Videnović, Milica

Link to this page

Authority KeyName Variants
690c1f46-33b2-4937-8e30-a85023aa08d6
  • Videnović, Milica (4)
  • Videnović, Milica Đ. (1)
Projects

Author's Bibliography

Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1

Videnović, Milica; Mojsin, Marija; Srdić-Rajić, Tatjana; Opsenica, Igor; Stevanović, Milena; Šolaja, Bogdan A.

(2018)

TY  - CONF
AU  - Videnović, Milica
AU  - Mojsin, Marija
AU  - Srdić-Rajić, Tatjana
AU  - Opsenica, Igor
AU  - Stevanović, Milena
AU  - Šolaja, Bogdan A.
PY  - 2018
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5348
C3  - 55. Savetovanje Srpskog hemijskog društva, Novi Sad, 8. i 9. jun 2018.
T1  - Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1
T1  - Potential antimetastatic and antiproliferative activity of benzothiazole derivatives against NT2/D1 embryonal human teratocarcinoma cell line
VL  - 87
EP  - 87
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5348
ER  - 
@conference{
author = "Videnović, Milica and Mojsin, Marija and Srdić-Rajić, Tatjana and Opsenica, Igor and Stevanović, Milena and Šolaja, Bogdan A.",
year = "2018",
journal = "55. Savetovanje Srpskog hemijskog društva, Novi Sad, 8. i 9. jun 2018.",
title = "Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1, Potential antimetastatic and antiproliferative activity of benzothiazole derivatives against NT2/D1 embryonal human teratocarcinoma cell line",
volume = "87",
pages = "87",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5348"
}
Videnović, M., Mojsin, M., Srdić-Rajić, T., Opsenica, I., Stevanović, M.,& Šolaja, B. A.. (2018). Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1. in 55. Savetovanje Srpskog hemijskog društva, Novi Sad, 8. i 9. jun 2018., 87.
https://hdl.handle.net/21.15107/rcub_cherry_5348
Videnović M, Mojsin M, Srdić-Rajić T, Opsenica I, Stevanović M, Šolaja BA. Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1. in 55. Savetovanje Srpskog hemijskog društva, Novi Sad, 8. i 9. jun 2018.. 2018;87:null-87.
https://hdl.handle.net/21.15107/rcub_cherry_5348 .
Videnović, Milica, Mojsin, Marija, Srdić-Rajić, Tatjana, Opsenica, Igor, Stevanović, Milena, Šolaja, Bogdan A., "Potencijalno antimetastatsko i antiproliferativno dejstvo derivata benzotiazola na ćelije embrionalnog humanog teratokarcinoma NT2/D1" in 55. Savetovanje Srpskog hemijskog društva, Novi Sad, 8. i 9. jun 2018., 87 (2018),
https://hdl.handle.net/21.15107/rcub_cherry_5348 .

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 .

Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke

Videnović, Milica; Srdić-Rajić, Tatjana; Opsenica, Igor; Radulović, Siniša; Šolaja, Bogdan A.

(2016)

TY  - CONF
AU  - Videnović, Milica
AU  - Srdić-Rajić, Tatjana
AU  - Opsenica, Igor
AU  - Radulović, Siniša
AU  - Šolaja, Bogdan A.
PY  - 2016
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5347
AB  - Poznato je da se mnogi lekovi, derivati benzotiazola, vrlo uspešno koriste u tretmanu
različitih kliničkih stanja.1
 Takođe, značajno mesto zauzimaju u istraživanjima
antitumorskih agenasa i veliki broj strukturnih modifikacija jezgra benzotiazola načinjen je
s ciljem poboljšanja njihove antitumorske aktivnosti. U okviru naših istraživanja u ovoj
oblasti sintetisana je serija novih karbamata i amida 6-alkiltio-supstituisanih
benzotiazolamina i ispitana je njihova antiproliferativna aktivnost prema MCF-7 ćelijskoj
liniji humanog karcinoma dojke. Pokazano je da derivati benzotiazolamina izazivaju visoko
specifičnu programiranu ćelijsku smrt apoptozu u značajnom procentu tretiranih MCF-7
ćelija. Ispitan je i uticaj novih jedinjenja na ćelijski ciklus, mitohondrijski membranski
potencijal i nivo unutarćelijskih reaktivnih kiseoničnih vrsta
AB  - Numerous benzothiazole-based clinical drugs have been extensively used in practice to
treat various type of diseases with high therapeutic efficacy.1
 In addition, benzothiazole derivatives are compounds of an undoubted interest in anticancer research and a lot of structural modifications on their core nuclei have been made to improve their antitumor activety. Therefore, we have synthesized a series of novel 6-alkylthio-substituted benzothiazolamine carbamates and amides. To investigate their anticancer potency, we have used MCF7 human breast cancer cell line. Benzothiazolamine derivatives show great potency for
promoting highly specific programmed cell death apoptosis in MCF-7 cancer cell line. Our
research continued towards examination of our compounds influence on cell cycle phase
distribution, reactive oxygen species level and mitochondrial membrane potential.
C3  - 53. Savetovanje Srpskog hemijskog društva, Prirodno-matematički fakultet, Kragujevac, 10. i 11. jun 2016.
T1  - Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke
T1  - Investigation of antiproliferative activity of new benzothiazolamine derivatives against MCF-7 human breast cancer cell line
SP  - 99
EP  - 99
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5347
ER  - 
@conference{
author = "Videnović, Milica and Srdić-Rajić, Tatjana and Opsenica, Igor and Radulović, Siniša and Šolaja, Bogdan A.",
year = "2016",
abstract = "Poznato je da se mnogi lekovi, derivati benzotiazola, vrlo uspešno koriste u tretmanu
različitih kliničkih stanja.1
 Takođe, značajno mesto zauzimaju u istraživanjima
antitumorskih agenasa i veliki broj strukturnih modifikacija jezgra benzotiazola načinjen je
s ciljem poboljšanja njihove antitumorske aktivnosti. U okviru naših istraživanja u ovoj
oblasti sintetisana je serija novih karbamata i amida 6-alkiltio-supstituisanih
benzotiazolamina i ispitana je njihova antiproliferativna aktivnost prema MCF-7 ćelijskoj
liniji humanog karcinoma dojke. Pokazano je da derivati benzotiazolamina izazivaju visoko
specifičnu programiranu ćelijsku smrt apoptozu u značajnom procentu tretiranih MCF-7
ćelija. Ispitan je i uticaj novih jedinjenja na ćelijski ciklus, mitohondrijski membranski
potencijal i nivo unutarćelijskih reaktivnih kiseoničnih vrsta, Numerous benzothiazole-based clinical drugs have been extensively used in practice to
treat various type of diseases with high therapeutic efficacy.1
 In addition, benzothiazole derivatives are compounds of an undoubted interest in anticancer research and a lot of structural modifications on their core nuclei have been made to improve their antitumor activety. Therefore, we have synthesized a series of novel 6-alkylthio-substituted benzothiazolamine carbamates and amides. To investigate their anticancer potency, we have used MCF7 human breast cancer cell line. Benzothiazolamine derivatives show great potency for
promoting highly specific programmed cell death apoptosis in MCF-7 cancer cell line. Our
research continued towards examination of our compounds influence on cell cycle phase
distribution, reactive oxygen species level and mitochondrial membrane potential.",
journal = "53. Savetovanje Srpskog hemijskog društva, Prirodno-matematički fakultet, Kragujevac, 10. i 11. jun 2016.",
title = "Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke, Investigation of antiproliferative activity of new benzothiazolamine derivatives against MCF-7 human breast cancer cell line",
pages = "99-99",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5347"
}
Videnović, M., Srdić-Rajić, T., Opsenica, I., Radulović, S.,& Šolaja, B. A.. (2016). Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke. in 53. Savetovanje Srpskog hemijskog društva, Prirodno-matematički fakultet, Kragujevac, 10. i 11. jun 2016., 99-99.
https://hdl.handle.net/21.15107/rcub_cherry_5347
Videnović M, Srdić-Rajić T, Opsenica I, Radulović S, Šolaja BA. Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke. in 53. Savetovanje Srpskog hemijskog društva, Prirodno-matematički fakultet, Kragujevac, 10. i 11. jun 2016.. 2016;:99-99.
https://hdl.handle.net/21.15107/rcub_cherry_5347 .
Videnović, Milica, Srdić-Rajić, Tatjana, Opsenica, Igor, Radulović, Siniša, Šolaja, Bogdan A., "Ispitivanje antiproliferativne aktivnosti novih derivata benzotiazolamina prema MCF-7 ćelijskoj liniji humanog kancera dojke" in 53. Savetovanje Srpskog hemijskog društva, Prirodno-matematički fakultet, Kragujevac, 10. i 11. jun 2016. (2016):99-99,
https://hdl.handle.net/21.15107/rcub_cherry_5347 .

New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line

Videnović, Milica; Srdić-Rajić, Tatjana; Opsenica, Igor; Radulović, Siniša; Šolaja, Bogdan A.

(2016)

TY  - CONF
AU  - Videnović, Milica
AU  - Srdić-Rajić, Tatjana
AU  - Opsenica, Igor
AU  - Radulović, Siniša
AU  - Šolaja, Bogdan A.
PY  - 2016
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5349
AB  - Background
Cancer is the second leading cause of morbidity and mortality worldwide, with approximately 14 million
new cases and 8.2 million cancer-related deaths in 2012.1
 Current chemotherapy targets the proliferative
advantage of tumor cells over healthy cells, but the lack of selectivity of chemotherapeutic agents usually
leads to serious side effects. A major challenge in the development of effective and safe cancer treatment
is to identify the agents that could affect cellular processes essential for, or greatly enhanced in, malignant
cells only.
Aims
Benzothiazole derivatives represent a series of compounds of an undoubted interest because of the broad
spectrum of biological effects associated with this scaffold.2
 In addition, benzothiazoles have attracted
considerable attention in anticancer research and a lot of structural modifications on their core nuclei have
been made to improve the antitumor activity. Therefore, we have synthesized novel benzothiazolamine
derivatives and investigated their anticancer potential against MCF-7 human breast cancer cell line.
Methods
We have synthesized a series of novel benzothiazolamine carbamates and amides starting from 1-chloro4-nitrobenzene and an appropriate alkylthiol, 3 followed by cyclization to benzothiazolamine and further
derivatization of amino-group. The selected compounds were subjected to a panel of NCI-60 cell line for
in vitro determination of antitumor activity. For better insight into possible mechanism of antiproliferative
activity, we have examined the cell cycle phase distribution and apoptosis in MCF-7 human breast cancer
cell line using flow cytometry methods, after treatment with synthesized compounds. Our research
continued towards examination of our compounds’ influence on the reactive oxygen species level,
mitochondrial membrane potential, as well as cell cycle regulators.
Results
The cell cycle phase distribution and apoptosis in MCF-7 human breast cancer cell line were investigated
after exposure to IC50 concentrations, obtained in vitro, of four selected compounds (Figure 1.b) for 24
and 48 hours, respectively. Using flow cytometry after PI staining we showed that our compounds affect cell cycle distribution in a
time dependent manner. After 24 h treatment, the portion of cells in G2/M phase increased, suggesting
cell cycle arrest in mitosis. After 48 hours, the number of sub G1 phase cells increased, which indicates
apoptosis.
Following incubation with selected compounds for 48 hours, the proapoptotic effect was reflected by the
increase of portion of early apoptotic cells up to 63 % measured by bivariate Annexin V/PI flow
cytometry (Figure 1.a). Moreover, we observed the loss of mitochondrial membrane potential, which
could indicate that our compounds promote apoptosis via the mitochondrial pathway in MCF-7 cells. In
addition, reactive oxygen species level in MCF-7 cells significantly decreased after treatment with
benzothiazolamine derivatives.
Conclusion
Benzothiazolamine carbamates and amides showed great potency for promoting highly specific
programmed cell death apoptosis in MCF-7 cancer cell line. Further examination will eventually provide
identification of molecular targets of benzothiazolamines. Our data offer a significant contribution to the
search for medicinally active compounds and may lead to discovery of a new potent antitumor agent.
C3  - European School of Medicinal Chemistry (XXXVI Advanced Course of Medicinal Chemistry and "E. Duranti" National Seminar for PhD Students) Proceedings of PhD student poster session
T1  - New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line
SP  - 75
EP  - 76
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5349
ER  - 
@conference{
author = "Videnović, Milica and Srdić-Rajić, Tatjana and Opsenica, Igor and Radulović, Siniša and Šolaja, Bogdan A.",
year = "2016",
abstract = "Background
Cancer is the second leading cause of morbidity and mortality worldwide, with approximately 14 million
new cases and 8.2 million cancer-related deaths in 2012.1
 Current chemotherapy targets the proliferative
advantage of tumor cells over healthy cells, but the lack of selectivity of chemotherapeutic agents usually
leads to serious side effects. A major challenge in the development of effective and safe cancer treatment
is to identify the agents that could affect cellular processes essential for, or greatly enhanced in, malignant
cells only.
Aims
Benzothiazole derivatives represent a series of compounds of an undoubted interest because of the broad
spectrum of biological effects associated with this scaffold.2
 In addition, benzothiazoles have attracted
considerable attention in anticancer research and a lot of structural modifications on their core nuclei have
been made to improve the antitumor activity. Therefore, we have synthesized novel benzothiazolamine
derivatives and investigated their anticancer potential against MCF-7 human breast cancer cell line.
Methods
We have synthesized a series of novel benzothiazolamine carbamates and amides starting from 1-chloro4-nitrobenzene and an appropriate alkylthiol, 3 followed by cyclization to benzothiazolamine and further
derivatization of amino-group. The selected compounds were subjected to a panel of NCI-60 cell line for
in vitro determination of antitumor activity. For better insight into possible mechanism of antiproliferative
activity, we have examined the cell cycle phase distribution and apoptosis in MCF-7 human breast cancer
cell line using flow cytometry methods, after treatment with synthesized compounds. Our research
continued towards examination of our compounds’ influence on the reactive oxygen species level,
mitochondrial membrane potential, as well as cell cycle regulators.
Results
The cell cycle phase distribution and apoptosis in MCF-7 human breast cancer cell line were investigated
after exposure to IC50 concentrations, obtained in vitro, of four selected compounds (Figure 1.b) for 24
and 48 hours, respectively. Using flow cytometry after PI staining we showed that our compounds affect cell cycle distribution in a
time dependent manner. After 24 h treatment, the portion of cells in G2/M phase increased, suggesting
cell cycle arrest in mitosis. After 48 hours, the number of sub G1 phase cells increased, which indicates
apoptosis.
Following incubation with selected compounds for 48 hours, the proapoptotic effect was reflected by the
increase of portion of early apoptotic cells up to 63 % measured by bivariate Annexin V/PI flow
cytometry (Figure 1.a). Moreover, we observed the loss of mitochondrial membrane potential, which
could indicate that our compounds promote apoptosis via the mitochondrial pathway in MCF-7 cells. In
addition, reactive oxygen species level in MCF-7 cells significantly decreased after treatment with
benzothiazolamine derivatives.
Conclusion
Benzothiazolamine carbamates and amides showed great potency for promoting highly specific
programmed cell death apoptosis in MCF-7 cancer cell line. Further examination will eventually provide
identification of molecular targets of benzothiazolamines. Our data offer a significant contribution to the
search for medicinally active compounds and may lead to discovery of a new potent antitumor agent.",
journal = "European School of Medicinal Chemistry (XXXVI Advanced Course of Medicinal Chemistry and "E. Duranti" National Seminar for PhD Students) Proceedings of PhD student poster session",
title = "New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line",
pages = "75-76",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5349"
}
Videnović, M., Srdić-Rajić, T., Opsenica, I., Radulović, S.,& Šolaja, B. A.. (2016). New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line. in European School of Medicinal Chemistry (XXXVI Advanced Course of Medicinal Chemistry and "E. Duranti" National Seminar for PhD Students) Proceedings of PhD student poster session, 75-76.
https://hdl.handle.net/21.15107/rcub_cherry_5349
Videnović M, Srdić-Rajić T, Opsenica I, Radulović S, Šolaja BA. New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line. in European School of Medicinal Chemistry (XXXVI Advanced Course of Medicinal Chemistry and "E. Duranti" National Seminar for PhD Students) Proceedings of PhD student poster session. 2016;:75-76.
https://hdl.handle.net/21.15107/rcub_cherry_5349 .
Videnović, Milica, Srdić-Rajić, Tatjana, Opsenica, Igor, Radulović, Siniša, Šolaja, Bogdan A., "New benzothiazolamine derivatives as inducers of an early apoptosis in MCF-7 human breast cancer cell line" in European School of Medicinal Chemistry (XXXVI Advanced Course of Medicinal Chemistry and "E. Duranti" National Seminar for PhD Students) Proceedings of PhD student poster session (2016):75-76,
https://hdl.handle.net/21.15107/rcub_cherry_5349 .

Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena

Pavlović, Nikola Z.; Videnović, Milica Đ.; Šolaja, Bogdan A.

(Belgrade : Serbian Chemical Society, 2016)

TY  - CONF
AU  - Pavlović, Nikola Z.
AU  - Videnović, Milica Đ.
AU  - Šolaja, Bogdan A.
PY  - 2016
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5342
PB  - Belgrade : Serbian Chemical Society
C3  - Fourth Conference of Young Chemists of Serbia - Book of Abstracts, Belgrade, Serbia, November 5, 2016
T1  - Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena
IS  - HS P 05
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5342
ER  - 
@conference{
author = "Pavlović, Nikola Z. and Videnović, Milica Đ. and Šolaja, Bogdan A.",
year = "2016",
publisher = "Belgrade : Serbian Chemical Society",
journal = "Fourth Conference of Young Chemists of Serbia - Book of Abstracts, Belgrade, Serbia, November 5, 2016",
title = "Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena",
number = "HS P 05",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5342"
}
Pavlović, N. Z., Videnović, M. Đ.,& Šolaja, B. A.. (2016). Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena. in Fourth Conference of Young Chemists of Serbia - Book of Abstracts, Belgrade, Serbia, November 5, 2016
Belgrade : Serbian Chemical Society.(HS P 05).
https://hdl.handle.net/21.15107/rcub_cherry_5342
Pavlović NZ, Videnović MĐ, Šolaja BA. Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena. in Fourth Conference of Young Chemists of Serbia - Book of Abstracts, Belgrade, Serbia, November 5, 2016. 2016;(HS P 05).
https://hdl.handle.net/21.15107/rcub_cherry_5342 .
Pavlović, Nikola Z., Videnović, Milica Đ., Šolaja, Bogdan A., "Inhibicija BONT/A in vitro i zaštita SNAP-25 u ćeliji novih aminohinolinskih derivata tiofena" in Fourth Conference of Young Chemists of Serbia - Book of Abstracts, Belgrade, Serbia, November 5, 2016, no. HS P 05 (2016),
https://hdl.handle.net/21.15107/rcub_cherry_5342 .