Živančević, Katarina

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orcid::0000-0002-2369-3060
  • Živančević, Katarina (2)
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Author's Bibliography

Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats

Vukelić, Dragana; Buha-Đorđević, Aleksandra; Anđelković, Milena; Antonijević Miljaković, Evica; Baralić, Katarina; Živančević, Katarina; Bulat, Petar; Radovanović, Jelena; Đukić-Ćosić, Danijela; Antonijević, Biljana; Bulat, Zorica

(2023)

TY  - JOUR
AU  - Vukelić, Dragana
AU  - Buha-Đorđević, Aleksandra
AU  - Anđelković, Milena
AU  - Antonijević Miljaković, Evica
AU  - Baralić, Katarina
AU  - Živančević, Katarina
AU  - Bulat, Petar
AU  - Radovanović, Jelena
AU  - Đukić-Ćosić, Danijela
AU  - Antonijević, Biljana
AU  - Bulat, Zorica
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10809
AB  - Recent data indicate that lead (Pb) can induce adverse effects even at low exposure levels. Moreover, the corresponding mechanisms of low Pb toxicity have not been well identified. In the liver and the kidneys, Pb was found to induce various toxic mechanisms leading to organ physiological disruption. Therefore, the purpose of the study was to simulate low-dose Pb exposure in an animal model with the aim of assessing oxidative status and essential element levels as the main mechanism of Pb toxicity in the liver and kidneys. Furthermore, dose–response modelling was performed in order to determine the benchmark dose (BMD). Forty-two male Wistar rats were divided into seven groups: one control group, and six groups treated for 28 days with 0.1, 0.5, 1, 3, 7, and 15 mg Pb/kg b.w./day, respectively. Oxidative status parameters (superoxide dismutase activity (SOD), superoxide anion radical (O2−), malondialdehyde (MDA), total sulfhydryl groups (SHG), and advanced oxidation protein products (AOPP)) and Pb, copper (Cu), zinc (Zn), manganese (Mn), and iron (Fe) levels were measured. Lowering Cu levels (BMD: 2.7 ng/kg b.w./day), raising AOPP levels (BMD: 0.25 µg/kg b.w./day) in the liver, and inhibiting SOD (BMD: 1.3 ng/kg b.w./day) in the kidneys appear to be the main mechanisms of Pb toxicity. The lowest BMD was derived for a decrease in Cu levels in liver, indicating that this effect is the most sensitive.
T2  - Toxics
T1  - Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats
VL  - 11
IS  - 3
SP  - 256
DO  - 10.3390/toxics11030256
ER  - 
@article{
author = "Vukelić, Dragana and Buha-Đorđević, Aleksandra and Anđelković, Milena and Antonijević Miljaković, Evica and Baralić, Katarina and Živančević, Katarina and Bulat, Petar and Radovanović, Jelena and Đukić-Ćosić, Danijela and Antonijević, Biljana and Bulat, Zorica",
year = "2023",
abstract = "Recent data indicate that lead (Pb) can induce adverse effects even at low exposure levels. Moreover, the corresponding mechanisms of low Pb toxicity have not been well identified. In the liver and the kidneys, Pb was found to induce various toxic mechanisms leading to organ physiological disruption. Therefore, the purpose of the study was to simulate low-dose Pb exposure in an animal model with the aim of assessing oxidative status and essential element levels as the main mechanism of Pb toxicity in the liver and kidneys. Furthermore, dose–response modelling was performed in order to determine the benchmark dose (BMD). Forty-two male Wistar rats were divided into seven groups: one control group, and six groups treated for 28 days with 0.1, 0.5, 1, 3, 7, and 15 mg Pb/kg b.w./day, respectively. Oxidative status parameters (superoxide dismutase activity (SOD), superoxide anion radical (O2−), malondialdehyde (MDA), total sulfhydryl groups (SHG), and advanced oxidation protein products (AOPP)) and Pb, copper (Cu), zinc (Zn), manganese (Mn), and iron (Fe) levels were measured. Lowering Cu levels (BMD: 2.7 ng/kg b.w./day), raising AOPP levels (BMD: 0.25 µg/kg b.w./day) in the liver, and inhibiting SOD (BMD: 1.3 ng/kg b.w./day) in the kidneys appear to be the main mechanisms of Pb toxicity. The lowest BMD was derived for a decrease in Cu levels in liver, indicating that this effect is the most sensitive.",
journal = "Toxics",
title = "Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats",
volume = "11",
number = "3",
pages = "256",
doi = "10.3390/toxics11030256"
}
Vukelić, D., Buha-Đorđević, A., Anđelković, M., Antonijević Miljaković, E., Baralić, K., Živančević, K., Bulat, P., Radovanović, J., Đukić-Ćosić, D., Antonijević, B.,& Bulat, Z.. (2023). Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats. in Toxics, 11(3), 256.
https://doi.org/10.3390/toxics11030256
Vukelić D, Buha-Đorđević A, Anđelković M, Antonijević Miljaković E, Baralić K, Živančević K, Bulat P, Radovanović J, Đukić-Ćosić D, Antonijević B, Bulat Z. Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats. in Toxics. 2023;11(3):256.
doi:10.3390/toxics11030256 .
Vukelić, Dragana, Buha-Đorđević, Aleksandra, Anđelković, Milena, Antonijević Miljaković, Evica, Baralić, Katarina, Živančević, Katarina, Bulat, Petar, Radovanović, Jelena, Đukić-Ćosić, Danijela, Antonijević, Biljana, Bulat, Zorica, "Subacute Exposure to Low Pb Doses Promotes Oxidative Stress in the Kidneys and Copper Disturbances in the Liver of Male Rats" in Toxics, 11, no. 3 (2023):256,
https://doi.org/10.3390/toxics11030256 . .
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Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis

Baralić, Katarina; Živančević, Katarina; Jorgovanović, Dragica; Bojanin, Dragana; Radovanović, Jelena; Gojković, Tamara; Buha-Đorđević, Aleksandra; Ćurčić, Marijana; Mandinić, Zoran; Bulat, Zorica; Antonijević, Biljana; Đukić-Ćosić, Danijela

(2021)

TY  - JOUR
AU  - Baralić, Katarina
AU  - Živančević, Katarina
AU  - Jorgovanović, Dragica
AU  - Bojanin, Dragana
AU  - Radovanović, Jelena
AU  - Gojković, Tamara
AU  - Buha-Đorđević, Aleksandra
AU  - Ćurčić, Marijana
AU  - Mandinić, Zoran
AU  - Bulat, Zorica
AU  - Antonijević, Biljana
AU  - Đukić-Ćosić, Danijela
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9836
AB  - Linkage between bis(2-ethylhexyl) phthalate (DEHP), dibutyl phthalate (DBP), and bisphenol A (BPA) coexposure and type 2 diabetes mellitus (T2DM), as well as ability of multi-strained probiotic to reduce DEHP, DBP and BPA mixture-induced oxidative damage in rat pancreas were investigated. The Comparative Toxicogenomics Database, Cytoscape software and ToppGene Suite were used for data-mining. Animals were sorted into seven groups (n = 6): (1) Control group: corn oil, (2) P: probiotic: Saccharomyces boulardii + Lactobacillus rhamnosus + Lactobacillus plantarum LP 6595 + Lactobacillus plantarum HEAL9; (3) DEHP: 50 mg/kg b.w./day, (4) DBP: 50 mg/kg b.w./day, (5) BPA: 25 mg/kg b.w./day, and (6) MIX: 50 mg/kg b.w./day DEHP + 50 mg/kg b.w/ day DBP + 25 mg/kg b.w./day BPA; (7) MIX + P. Rats were sacrificed after 28 days of oral exposure. In silico investigation highlighted 44 DEHP, DBP and BPA mutual genes linked to the T2DM, while apoptosis and oxidative stress were highlighted as the main mechanisms of DEHP, DBP and BPA mixture-linked T2DM. In vivo experiment confirmed the presence of significant changes in redox status parameters (TOS, SOD and SH groups) only in the MIX group, indicating possible additive effects, while probiotic ameliorated mixture-induced redox status changes in rat pancreatic tissue.
T2  - Food and Chemical Toxicology
T1  - Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis
VL  - 154
DO  - 10.1016/j.fct.2021.112325
ER  - 
@article{
author = "Baralić, Katarina and Živančević, Katarina and Jorgovanović, Dragica and Bojanin, Dragana and Radovanović, Jelena and Gojković, Tamara and Buha-Đorđević, Aleksandra and Ćurčić, Marijana and Mandinić, Zoran and Bulat, Zorica and Antonijević, Biljana and Đukić-Ćosić, Danijela",
year = "2021",
abstract = "Linkage between bis(2-ethylhexyl) phthalate (DEHP), dibutyl phthalate (DBP), and bisphenol A (BPA) coexposure and type 2 diabetes mellitus (T2DM), as well as ability of multi-strained probiotic to reduce DEHP, DBP and BPA mixture-induced oxidative damage in rat pancreas were investigated. The Comparative Toxicogenomics Database, Cytoscape software and ToppGene Suite were used for data-mining. Animals were sorted into seven groups (n = 6): (1) Control group: corn oil, (2) P: probiotic: Saccharomyces boulardii + Lactobacillus rhamnosus + Lactobacillus plantarum LP 6595 + Lactobacillus plantarum HEAL9; (3) DEHP: 50 mg/kg b.w./day, (4) DBP: 50 mg/kg b.w./day, (5) BPA: 25 mg/kg b.w./day, and (6) MIX: 50 mg/kg b.w./day DEHP + 50 mg/kg b.w/ day DBP + 25 mg/kg b.w./day BPA; (7) MIX + P. Rats were sacrificed after 28 days of oral exposure. In silico investigation highlighted 44 DEHP, DBP and BPA mutual genes linked to the T2DM, while apoptosis and oxidative stress were highlighted as the main mechanisms of DEHP, DBP and BPA mixture-linked T2DM. In vivo experiment confirmed the presence of significant changes in redox status parameters (TOS, SOD and SH groups) only in the MIX group, indicating possible additive effects, while probiotic ameliorated mixture-induced redox status changes in rat pancreatic tissue.",
journal = "Food and Chemical Toxicology",
title = "Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis",
volume = "154",
doi = "10.1016/j.fct.2021.112325"
}
Baralić, K., Živančević, K., Jorgovanović, D., Bojanin, D., Radovanović, J., Gojković, T., Buha-Đorđević, A., Ćurčić, M., Mandinić, Z., Bulat, Z., Antonijević, B.,& Đukić-Ćosić, D.. (2021). Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis. in Food and Chemical Toxicology, 154.
https://doi.org/10.1016/j.fct.2021.112325
Baralić K, Živančević K, Jorgovanović D, Bojanin D, Radovanović J, Gojković T, Buha-Đorđević A, Ćurčić M, Mandinić Z, Bulat Z, Antonijević B, Đukić-Ćosić D. Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis. in Food and Chemical Toxicology. 2021;154.
doi:10.1016/j.fct.2021.112325 .
Baralić, Katarina, Živančević, Katarina, Jorgovanović, Dragica, Bojanin, Dragana, Radovanović, Jelena, Gojković, Tamara, Buha-Đorđević, Aleksandra, Ćurčić, Marijana, Mandinić, Zoran, Bulat, Zorica, Antonijević, Biljana, Đukić-Ćosić, Danijela, "Probiotic reduced the impact of phthalates and bisphenol A mixture on type 2 diabetes mellitus development: Merging bioinformatics with in vivo analysis" in Food and Chemical Toxicology, 154 (2021),
https://doi.org/10.1016/j.fct.2021.112325 . .
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