Jelena M. and Videnović, Milica and Orsini, Stefania and Bogojević, Katarina and D'Alessandro, Sarah and Scaccabarozzi, Diletta and Terzić-Jovanović, Nataša and Gradoni, Luigi and Basilico, Nicoletta and Šolaja, Bogdan A.",
year = "2018",
publisher = "Amer Chemical Soc, Washington",
journal = "ACS Medicinal Chemistry Letters",
title = "Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053",
url = "https://hdl.handle.net/21.15107/rcub_cherry_2949"
}
Konstantinović, J. M., Videnović, M., Orsini, S., Bogojević, K., D'Alessandro, S., Scaccabarozzi, D., Terzić-Jovanović, N., Gradoni, L., Basilico, N.,& Šolaja, B. A.. (2018). Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053. in ACS Medicinal Chemistry Letters
Amer Chemical Soc, Washington..
https://hdl.handle.net/21.15107/rcub_cherry_2949
Konstantinović JM, Videnović M, Orsini S, Bogojević K, D'Alessandro S, Scaccabarozzi D, Terzić-Jovanović N, Gradoni L, Basilico N, Šolaja BA. Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053. in ACS Medicinal Chemistry Letters. 2018;.
https://hdl.handle.net/21.15107/rcub_cherry_2949 .
Konstantinović, Jelena M., Videnović, Milica, Orsini, Stefania, Bogojević, Katarina, D'Alessandro, Sarah, Scaccabarozzi, Diletta, Terzić-Jovanović, Nataša, Gradoni, Luigi, Basilico, Nicoletta, Šolaja, Bogdan A., "Supplementary data for the article: Konstantinović, J.; Videnović, M.; Orsini, S.; Bogojević, K.; D’Alessandro, S.; Scaccabarozzi, D.; Terzić Jovanović, N.; Gradoni, L.; Basilico, N.; Šolaja, B. A. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania Infantum Infected Mice. ACS Medicinal Chemistry Letters 2018, 9 (7), 629–634. https://doi.org/10.1021/acsmedchemlett.8b00053" in ACS Medicinal Chemistry Letters (2018),
https://hdl.handle.net/21.15107/rcub_cherry_2949 .

Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice

Konstantinović, Jelena M.; Videnović, Milica; Orsini, Stefania; Bogojević, Katarina; D'Alessandro, Sarah; Scaccabarozzi, Diletta; Terzić-Jovanović, Nataša; Gradoni, Luigi; Basilico, Nicoletta; Šolaja, Bogdan A.

(Amer Chemical Soc, Washington, 2018)

TY  - JOUR
AU  - Konstantinović, Jelena M.
AU  - Videnović, Milica
AU  - Orsini, Stefania
AU  - Bogojević, Katarina
AU  - D'Alessandro, Sarah
AU  - Scaccabarozzi, Diletta
AU  - Terzić-Jovanović, Nataša
AU  - Gradoni, Luigi
AU  - Basilico, Nicoletta
AU  - Šolaja, Bogdan A.
PY  - 2018
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/2209
AB  - In this Letter, a detailed analysis of 30 4-aminoquinoline-based compounds with regard to their potential as antileishmanial drugs has been carried out. Ten compounds demonstrated IC50  lt  1 mu M against promastigote stages of L. infantum and L. tropica, and five compounds showed IC50  lt  1 mu M against intramacrophage L. infantum amastigotes. Two compounds showed dose-dependent enhancement of NO and ROS production by bone marrow-derived macrophages and remarkable reduction of parasite load in vivo, with advantage of being short-term and orally active. To the best of our knowledge, this is the first example of 4-amino-7-chloroquinoline derivatives active in Leishmania infantum infected mice.
PB  - Amer Chemical Soc, Washington
T2  - ACS Medicinal Chemistry Letters
T1  - Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice
VL  - 9
IS  - 7
SP  - 629
EP  - 634
DO  - 10.1021/acsmedchemlett.8b00053
ER  - 
@article{
author = "Konstantinović, Jelena M. and Videnović, Milica and Orsini, Stefania and Bogojević, Katarina and D'Alessandro, Sarah and Scaccabarozzi, Diletta and Terzić-Jovanović, Nataša and Gradoni, Luigi and Basilico, Nicoletta and Šolaja, Bogdan A.",
year = "2018",
abstract = "In this Letter, a detailed analysis of 30 4-aminoquinoline-based compounds with regard to their potential as antileishmanial drugs has been carried out. Ten compounds demonstrated IC50  lt  1 mu M against promastigote stages of L. infantum and L. tropica, and five compounds showed IC50  lt  1 mu M against intramacrophage L. infantum amastigotes. Two compounds showed dose-dependent enhancement of NO and ROS production by bone marrow-derived macrophages and remarkable reduction of parasite load in vivo, with advantage of being short-term and orally active. To the best of our knowledge, this is the first example of 4-amino-7-chloroquinoline derivatives active in Leishmania infantum infected mice.",
publisher = "Amer Chemical Soc, Washington",
journal = "ACS Medicinal Chemistry Letters",
title = "Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice",
volume = "9",
number = "7",
pages = "629-634",
doi = "10.1021/acsmedchemlett.8b00053"
}
Konstantinović, J. M., Videnović, M., Orsini, S., Bogojević, K., D'Alessandro, S., Scaccabarozzi, D., Terzić-Jovanović, N., Gradoni, L., Basilico, N.,& Šolaja, B. A.. (2018). Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice. in ACS Medicinal Chemistry Letters
Amer Chemical Soc, Washington., 9(7), 629-634.
https://doi.org/10.1021/acsmedchemlett.8b00053
Konstantinović JM, Videnović M, Orsini S, Bogojević K, D'Alessandro S, Scaccabarozzi D, Terzić-Jovanović N, Gradoni L, Basilico N, Šolaja BA. Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice. in ACS Medicinal Chemistry Letters. 2018;9(7):629-634.
doi:10.1021/acsmedchemlett.8b00053 .
Konstantinović, Jelena M., Videnović, Milica, Orsini, Stefania, Bogojević, Katarina, D'Alessandro, Sarah, Scaccabarozzi, Diletta, Terzić-Jovanović, Nataša, Gradoni, Luigi, Basilico, Nicoletta, Šolaja, Bogdan A., "Novel Aminoquinoline Derivatives Significantly Reduce Parasite Load in Leishmania infantum Infected Mice" in ACS Medicinal Chemistry Letters, 9, no. 7 (2018):629-634,
https://doi.org/10.1021/acsmedchemlett.8b00053 . .
1
10
6
10
8

Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima

Konstantinović, Jelena M.; Terzić, Nataša; Videnović, Milica; Bogojević, Katarina; Basilico, Nicoletta; Gradoni, Luigi; Šolaja, Bogdan A.

(2017)

TY  - CONF
AU  - Konstantinović, Jelena M.
AU  - Terzić, Nataša
AU  - Videnović, Milica
AU  - Bogojević, Katarina
AU  - Basilico, Nicoletta
AU  - Gradoni, Luigi
AU  - Šolaja, Bogdan A.
PY  - 2017
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5345
C3  - 54. Savetovanje Srpskog hemijskog društva i 5. konferencija mladih hemičara Srbije, Beograd 29. i 30. septembar 2017.
T1  - Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima
T1  - Aminoquinoline derivatives with activity against Leishmania parasite in vivo
IS  - KMH 03 - OP(Y)1
SP  - 95
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5345
ER  - 
@conference{
author = "Konstantinović, Jelena M. and Terzić, Nataša and Videnović, Milica and Bogojević, Katarina and Basilico, Nicoletta and Gradoni, Luigi and Šolaja, Bogdan A.",
year = "2017",
journal = "54. Savetovanje Srpskog hemijskog društva i 5. konferencija mladih hemičara Srbije, Beograd 29. i 30. septembar 2017.",
title = "Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima, Aminoquinoline derivatives with activity against Leishmania parasite in vivo",
number = "KMH 03 - OP(Y)1",
pages = "95",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5345"
}
Konstantinović, J. M., Terzić, N., Videnović, M., Bogojević, K., Basilico, N., Gradoni, L.,& Šolaja, B. A.. (2017). Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima. in 54. Savetovanje Srpskog hemijskog društva i 5. konferencija mladih hemičara Srbije, Beograd 29. i 30. septembar 2017.(KMH 03 - OP(Y)1), 95.
https://hdl.handle.net/21.15107/rcub_cherry_5345
Konstantinović JM, Terzić N, Videnović M, Bogojević K, Basilico N, Gradoni L, Šolaja BA. Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima. in 54. Savetovanje Srpskog hemijskog društva i 5. konferencija mladih hemičara Srbije, Beograd 29. i 30. septembar 2017.. 2017;(KMH 03 - OP(Y)1):95.
https://hdl.handle.net/21.15107/rcub_cherry_5345 .
Konstantinović, Jelena M., Terzić, Nataša, Videnović, Milica, Bogojević, Katarina, Basilico, Nicoletta, Gradoni, Luigi, Šolaja, Bogdan A., "Derivati aminohinolina pokazuju aktivnost protiv lajšmanija parazita u in vivo uslovima" in 54. Savetovanje Srpskog hemijskog društva i 5. konferencija mladih hemičara Srbije, Beograd 29. i 30. septembar 2017., no. KMH 03 - OP(Y)1 (2017):95,
https://hdl.handle.net/21.15107/rcub_cherry_5345 .

Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners

Konstantinović, Jelena M.; Videnović, Milica; Srbljanović, Jelena; Đurković-Đaković, Olgica; Bogojević, Katarina; Sciotti, Richard J.; Šolaja, Bogdan A.

(Mdpi Ag, Basel, 2017)

TY  - JOUR
AU  - Konstantinović, Jelena M.
AU  - Videnović, Milica
AU  - Srbljanović, Jelena
AU  - Đurković-Đaković, Olgica
AU  - Bogojević, Katarina
AU  - Sciotti, Richard J.
AU  - Šolaja, Bogdan A.
PY  - 2017
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/2441
AB  - Malaria is a severe and life-threatening disease caused by Plasmodium parasites that are spread to humans through bites of infected Anopheles mosquitoes. Here, we report on the efficacy of aminoquinolines coupled to benzothiophene and thiophene rings in inhibiting Plasmodium falciparum parasite growth. Synthesized compounds were evaluated for their antimalarial activity and toxicity, in vitro and in mice. Benzothiophenes presented in this paper showed improved activities against a chloroquine susceptible (CQS) strain, with potencies of IC50 = 6 nM, and cured 5/5 Plasmodium berghei infected mice when dosed orally at 160 mg/kg/day x 3 days. In the benzothiophene series, the examined antiplasmodials were more active against the CQS strain D6, than against strains chloroquine resistant (CQR) W2 and multidrug-resistant (MDR) TM91C235. For the thiophene series, a very interesting feature was revealed: hypersensitivity to the CQR strains, resistance index (RI) of  lt  1. This is in sharp contrast to chloroquine, indicating that further development of the series would provide us with more potent antimalarials against CQR strains.
PB  - Mdpi Ag, Basel
T2  - Molecules
T1  - Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners
VL  - 22
IS  - 3
DO  - 10.3390/molecules22030343
ER  - 
@article{
author = "Konstantinović, Jelena M. and Videnović, Milica and Srbljanović, Jelena and Đurković-Đaković, Olgica and Bogojević, Katarina and Sciotti, Richard J. and Šolaja, Bogdan A.",
year = "2017",
abstract = "Malaria is a severe and life-threatening disease caused by Plasmodium parasites that are spread to humans through bites of infected Anopheles mosquitoes. Here, we report on the efficacy of aminoquinolines coupled to benzothiophene and thiophene rings in inhibiting Plasmodium falciparum parasite growth. Synthesized compounds were evaluated for their antimalarial activity and toxicity, in vitro and in mice. Benzothiophenes presented in this paper showed improved activities against a chloroquine susceptible (CQS) strain, with potencies of IC50 = 6 nM, and cured 5/5 Plasmodium berghei infected mice when dosed orally at 160 mg/kg/day x 3 days. In the benzothiophene series, the examined antiplasmodials were more active against the CQS strain D6, than against strains chloroquine resistant (CQR) W2 and multidrug-resistant (MDR) TM91C235. For the thiophene series, a very interesting feature was revealed: hypersensitivity to the CQR strains, resistance index (RI) of  lt  1. This is in sharp contrast to chloroquine, indicating that further development of the series would provide us with more potent antimalarials against CQR strains.",
publisher = "Mdpi Ag, Basel",
journal = "Molecules",
title = "Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners",
volume = "22",
number = "3",
doi = "10.3390/molecules22030343"
}
Konstantinović, J. M., Videnović, M., Srbljanović, J., Đurković-Đaković, O., Bogojević, K., Sciotti, R. J.,& Šolaja, B. A.. (2017). Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. in Molecules
Mdpi Ag, Basel., 22(3).
https://doi.org/10.3390/molecules22030343
Konstantinović JM, Videnović M, Srbljanović J, Đurković-Đaković O, Bogojević K, Sciotti RJ, Šolaja BA. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. in Molecules. 2017;22(3).
doi:10.3390/molecules22030343 .
Konstantinović, Jelena M., Videnović, Milica, Srbljanović, Jelena, Đurković-Đaković, Olgica, Bogojević, Katarina, Sciotti, Richard J., Šolaja, Bogdan A., "Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners" in Molecules, 22, no. 3 (2017),
https://doi.org/10.3390/molecules22030343 . .
1
17
12
17
14

Supplementary data for article : Konstantinović, J. M.; Selaković, M.; Srbljanovic, J.; Djurkovic-Djakovic, O.; Bogojević, K.; Sciotti, R.; Šolaja, B. A. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. Molecules 2017, 22 (3). https://doi.org/10.3390/molecules22030343

Konstantinović, Jelena M.; Videnović, Milica; Srbljanović, Jelena; Đurković-Đaković, Olgica; Bogojević, Katarina; Sciotti, Richard J.; Šolaja, Bogdan A.

(Mdpi Ag, Basel, 2017)

TY  - DATA
AU  - Konstantinović, Jelena M.
AU  - Videnović, Milica
AU  - Srbljanović, Jelena
AU  - Đurković-Đaković, Olgica
AU  - Bogojević, Katarina
AU  - Sciotti, Richard J.
AU  - Šolaja, Bogdan A.
PY  - 2017
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/3022
PB  - Mdpi Ag, Basel
T2  - Molecules
T1  - Supplementary data for article : Konstantinović, J. M.; Selaković, M.; Srbljanovic, J.; Djurkovic-Djakovic, O.; Bogojević, K.; Sciotti, R.; Šolaja, B. A. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. Molecules 2017, 22 (3). https://doi.org/10.3390/molecules22030343
UR  - https://hdl.handle.net/21.15107/rcub_cherry_3022
ER  - 
@misc{
author = "Konstantinović, Jelena M. and Videnović, Milica and Srbljanović, Jelena and Đurković-Đaković, Olgica and Bogojević, Katarina and Sciotti, Richard J. and Šolaja, Bogdan A.",
year = "2017",
publisher = "Mdpi Ag, Basel",
journal = "Molecules",
title = "Supplementary data for article : Konstantinović, J. M.; Selaković, M.; Srbljanovic, J.; Djurkovic-Djakovic, O.; Bogojević, K.; Sciotti, R.; Šolaja, B. A. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. Molecules 2017, 22 (3). https://doi.org/10.3390/molecules22030343",
url = "https://hdl.handle.net/21.15107/rcub_cherry_3022"
}
Konstantinović, J. M., Videnović, M., Srbljanović, J., Đurković-Đaković, O., Bogojević, K., Sciotti, R. J.,& Šolaja, B. A.. (2017). Supplementary data for article : Konstantinović, J. M.; Selaković, M.; Srbljanovic, J.; Djurkovic-Djakovic, O.; Bogojević, K.; Sciotti, R.; Šolaja, B. A. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. Molecules 2017, 22 (3). https://doi.org/10.3390/molecules22030343. in Molecules
Mdpi Ag, Basel..
https://hdl.handle.net/21.15107/rcub_cherry_3022
Konstantinović JM, Videnović M, Srbljanović J, Đurković-Đaković O, Bogojević K, Sciotti RJ, Šolaja BA. Supplementary data for article : Konstantinović, J. M.; Selaković, M.; Srbljanovic, J.; Djurkovic-Djakovic, O.; Bogojević, K.; Sciotti, R.; Šolaja, B. A. Antimalarials with Benzothiophene Moieties as Aminoquinoline Partners. Molecules 2017, 22 (3). https://doi.org/10.3390/molecules22030343. in Molecules. 2017;.
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