Vojnovic, Sandra

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  • Vojnovic, Sandra (6)

Author's Bibliography

Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth

Savic, Nada D.; Vojnovic, Sandra; Glišić, Biljana; Crochet, Aurélien; Pavić, Aleksandar; Janjić, Goran; Pekmezovic, Marina; Opsenica, Igor; Fromm, Katharina M.; Nikodinović-Runić, Jasmina; Đuran, Miloš

(Elsevier France-Editions Scientifiques Medicales Elsevier, Issy-Les-Moulineaux, 2018)

TY  - JOUR
AU  - Savic, Nada D.
AU  - Vojnovic, Sandra
AU  - Glišić, Biljana
AU  - Crochet, Aurélien
AU  - Pavić, Aleksandar
AU  - Janjić, Goran
AU  - Pekmezovic, Marina
AU  - Opsenica, Igor
AU  - Fromm, Katharina M.
AU  - Nikodinović-Runić, Jasmina
AU  - Đuran, Miloš
PY  - 2018
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/2429
AB  - Mononuclear silver(I) complexes with 1,7-phenanthroline (1,7-phen), [Ag(NO3-O,O') (1,7-phen-N7)(2)] (1) and [Ag(1,7-phen-N7)(2)]X, X = ClO4- (2), CF3SO3- (3), BF4- (4) and SbF6- (5) were synthesized and structurally characterized by NMR (H-1 and C-13), IR and UV-Vis spectroscopy and ESI mass spectrometry. The crystal structures of 1, 3 and 4 were determined by single-crystal X-ray diffraction analysis. In all these complexes, 1,7-phen coordinates to the Ag(I) ion in a monodentate fashion via the less sterically hindered N7 nitrogen atom. The investigation of the solution stability of 1-5 in DMSO revealed that they are sufficiently stable in this solvent at room temperature. Complexes 1-5 showed selectivity towards Candida spp. in comparison to bacteria, effectively inhibiting the growth of four different Candida species with minimal inhibitory concentrations (MIC) between 1.2 and 11.3 mu M. Based on the lowest MIC values and the lowest cytotoxicity against healthy human fibroblasts with selectivity index of more than 30, the antifungal potential was examined in detail for the complex 1. It had the ability to attenuate C. albicans virulence and to reduce epithelial cell damage in the cell infection model. Induction of reactive oxygen species (ROS) response has been detected in C. albicans, with fungal DNA being one of the possible target biomolecules. The toxicity profile of 1 in the zebrafish model (Danio rerio) revealed improved safety and activity in comparison to that of clinically utilized silver(I) sulfadiazine.
PB  - Elsevier France-Editions Scientifiques Medicales Elsevier, Issy-Les-Moulineaux
T2  - European Journal of Medicinal Chemistry
T1  - Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth
VL  - 156
SP  - 760
EP  - 773
DO  - 10.1016/j.ejmech.2018.07.049
ER  - 
@article{
author = "Savic, Nada D. and Vojnovic, Sandra and Glišić, Biljana and Crochet, Aurélien and Pavić, Aleksandar and Janjić, Goran and Pekmezovic, Marina and Opsenica, Igor and Fromm, Katharina M. and Nikodinović-Runić, Jasmina and Đuran, Miloš",
year = "2018",
abstract = "Mononuclear silver(I) complexes with 1,7-phenanthroline (1,7-phen), [Ag(NO3-O,O') (1,7-phen-N7)(2)] (1) and [Ag(1,7-phen-N7)(2)]X, X = ClO4- (2), CF3SO3- (3), BF4- (4) and SbF6- (5) were synthesized and structurally characterized by NMR (H-1 and C-13), IR and UV-Vis spectroscopy and ESI mass spectrometry. The crystal structures of 1, 3 and 4 were determined by single-crystal X-ray diffraction analysis. In all these complexes, 1,7-phen coordinates to the Ag(I) ion in a monodentate fashion via the less sterically hindered N7 nitrogen atom. The investigation of the solution stability of 1-5 in DMSO revealed that they are sufficiently stable in this solvent at room temperature. Complexes 1-5 showed selectivity towards Candida spp. in comparison to bacteria, effectively inhibiting the growth of four different Candida species with minimal inhibitory concentrations (MIC) between 1.2 and 11.3 mu M. Based on the lowest MIC values and the lowest cytotoxicity against healthy human fibroblasts with selectivity index of more than 30, the antifungal potential was examined in detail for the complex 1. It had the ability to attenuate C. albicans virulence and to reduce epithelial cell damage in the cell infection model. Induction of reactive oxygen species (ROS) response has been detected in C. albicans, with fungal DNA being one of the possible target biomolecules. The toxicity profile of 1 in the zebrafish model (Danio rerio) revealed improved safety and activity in comparison to that of clinically utilized silver(I) sulfadiazine.",
publisher = "Elsevier France-Editions Scientifiques Medicales Elsevier, Issy-Les-Moulineaux",
journal = "European Journal of Medicinal Chemistry",
title = "Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth",
volume = "156",
pages = "760-773",
doi = "10.1016/j.ejmech.2018.07.049"
}
Savic, N. D., Vojnovic, S., Glišić, B., Crochet, A., Pavić, A., Janjić, G., Pekmezovic, M., Opsenica, I., Fromm, K. M., Nikodinović-Runić, J.,& Đuran, M.. (2018). Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth. in European Journal of Medicinal Chemistry
Elsevier France-Editions Scientifiques Medicales Elsevier, Issy-Les-Moulineaux., 156, 760-773.
https://doi.org/10.1016/j.ejmech.2018.07.049
Savic ND, Vojnovic S, Glišić B, Crochet A, Pavić A, Janjić G, Pekmezovic M, Opsenica I, Fromm KM, Nikodinović-Runić J, Đuran M. Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth. in European Journal of Medicinal Chemistry. 2018;156:760-773.
doi:10.1016/j.ejmech.2018.07.049 .
Savic, Nada D., Vojnovic, Sandra, Glišić, Biljana, Crochet, Aurélien, Pavić, Aleksandar, Janjić, Goran, Pekmezovic, Marina, Opsenica, Igor, Fromm, Katharina M., Nikodinović-Runić, Jasmina, Đuran, Miloš, "Mononuclear silver(I) complexes with 1,7-phenanthroline as potent inhibitors of Candida growth" in European Journal of Medicinal Chemistry, 156 (2018):760-773,
https://doi.org/10.1016/j.ejmech.2018.07.049 . .
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Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib

Pavić, Aleksandar; Glišić, Biljana; Vojnovic, Sandra; Warzajtis, Beata; Savic, Nada D.; Antic, Marija; Radenković, Slavko; Janjić, Goran; Nikodinović-Runić, Jasmina; Rychlewska, Urszula; Đuran, Miloš

(Elsevier Science Inc, New York, 2017)

TY  - JOUR
AU  - Pavić, Aleksandar
AU  - Glišić, Biljana
AU  - Vojnovic, Sandra
AU  - Warzajtis, Beata
AU  - Savic, Nada D.
AU  - Antic, Marija
AU  - Radenković, Slavko
AU  - Janjić, Goran
AU  - Nikodinović-Runić, Jasmina
AU  - Rychlewska, Urszula
AU  - Đuran, Miloš
PY  - 2017
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/2136
AB  - Gold(III) complexes with 1,7- and 4,7-phenanthroline ligands, [AuCl3(1,7-phen-kappa N7)] (1) and [AuCl3(4,7-phen-kappa N4)] (2) were synthesized and structurally characterized by spectroscopic (NMR, IR and UV-vis) and single crystal X-ray diffraction techniques. In these complexes, 1,7- and 4,7-phenanthrolines are monodentatedly coordinated to the Au(III) ion through the N7 and N4 nitrogen atoms, respectively. In comparison to the clinically relevant anti-angiogenic compounds auranofin and sunitinib, gold(III)-phenanthroline complexes showed from 1.5- to 20-fold higher anti-angiogenic potential, and 13- and 118-fold lower toxicity. Among the tested compounds, complex 1 was the most potent and may be an excellent anti-angiogenic drug candidate, since it showed strong anti-angiogenic activity in zebrafish embryos achieving IC50 value (concentration resulting in an anti-angiogenic phenotype at 50% of embryos) of 2.89 mu M, while had low toxicity with LC50 value (the concentration inducing the lethal effect of 50% embryos) of 128 mu M. Molecular docking study revealed that both complexes and ligands could suppress angiogenesis targeting the multiple major regulators of angiogenesis, such as the vascular endothelial growth factor receptor (VEGFR-2), the matrix metalloproteases (MMP-2 and MMP-9), and thioredoxin reductase (TrxR1), where the complexes showed higher binding affinity in comparison to ligands, and particularly to auranofin, but comparable to sunitinib, an anti-angiogenic drug of clinical relevance.
PB  - Elsevier Science Inc, New York
T2  - Journal of Inorganic Biochemistry
T1  - Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib
VL  - 174
SP  - 156
EP  - 168
DO  - 10.1016/j.jinorgbio.2017.06.009
ER  - 
@article{
author = "Pavić, Aleksandar and Glišić, Biljana and Vojnovic, Sandra and Warzajtis, Beata and Savic, Nada D. and Antic, Marija and Radenković, Slavko and Janjić, Goran and Nikodinović-Runić, Jasmina and Rychlewska, Urszula and Đuran, Miloš",
year = "2017",
abstract = "Gold(III) complexes with 1,7- and 4,7-phenanthroline ligands, [AuCl3(1,7-phen-kappa N7)] (1) and [AuCl3(4,7-phen-kappa N4)] (2) were synthesized and structurally characterized by spectroscopic (NMR, IR and UV-vis) and single crystal X-ray diffraction techniques. In these complexes, 1,7- and 4,7-phenanthrolines are monodentatedly coordinated to the Au(III) ion through the N7 and N4 nitrogen atoms, respectively. In comparison to the clinically relevant anti-angiogenic compounds auranofin and sunitinib, gold(III)-phenanthroline complexes showed from 1.5- to 20-fold higher anti-angiogenic potential, and 13- and 118-fold lower toxicity. Among the tested compounds, complex 1 was the most potent and may be an excellent anti-angiogenic drug candidate, since it showed strong anti-angiogenic activity in zebrafish embryos achieving IC50 value (concentration resulting in an anti-angiogenic phenotype at 50% of embryos) of 2.89 mu M, while had low toxicity with LC50 value (the concentration inducing the lethal effect of 50% embryos) of 128 mu M. Molecular docking study revealed that both complexes and ligands could suppress angiogenesis targeting the multiple major regulators of angiogenesis, such as the vascular endothelial growth factor receptor (VEGFR-2), the matrix metalloproteases (MMP-2 and MMP-9), and thioredoxin reductase (TrxR1), where the complexes showed higher binding affinity in comparison to ligands, and particularly to auranofin, but comparable to sunitinib, an anti-angiogenic drug of clinical relevance.",
publisher = "Elsevier Science Inc, New York",
journal = "Journal of Inorganic Biochemistry",
title = "Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib",
volume = "174",
pages = "156-168",
doi = "10.1016/j.jinorgbio.2017.06.009"
}
Pavić, A., Glišić, B., Vojnovic, S., Warzajtis, B., Savic, N. D., Antic, M., Radenković, S., Janjić, G., Nikodinović-Runić, J., Rychlewska, U.,& Đuran, M.. (2017). Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib. in Journal of Inorganic Biochemistry
Elsevier Science Inc, New York., 174, 156-168.
https://doi.org/10.1016/j.jinorgbio.2017.06.009
Pavić A, Glišić B, Vojnovic S, Warzajtis B, Savic ND, Antic M, Radenković S, Janjić G, Nikodinović-Runić J, Rychlewska U, Đuran M. Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib. in Journal of Inorganic Biochemistry. 2017;174:156-168.
doi:10.1016/j.jinorgbio.2017.06.009 .
Pavić, Aleksandar, Glišić, Biljana, Vojnovic, Sandra, Warzajtis, Beata, Savic, Nada D., Antic, Marija, Radenković, Slavko, Janjić, Goran, Nikodinović-Runić, Jasmina, Rychlewska, Urszula, Đuran, Miloš, "Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib" in Journal of Inorganic Biochemistry, 174 (2017):156-168,
https://doi.org/10.1016/j.jinorgbio.2017.06.009 . .
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Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib

Pavić, Aleksandar; Glišić, Biljana; Vojnovic, Sandra; Warzajtis, Beata; Savic, Nada D.; Antic, Marija; Radenković, Slavko; Janjić, Goran; Nikodinović-Runić, Jasmina; Rychlewska, Urszula; Đuran, Miloš

(Elsevier Science Inc, New York, 2017)

TY  - JOUR
AU  - Pavić, Aleksandar
AU  - Glišić, Biljana
AU  - Vojnovic, Sandra
AU  - Warzajtis, Beata
AU  - Savic, Nada D.
AU  - Antic, Marija
AU  - Radenković, Slavko
AU  - Janjić, Goran
AU  - Nikodinović-Runić, Jasmina
AU  - Rychlewska, Urszula
AU  - Đuran, Miloš
PY  - 2017
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/2939
AB  - Gold(III) complexes with 1,7- and 4,7-phenanthroline ligands, [AuCl3(1,7-phen-kappa N7)] (1) and [AuCl3(4,7-phen-kappa N4)] (2) were synthesized and structurally characterized by spectroscopic (NMR, IR and UV-vis) and single crystal X-ray diffraction techniques. In these complexes, 1,7- and 4,7-phenanthrolines are monodentatedly coordinated to the Au(III) ion through the N7 and N4 nitrogen atoms, respectively. In comparison to the clinically relevant anti-angiogenic compounds auranofin and sunitinib, gold(III)-phenanthroline complexes showed from 1.5- to 20-fold higher anti-angiogenic potential, and 13- and 118-fold lower toxicity. Among the tested compounds, complex 1 was the most potent and may be an excellent anti-angiogenic drug candidate, since it showed strong anti-angiogenic activity in zebrafish embryos achieving IC50 value (concentration resulting in an anti-angiogenic phenotype at 50% of embryos) of 2.89 mu M, while had low toxicity with LC50 value (the concentration inducing the lethal effect of 50% embryos) of 128 mu M. Molecular docking study revealed that both complexes and ligands could suppress angiogenesis targeting the multiple major regulators of angiogenesis, such as the vascular endothelial growth factor receptor (VEGFR-2), the matrix metalloproteases (MMP-2 and MMP-9), and thioredoxin reductase (TrxR1), where the complexes showed higher binding affinity in comparison to ligands, and particularly to auranofin, but comparable to sunitinib, an anti-angiogenic drug of clinical relevance.
PB  - Elsevier Science Inc, New York
T2  - Journal of Inorganic Biochemistry
T1  - Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib
VL  - 174
SP  - 156
EP  - 168
DO  - 10.1016/j.jinorgbio.2017.06.009
ER  - 
@article{
author = "Pavić, Aleksandar and Glišić, Biljana and Vojnovic, Sandra and Warzajtis, Beata and Savic, Nada D. and Antic, Marija and Radenković, Slavko and Janjić, Goran and Nikodinović-Runić, Jasmina and Rychlewska, Urszula and Đuran, Miloš",
year = "2017",
abstract = "Gold(III) complexes with 1,7- and 4,7-phenanthroline ligands, [AuCl3(1,7-phen-kappa N7)] (1) and [AuCl3(4,7-phen-kappa N4)] (2) were synthesized and structurally characterized by spectroscopic (NMR, IR and UV-vis) and single crystal X-ray diffraction techniques. In these complexes, 1,7- and 4,7-phenanthrolines are monodentatedly coordinated to the Au(III) ion through the N7 and N4 nitrogen atoms, respectively. In comparison to the clinically relevant anti-angiogenic compounds auranofin and sunitinib, gold(III)-phenanthroline complexes showed from 1.5- to 20-fold higher anti-angiogenic potential, and 13- and 118-fold lower toxicity. Among the tested compounds, complex 1 was the most potent and may be an excellent anti-angiogenic drug candidate, since it showed strong anti-angiogenic activity in zebrafish embryos achieving IC50 value (concentration resulting in an anti-angiogenic phenotype at 50% of embryos) of 2.89 mu M, while had low toxicity with LC50 value (the concentration inducing the lethal effect of 50% embryos) of 128 mu M. Molecular docking study revealed that both complexes and ligands could suppress angiogenesis targeting the multiple major regulators of angiogenesis, such as the vascular endothelial growth factor receptor (VEGFR-2), the matrix metalloproteases (MMP-2 and MMP-9), and thioredoxin reductase (TrxR1), where the complexes showed higher binding affinity in comparison to ligands, and particularly to auranofin, but comparable to sunitinib, an anti-angiogenic drug of clinical relevance.",
publisher = "Elsevier Science Inc, New York",
journal = "Journal of Inorganic Biochemistry",
title = "Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib",
volume = "174",
pages = "156-168",
doi = "10.1016/j.jinorgbio.2017.06.009"
}
Pavić, A., Glišić, B., Vojnovic, S., Warzajtis, B., Savic, N. D., Antic, M., Radenković, S., Janjić, G., Nikodinović-Runić, J., Rychlewska, U.,& Đuran, M.. (2017). Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib. in Journal of Inorganic Biochemistry
Elsevier Science Inc, New York., 174, 156-168.
https://doi.org/10.1016/j.jinorgbio.2017.06.009
Pavić A, Glišić B, Vojnovic S, Warzajtis B, Savic ND, Antic M, Radenković S, Janjić G, Nikodinović-Runić J, Rychlewska U, Đuran M. Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib. in Journal of Inorganic Biochemistry. 2017;174:156-168.
doi:10.1016/j.jinorgbio.2017.06.009 .
Pavić, Aleksandar, Glišić, Biljana, Vojnovic, Sandra, Warzajtis, Beata, Savic, Nada D., Antic, Marija, Radenković, Slavko, Janjić, Goran, Nikodinović-Runić, Jasmina, Rychlewska, Urszula, Đuran, Miloš, "Mononuclear gold(III) complexes with phenanthroline ligands as efficient inhibitors of angiogenesis: A comparative study with auranofin and sunitinib" in Journal of Inorganic Biochemistry, 174 (2017):156-168,
https://doi.org/10.1016/j.jinorgbio.2017.06.009 . .
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Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa

Ilić-Tomić, Tatjana; Soković, Marina; Vojnovic, Sandra; Ciric, Ana; Veljić, Milan; Nikodinović-Runić, Jasmina; Novaković, Miroslav

(Georg Thieme Verlag Kg, Stuttgart, 2017)

TY  - JOUR
AU  - Ilić-Tomić, Tatjana
AU  - Soković, Marina
AU  - Vojnovic, Sandra
AU  - Ciric, Ana
AU  - Veljić, Milan
AU  - Nikodinović-Runić, Jasmina
AU  - Novaković, Miroslav
PY  - 2017
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/2199
AB  - Diarylheptanoids from the barks of Alnus viridis ssp. viridis (green alder) and Alnus glutinosa (black alder) were explored for anti-quorum sensing activity. Chemicals with anti-quorum sensing activity have recently been examined for antimicrobial applications. The anti-quorum sensing activity of the selected diarylheptanoids was determined using two biosensors, namely Pseudomonas aeruginosa PAO1 and Chromobacterium violaceum CV026. Although all of the investigated compounds negatively influenced the motility of P. aeruginosa PAO1, four were able to inhibit biofilm formation of this human opportunistic pathogen for 40-70%. Three of the diarylheptanoids (3, 4, and 5) negatively influenced the biosynthesis of pyocyanin, which is under the control of quorum sensing. Platyphyllenone (7) and hirsutenone (5) were able to inhibit the biosynthesis of violacein in C. violaceum CV026, with 5 being able to inhibit the synthesis of both biopigments. Only one of the tested diarylheptanoids (1) was shown to significantly decrease the production of acyl homoserine lactones (AHL) in P. aeruginosa PAO1, more specifically, production of the long chain N-(3-oxododecanoyl)- l-HSL. On the other side, four diarylheptanoids (2-5) significantly reduced the synthesis of 2-alkyl-4-quinolones, part of the P. aeruginosa quinolone-mediated signaling system. To properly assess therapeutic potential of these compounds, their in vitro antiproliferative effect on normal human lung fibroblasts was determined, with doses affecting cell proliferation between 10 and 100 mu g/mL. This study confirms that the barks of green and black alders are rich source of phytochemicals with a wide range of biological activities that could further be exploited as natural agents against bacterial contaminations and infections.
PB  - Georg Thieme Verlag Kg, Stuttgart
T2  - Planta Medica
T1  - Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa
VL  - 83
IS  - 01-02
SP  - 117
EP  - 125
DO  - 10.1055/s-0042-107674
ER  - 
@article{
author = "Ilić-Tomić, Tatjana and Soković, Marina and Vojnovic, Sandra and Ciric, Ana and Veljić, Milan and Nikodinović-Runić, Jasmina and Novaković, Miroslav",
year = "2017",
abstract = "Diarylheptanoids from the barks of Alnus viridis ssp. viridis (green alder) and Alnus glutinosa (black alder) were explored for anti-quorum sensing activity. Chemicals with anti-quorum sensing activity have recently been examined for antimicrobial applications. The anti-quorum sensing activity of the selected diarylheptanoids was determined using two biosensors, namely Pseudomonas aeruginosa PAO1 and Chromobacterium violaceum CV026. Although all of the investigated compounds negatively influenced the motility of P. aeruginosa PAO1, four were able to inhibit biofilm formation of this human opportunistic pathogen for 40-70%. Three of the diarylheptanoids (3, 4, and 5) negatively influenced the biosynthesis of pyocyanin, which is under the control of quorum sensing. Platyphyllenone (7) and hirsutenone (5) were able to inhibit the biosynthesis of violacein in C. violaceum CV026, with 5 being able to inhibit the synthesis of both biopigments. Only one of the tested diarylheptanoids (1) was shown to significantly decrease the production of acyl homoserine lactones (AHL) in P. aeruginosa PAO1, more specifically, production of the long chain N-(3-oxododecanoyl)- l-HSL. On the other side, four diarylheptanoids (2-5) significantly reduced the synthesis of 2-alkyl-4-quinolones, part of the P. aeruginosa quinolone-mediated signaling system. To properly assess therapeutic potential of these compounds, their in vitro antiproliferative effect on normal human lung fibroblasts was determined, with doses affecting cell proliferation between 10 and 100 mu g/mL. This study confirms that the barks of green and black alders are rich source of phytochemicals with a wide range of biological activities that could further be exploited as natural agents against bacterial contaminations and infections.",
publisher = "Georg Thieme Verlag Kg, Stuttgart",
journal = "Planta Medica",
title = "Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa",
volume = "83",
number = "01-02",
pages = "117-125",
doi = "10.1055/s-0042-107674"
}
Ilić-Tomić, T., Soković, M., Vojnovic, S., Ciric, A., Veljić, M., Nikodinović-Runić, J.,& Novaković, M.. (2017). Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa. in Planta Medica
Georg Thieme Verlag Kg, Stuttgart., 83(01-02), 117-125.
https://doi.org/10.1055/s-0042-107674
Ilić-Tomić T, Soković M, Vojnovic S, Ciric A, Veljić M, Nikodinović-Runić J, Novaković M. Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa. in Planta Medica. 2017;83(01-02):117-125.
doi:10.1055/s-0042-107674 .
Ilić-Tomić, Tatjana, Soković, Marina, Vojnovic, Sandra, Ciric, Ana, Veljić, Milan, Nikodinović-Runić, Jasmina, Novaković, Miroslav, "Diarylheptanoids from Alnus viridis ssp viridis and Alnus glutinosa: Modulation of Quorum Sensing Activity in Pseudomonas aeruginosa" in Planta Medica, 83, no. 01-02 (2017):117-125,
https://doi.org/10.1055/s-0042-107674 . .
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Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives

Bozinovic, Nina; Šegan, Sandra; Vojnovic, Sandra; Pavić, Aleksandar; Šolaja, Bogdan; Nikodinović-Runić, Jasmina; Opsenica, Igor

(Wiley, Hoboken, 2016)

TY  - JOUR
AU  - Bozinovic, Nina
AU  - Šegan, Sandra
AU  - Vojnovic, Sandra
AU  - Pavić, Aleksandar
AU  - Šolaja, Bogdan
AU  - Nikodinović-Runić, Jasmina
AU  - Opsenica, Igor
PY  - 2016
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/1887
AB  - A novel series of thiepine derivatives were synthesized and evaluated as potential antimicrobials. All the synthesized compounds were evaluated for their antimicrobial activities in vitro against the fungi Candida albicans (ATCC 10231), C.parapsilosis (clinical isolate), Gram-negative bacterium Pseudomonas aeruginosa (ATCC 44752), and Gram-positive bacterium Staphylococcus aureus (ATCC 25923). Synthesized compounds showed higher antifungal activity than antibacterial activity, indicating that they could be used as selective antimicrobials. Selected thiepines efficiently inhibited Candida hyphae formation, a trait necessary for their pathogenicity. Thiepine 8-phenyl[1]benzothiepino[3,2-c]pyridine (16) efficiently killed Candida albicans at 15.6g/mL and showed no embryotoxicity at 75g/mL. Derivative 8-[4-(4,5-dihydro-1H-imidazol-2-yl)phenyl][1]benzothiepino[3,2-c]pyridine (23) caused significant hemolysis and in vitro DNA interaction. The position of the phenyl ring was essential for the antifungal activity, while the electronic effects of the substituents did not significantly influence activity. Results obtained from in vivo embryotoxicity on zebrafish (Danio rerio) encourage further structure optimizations.
PB  - Wiley, Hoboken
T2  - Chemical Biology & Drug Design
T1  - Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives
VL  - 88
IS  - 6
SP  - 795
EP  - 806
DO  - 10.1111/cbdd.12809
ER  - 
@article{
author = "Bozinovic, Nina and Šegan, Sandra and Vojnovic, Sandra and Pavić, Aleksandar and Šolaja, Bogdan and Nikodinović-Runić, Jasmina and Opsenica, Igor",
year = "2016",
abstract = "A novel series of thiepine derivatives were synthesized and evaluated as potential antimicrobials. All the synthesized compounds were evaluated for their antimicrobial activities in vitro against the fungi Candida albicans (ATCC 10231), C.parapsilosis (clinical isolate), Gram-negative bacterium Pseudomonas aeruginosa (ATCC 44752), and Gram-positive bacterium Staphylococcus aureus (ATCC 25923). Synthesized compounds showed higher antifungal activity than antibacterial activity, indicating that they could be used as selective antimicrobials. Selected thiepines efficiently inhibited Candida hyphae formation, a trait necessary for their pathogenicity. Thiepine 8-phenyl[1]benzothiepino[3,2-c]pyridine (16) efficiently killed Candida albicans at 15.6g/mL and showed no embryotoxicity at 75g/mL. Derivative 8-[4-(4,5-dihydro-1H-imidazol-2-yl)phenyl][1]benzothiepino[3,2-c]pyridine (23) caused significant hemolysis and in vitro DNA interaction. The position of the phenyl ring was essential for the antifungal activity, while the electronic effects of the substituents did not significantly influence activity. Results obtained from in vivo embryotoxicity on zebrafish (Danio rerio) encourage further structure optimizations.",
publisher = "Wiley, Hoboken",
journal = "Chemical Biology & Drug Design",
title = "Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives",
volume = "88",
number = "6",
pages = "795-806",
doi = "10.1111/cbdd.12809"
}
Bozinovic, N., Šegan, S., Vojnovic, S., Pavić, A., Šolaja, B., Nikodinović-Runić, J.,& Opsenica, I.. (2016). Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives. in Chemical Biology & Drug Design
Wiley, Hoboken., 88(6), 795-806.
https://doi.org/10.1111/cbdd.12809
Bozinovic N, Šegan S, Vojnovic S, Pavić A, Šolaja B, Nikodinović-Runić J, Opsenica I. Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives. in Chemical Biology & Drug Design. 2016;88(6):795-806.
doi:10.1111/cbdd.12809 .
Bozinovic, Nina, Šegan, Sandra, Vojnovic, Sandra, Pavić, Aleksandar, Šolaja, Bogdan, Nikodinović-Runić, Jasmina, Opsenica, Igor, "Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives" in Chemical Biology & Drug Design, 88, no. 6 (2016):795-806,
https://doi.org/10.1111/cbdd.12809 . .
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Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives

Bozinovic, Nina; Šegan, Sandra; Vojnovic, Sandra; Pavić, Aleksandar; Šolaja, Bogdan; Nikodinović-Runić, Jasmina; Opsenica, Igor

(Wiley, Hoboken, 2016)

TY  - JOUR
AU  - Bozinovic, Nina
AU  - Šegan, Sandra
AU  - Vojnovic, Sandra
AU  - Pavić, Aleksandar
AU  - Šolaja, Bogdan
AU  - Nikodinović-Runić, Jasmina
AU  - Opsenica, Igor
PY  - 2016
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3192
AB  - A novel series of thiepine derivatives were synthesized and evaluated as potential antimicrobials. All the synthesized compounds were evaluated for their antimicrobial activities in vitro against the fungi Candida albicans (ATCC 10231), C.parapsilosis (clinical isolate), Gram-negative bacterium Pseudomonas aeruginosa (ATCC 44752), and Gram-positive bacterium Staphylococcus aureus (ATCC 25923). Synthesized compounds showed higher antifungal activity than antibacterial activity, indicating that they could be used as selective antimicrobials. Selected thiepines efficiently inhibited Candida hyphae formation, a trait necessary for their pathogenicity. Thiepine 8-phenyl[1]benzothiepino[3,2-c]pyridine (16) efficiently killed Candida albicans at 15.6g/mL and showed no embryotoxicity at 75g/mL. Derivative 8-[4-(4,5-dihydro-1H-imidazol-2-yl)phenyl][1]benzothiepino[3,2-c]pyridine (23) caused significant hemolysis and in vitro DNA interaction. The position of the phenyl ring was essential for the antifungal activity, while the electronic effects of the substituents did not significantly influence activity. Results obtained from in vivo embryotoxicity on zebrafish (Danio rerio) encourage further structure optimizations.
PB  - Wiley, Hoboken
T2  - Chemical Biology & Drug Design
T1  - Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives
VL  - 88
IS  - 6
SP  - 795
EP  - 806
DO  - 10.1111/cbdd.12809
ER  - 
@article{
author = "Bozinovic, Nina and Šegan, Sandra and Vojnovic, Sandra and Pavić, Aleksandar and Šolaja, Bogdan and Nikodinović-Runić, Jasmina and Opsenica, Igor",
year = "2016",
abstract = "A novel series of thiepine derivatives were synthesized and evaluated as potential antimicrobials. All the synthesized compounds were evaluated for their antimicrobial activities in vitro against the fungi Candida albicans (ATCC 10231), C.parapsilosis (clinical isolate), Gram-negative bacterium Pseudomonas aeruginosa (ATCC 44752), and Gram-positive bacterium Staphylococcus aureus (ATCC 25923). Synthesized compounds showed higher antifungal activity than antibacterial activity, indicating that they could be used as selective antimicrobials. Selected thiepines efficiently inhibited Candida hyphae formation, a trait necessary for their pathogenicity. Thiepine 8-phenyl[1]benzothiepino[3,2-c]pyridine (16) efficiently killed Candida albicans at 15.6g/mL and showed no embryotoxicity at 75g/mL. Derivative 8-[4-(4,5-dihydro-1H-imidazol-2-yl)phenyl][1]benzothiepino[3,2-c]pyridine (23) caused significant hemolysis and in vitro DNA interaction. The position of the phenyl ring was essential for the antifungal activity, while the electronic effects of the substituents did not significantly influence activity. Results obtained from in vivo embryotoxicity on zebrafish (Danio rerio) encourage further structure optimizations.",
publisher = "Wiley, Hoboken",
journal = "Chemical Biology & Drug Design",
title = "Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives",
volume = "88",
number = "6",
pages = "795-806",
doi = "10.1111/cbdd.12809"
}
Bozinovic, N., Šegan, S., Vojnovic, S., Pavić, A., Šolaja, B., Nikodinović-Runić, J.,& Opsenica, I.. (2016). Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives. in Chemical Biology & Drug Design
Wiley, Hoboken., 88(6), 795-806.
https://doi.org/10.1111/cbdd.12809
Bozinovic N, Šegan S, Vojnovic S, Pavić A, Šolaja B, Nikodinović-Runić J, Opsenica I. Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives. in Chemical Biology & Drug Design. 2016;88(6):795-806.
doi:10.1111/cbdd.12809 .
Bozinovic, Nina, Šegan, Sandra, Vojnovic, Sandra, Pavić, Aleksandar, Šolaja, Bogdan, Nikodinović-Runić, Jasmina, Opsenica, Igor, "Synthesis and anti-Candida activity of novel benzothiepino[3,2-c]pyridine derivatives" in Chemical Biology & Drug Design, 88, no. 6 (2016):795-806,
https://doi.org/10.1111/cbdd.12809 . .
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