Martinović, Jelena

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Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model

Guševac Stojanović, Ivana; Tatalović, Nikola; Veljković, Filip; Martinović, Jelena; Zarić Kontić, Marina; Blagojević, Duško; Stojanović, Zoran; Drakulić, Dunja

(European College of Neuropsychopharmacology (ECNP), 2022)

TY  - CONF
AU  - Guševac Stojanović, Ivana
AU  - Tatalović, Nikola
AU  - Veljković, Filip
AU  - Martinović, Jelena
AU  - Zarić Kontić, Marina
AU  - Blagojević, Duško
AU  - Stojanović, Zoran
AU  - Drakulić, Dunja
PY  - 2022
UR  - https://www.ecnp.eu/congress2022/ECNPcongress/programme/programme#!abstractdetails/0000506150
UR  - http://radar.ibiss.bg.ac.rs/handle/123456789/5315
AB  - Introduction: Cerebral hypoperfusion (CH), a reduced cerebral blood flow, characteristic for aging and neurodegenerative disorders, might be associated with a pro-oxidative state in the brain due to the generation of reactive oxygen species (ROS) that cause neuronal damage. These overgenerated pro-oxidants might be reduced, disabled and neutralized by the endogenous antioxidant enzymes, including superoxide dismutase (SOD) and catalase (CAT). A sex steroid hormone, progesterone, in several experimental models of neuronal injury exerts anti-oxidative properties upregulating anti-oxidative molecules and thus promoting neuroprotection. However, its efficacy in the state of CH is still unknown and it is necessary to better understand the mechanism underlying this hormone’s neuroprotective effects.
Aim: We investigated whether progesterone is able to modulate CH-induced pro-oxidative/anti-oxidative imbalance, as well as SOD and CAT activities, in the prefrontal cortex of three-month-old male Wistar rats subjected to permanent bilateral common carotid artery occlusion (2VO).
Methods: The appropriate actions were undertaken to reduce the distress of the animals in agreement with the European Community Council Directive of 86/609/EEC and 010/63/EU for animal experiments. All experimental procedures were allowed by the Ethical Committee for the Use of Laboratory Animals of VINČA Institute of Nuclear Sciences - National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, Republic of Serbia (protocol authorization numbers 02/11 and 323-07-04253/2016-05). Following chloral hydrate anaesthesia, 8 rats randomly assigned in 2VO groups were double occluded with 5–0 silk suture, while 4 animals from sham operated group were subjected to the same surgical procedure but without actual ligation of carotid arteries. Four hours following the surgical procedure animals from sham operated group, used as controls, were subcutaneously treated with vehicle (commercial flax oil, 1 mg/kg/day, S + V), while animals in 2VO groups were subjected to either progesterone (1.7 mg/kg/day, 2VO + P) or vehicle (commercial flax oil, 1 mg/kg/day, 2VO + V). Following 7 days lasting treatments, pro-oxidative/anti-oxidative balance was assessed according to the method of Alamdari et al. [1]; while activities of anti-oxidative enzymes were determined as described in the study by Tatalović et al. [2]. One-way analysis of variance (ANOVA) test followed by Tukey’s post hoc test was employed to analyse data. The values of p < 0.05 or less were considered statistically significant.
Results: Obtained results demonstrate that compared to controls, 2VO and vehicle treatment induced a significant increase of pro-oxidants levels (p < 0.01) as well as the activities of both investigated anti-oxidative enzymes, although only the CAT activity was significantly increased (p < 0.05). Following progesterone treatment, pro-oxidants levels were lowered to the control level which caused the difference between the 2VO groups (p < 0.05). In parallel, no statistically significant change in SOD activity was observed, while CAT was upregulated (p < 0.05).
Conclusion: Presented results suggest that in the prefrontal cortex in the state of CH, progesterone, by modulating the CAT activity, downregulates overgenerated reactive species, reduces CH-induced oxidative stress and exerts anti-oxidative outcomes.
The Ministry of Education, Science and Technological Development


Disclosure statement: Financially supported by The Ministry of Education, Science and Technological Development, grants No 451-03-1/2022-14/13 and 451-03-68/2022-14/ 200007 and 13451-03-68/2022-14/ 200175




 
[1] Alamdari, D.H., Ghayour-Mobarhan, M., Tavallaie, S., Parizadeh, M.R., Moohebati, M., Ghafoori, F., et al., 2008. Prooxidant–antioxidant balance as a new risk factor in patients with angiographically defined coronary artery disease. Clinical Biochemistry 41(6),375–380. 
[2] Tatalović, N., Vidonja Uzelac, T., Oreščanin Dušić, Z., Nikolić-Kokić, A., Bresjanac, M., Blagojević, D., 2021. Ibogaine-Mediated ROS/Antioxidant Elevation in Isolated Rat Uterus Is β-Adrenergic Receptors and KATP Channels Mediated. Antioxidants 10(11),1792.
PB  - European College of Neuropsychopharmacology (ECNP)
C3  - The 35th ECNP Congress; 2023 Oct 7-10; Barcelona, Spain
T1  - Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model
IS  - P.0477
UR  - https://hdl.handle.net/21.15107/rcub_ibiss_5315
ER  - 
@conference{
author = "Guševac Stojanović, Ivana and Tatalović, Nikola and Veljković, Filip and Martinović, Jelena and Zarić Kontić, Marina and Blagojević, Duško and Stojanović, Zoran and Drakulić, Dunja",
year = "2022",
abstract = "Introduction: Cerebral hypoperfusion (CH), a reduced cerebral blood flow, characteristic for aging and neurodegenerative disorders, might be associated with a pro-oxidative state in the brain due to the generation of reactive oxygen species (ROS) that cause neuronal damage. These overgenerated pro-oxidants might be reduced, disabled and neutralized by the endogenous antioxidant enzymes, including superoxide dismutase (SOD) and catalase (CAT). A sex steroid hormone, progesterone, in several experimental models of neuronal injury exerts anti-oxidative properties upregulating anti-oxidative molecules and thus promoting neuroprotection. However, its efficacy in the state of CH is still unknown and it is necessary to better understand the mechanism underlying this hormone’s neuroprotective effects.
Aim: We investigated whether progesterone is able to modulate CH-induced pro-oxidative/anti-oxidative imbalance, as well as SOD and CAT activities, in the prefrontal cortex of three-month-old male Wistar rats subjected to permanent bilateral common carotid artery occlusion (2VO).
Methods: The appropriate actions were undertaken to reduce the distress of the animals in agreement with the European Community Council Directive of 86/609/EEC and 010/63/EU for animal experiments. All experimental procedures were allowed by the Ethical Committee for the Use of Laboratory Animals of VINČA Institute of Nuclear Sciences - National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, Republic of Serbia (protocol authorization numbers 02/11 and 323-07-04253/2016-05). Following chloral hydrate anaesthesia, 8 rats randomly assigned in 2VO groups were double occluded with 5–0 silk suture, while 4 animals from sham operated group were subjected to the same surgical procedure but without actual ligation of carotid arteries. Four hours following the surgical procedure animals from sham operated group, used as controls, were subcutaneously treated with vehicle (commercial flax oil, 1 mg/kg/day, S + V), while animals in 2VO groups were subjected to either progesterone (1.7 mg/kg/day, 2VO + P) or vehicle (commercial flax oil, 1 mg/kg/day, 2VO + V). Following 7 days lasting treatments, pro-oxidative/anti-oxidative balance was assessed according to the method of Alamdari et al. [1]; while activities of anti-oxidative enzymes were determined as described in the study by Tatalović et al. [2]. One-way analysis of variance (ANOVA) test followed by Tukey’s post hoc test was employed to analyse data. The values of p < 0.05 or less were considered statistically significant.
Results: Obtained results demonstrate that compared to controls, 2VO and vehicle treatment induced a significant increase of pro-oxidants levels (p < 0.01) as well as the activities of both investigated anti-oxidative enzymes, although only the CAT activity was significantly increased (p < 0.05). Following progesterone treatment, pro-oxidants levels were lowered to the control level which caused the difference between the 2VO groups (p < 0.05). In parallel, no statistically significant change in SOD activity was observed, while CAT was upregulated (p < 0.05).
Conclusion: Presented results suggest that in the prefrontal cortex in the state of CH, progesterone, by modulating the CAT activity, downregulates overgenerated reactive species, reduces CH-induced oxidative stress and exerts anti-oxidative outcomes.
The Ministry of Education, Science and Technological Development


Disclosure statement: Financially supported by The Ministry of Education, Science and Technological Development, grants No 451-03-1/2022-14/13 and 451-03-68/2022-14/ 200007 and 13451-03-68/2022-14/ 200175




 
[1] Alamdari, D.H., Ghayour-Mobarhan, M., Tavallaie, S., Parizadeh, M.R., Moohebati, M., Ghafoori, F., et al., 2008. Prooxidant–antioxidant balance as a new risk factor in patients with angiographically defined coronary artery disease. Clinical Biochemistry 41(6),375–380. 
[2] Tatalović, N., Vidonja Uzelac, T., Oreščanin Dušić, Z., Nikolić-Kokić, A., Bresjanac, M., Blagojević, D., 2021. Ibogaine-Mediated ROS/Antioxidant Elevation in Isolated Rat Uterus Is β-Adrenergic Receptors and KATP Channels Mediated. Antioxidants 10(11),1792.",
publisher = "European College of Neuropsychopharmacology (ECNP)",
journal = "The 35th ECNP Congress; 2023 Oct 7-10; Barcelona, Spain",
title = "Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model",
number = "P.0477",
url = "https://hdl.handle.net/21.15107/rcub_ibiss_5315"
}
Guševac Stojanović, I., Tatalović, N., Veljković, F., Martinović, J., Zarić Kontić, M., Blagojević, D., Stojanović, Z.,& Drakulić, D.. (2022). Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model. in The 35th ECNP Congress; 2023 Oct 7-10; Barcelona, Spain
European College of Neuropsychopharmacology (ECNP).(P.0477).
https://hdl.handle.net/21.15107/rcub_ibiss_5315
Guševac Stojanović I, Tatalović N, Veljković F, Martinović J, Zarić Kontić M, Blagojević D, Stojanović Z, Drakulić D. Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model. in The 35th ECNP Congress; 2023 Oct 7-10; Barcelona, Spain. 2022;(P.0477).
https://hdl.handle.net/21.15107/rcub_ibiss_5315 .
Guševac Stojanović, Ivana, Tatalović, Nikola, Veljković, Filip, Martinović, Jelena, Zarić Kontić, Marina, Blagojević, Duško, Stojanović, Zoran, Drakulić, Dunja, "Progesterone exerts protective effects in rat permanent bilateral common carotid artery occlusion model" in The 35th ECNP Congress; 2023 Oct 7-10; Barcelona, Spain, no. P.0477 (2022),
https://hdl.handle.net/21.15107/rcub_ibiss_5315 .

Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats

Guševac Stojanović, Ivana; Todorović, Ana; Pejić, Snežana; Tatalović, Nikola; Blagojević, Duško; Martinović, Jelena; Grković, Ivana; Mitrović, Nataša; Zarić, Marina; Drakulić, Dunja

(Belgrade: Society of Physical Chemists of Serbia, 2021)

TY  - CONF
AU  - Guševac Stojanović, Ivana
AU  - Todorović, Ana
AU  - Pejić, Snežana
AU  - Tatalović, Nikola
AU  - Blagojević, Duško
AU  - Martinović, Jelena
AU  - Grković, Ivana
AU  - Mitrović, Nataša
AU  - Zarić, Marina
AU  - Drakulić, Dunja
PY  - 2021
UR  - http://radar.ibiss.bg.ac.rs/handle/123456789/5247
AB  - Numerous natural compounds, like progesterone (P4), a sex steroid hormone, are highlighted as promising agents for treatment of different disorders including prolonged disturbance of blood flow. However, its action on several oxidative stress markers (pro/antioxidant balance, products of lipid peroxidation and phosphatidylcholine to lysophosphatidylcholine intensity ratio) and one of the major components of antioxidant system, superoxide dismutase in rat prefrontal cortex (PFC) following permanent bilateral occlusion of common carotid arteries (2VO) is not completely investigated. According to the obtained results, levels of investigated oxidative stress markers and SOD activity were altered in 2VO animals treated with vehicle, while P4 treatment returned them to control values. Overall, presented data indicate that P4 might manifest antioxidative features in PFC of 2VO rats.
PB  - Belgrade: Society of Physical Chemists of Serbia
C3  - Proceeding: 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry: Physical Chemistry 2021: the Conference is dedicated to the 30th Anniversary of the founding of the Society of Physical Chemists of Serbia and 100th Anniversary of Bray-Liebhafsky reaction. Vol. 1; 2021 Sep 20-24; Belgrade, Serbia
T1  - Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats
VL  - 1
SP  - 25
EP  - 32
UR  - https://hdl.handle.net/21.15107/rcub_ibiss_5247
ER  - 
@conference{
author = "Guševac Stojanović, Ivana and Todorović, Ana and Pejić, Snežana and Tatalović, Nikola and Blagojević, Duško and Martinović, Jelena and Grković, Ivana and Mitrović, Nataša and Zarić, Marina and Drakulić, Dunja",
year = "2021",
abstract = "Numerous natural compounds, like progesterone (P4), a sex steroid hormone, are highlighted as promising agents for treatment of different disorders including prolonged disturbance of blood flow. However, its action on several oxidative stress markers (pro/antioxidant balance, products of lipid peroxidation and phosphatidylcholine to lysophosphatidylcholine intensity ratio) and one of the major components of antioxidant system, superoxide dismutase in rat prefrontal cortex (PFC) following permanent bilateral occlusion of common carotid arteries (2VO) is not completely investigated. According to the obtained results, levels of investigated oxidative stress markers and SOD activity were altered in 2VO animals treated with vehicle, while P4 treatment returned them to control values. Overall, presented data indicate that P4 might manifest antioxidative features in PFC of 2VO rats.",
publisher = "Belgrade: Society of Physical Chemists of Serbia",
journal = "Proceeding: 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry: Physical Chemistry 2021: the Conference is dedicated to the 30th Anniversary of the founding of the Society of Physical Chemists of Serbia and 100th Anniversary of Bray-Liebhafsky reaction. Vol. 1; 2021 Sep 20-24; Belgrade, Serbia",
title = "Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats",
volume = "1",
pages = "25-32",
url = "https://hdl.handle.net/21.15107/rcub_ibiss_5247"
}
Guševac Stojanović, I., Todorović, A., Pejić, S., Tatalović, N., Blagojević, D., Martinović, J., Grković, I., Mitrović, N., Zarić, M.,& Drakulić, D.. (2021). Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats. in Proceeding: 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry: Physical Chemistry 2021: the Conference is dedicated to the 30th Anniversary of the founding of the Society of Physical Chemists of Serbia and 100th Anniversary of Bray-Liebhafsky reaction. Vol. 1; 2021 Sep 20-24; Belgrade, Serbia
Belgrade: Society of Physical Chemists of Serbia., 1, 25-32.
https://hdl.handle.net/21.15107/rcub_ibiss_5247
Guševac Stojanović I, Todorović A, Pejić S, Tatalović N, Blagojević D, Martinović J, Grković I, Mitrović N, Zarić M, Drakulić D. Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats. in Proceeding: 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry: Physical Chemistry 2021: the Conference is dedicated to the 30th Anniversary of the founding of the Society of Physical Chemists of Serbia and 100th Anniversary of Bray-Liebhafsky reaction. Vol. 1; 2021 Sep 20-24; Belgrade, Serbia. 2021;1:25-32.
https://hdl.handle.net/21.15107/rcub_ibiss_5247 .
Guševac Stojanović, Ivana, Todorović, Ana, Pejić, Snežana, Tatalović, Nikola, Blagojević, Duško, Martinović, Jelena, Grković, Ivana, Mitrović, Nataša, Zarić, Marina, Drakulić, Dunja, "Cerebral hypoperfusion and progesterone treatment alter parameters of oxidative stress and antioxidant defence in male rats" in Proceeding: 15th International Conference on Fundamental and Applied Aspects of Physical Chemistry: Physical Chemistry 2021: the Conference is dedicated to the 30th Anniversary of the founding of the Society of Physical Chemists of Serbia and 100th Anniversary of Bray-Liebhafsky reaction. Vol. 1; 2021 Sep 20-24; Belgrade, Serbia, 1 (2021):25-32,
https://hdl.handle.net/21.15107/rcub_ibiss_5247 .

Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion

Guševac, Ivana; Tatalović, Nikola; Zarić, Marina; Martinović, Jelena; Mitrović, Nataša; Blagojević, Duško; Grković, Ivana; Drakulić, Dunja

(Brussels, Belgium : Federation of European Neurocience Societies, 2018)

TY  - CONF
AU  - Guševac, Ivana
AU  - Tatalović, Nikola
AU  - Zarić, Marina
AU  - Martinović, Jelena
AU  - Mitrović, Nataša
AU  - Blagojević, Duško
AU  - Grković, Ivana
AU  - Drakulić, Dunja
PY  - 2018
UR  - https://forum2018.fens.org/
UR  - https://radar.ibiss.bg.ac.rs/123456789/3897
AB  - Potent neurosteroid progesterone (P4) strongly influences functional recovery in
various models of neurological diseases. However, its protective antioxidative
potential is not well established in stance of chronic cerebral hypoperfusion (CCH)
that induces ischemic milieu in the brain. CCH results in a cascade of events
leading to uncontrolled generation of 4-hydroxynonenal (HNE), a hallmark of
oxidative stress that can be abolished by mitochondrial antioxidant enzyme
manganese superoxide dismutase (MnSOD). Post-ischemic brain regeneration
requires preservation of cerebral blood flow that could be achieved by production of
vasodilatator nitric oxide (NO), synthesized by endothelial NO synthase (eNOS)
whose actions are regulated by phosphorylation at various sites. Decreased
phosphorylation of eNOS at Thr495 during antioxidative response, promotes its
activity and NO production, contributing to neuroprotection. Given the scarcity of
data about P4 antioxidative actions in prefrontal cortex during CCH, current study
assessed the level of HNE and NO, as well as MnSOD activity and the extent of
eNOS phosphorylation at Thr495 in rats subjected to sham operation and injected
with vehicle (commercial flax oil) or animals with permanent occlusion of common
carotid arteries and treated either with vehicle or P4 (1.7 mg/kg/day) for 7 days.
Results indicate that P4 decreases CCH-induced HNE generation and MnSOD
activity, diminishes inactivation of eNOS and increases production of protective NO.
In conclusion, P4 might downscale oxidative stress and boost antioxidant defense
capacity in CCH model, pointing investigated parameters as potential targets of P4
neuroprotective actions. Financially supported by MNTPR RS, grants 173044 and
41014.
PB  - Brussels, Belgium : Federation of European Neurocience Societies
C3  - 11th FENS Forum of Neuroscience
T1  - Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion
SP  - 1971
UR  - https://hdl.handle.net/21.15107/rcub_ibiss_3897
ER  - 
@conference{
author = "Guševac, Ivana and Tatalović, Nikola and Zarić, Marina and Martinović, Jelena and Mitrović, Nataša and Blagojević, Duško and Grković, Ivana and Drakulić, Dunja",
year = "2018",
abstract = "Potent neurosteroid progesterone (P4) strongly influences functional recovery in
various models of neurological diseases. However, its protective antioxidative
potential is not well established in stance of chronic cerebral hypoperfusion (CCH)
that induces ischemic milieu in the brain. CCH results in a cascade of events
leading to uncontrolled generation of 4-hydroxynonenal (HNE), a hallmark of
oxidative stress that can be abolished by mitochondrial antioxidant enzyme
manganese superoxide dismutase (MnSOD). Post-ischemic brain regeneration
requires preservation of cerebral blood flow that could be achieved by production of
vasodilatator nitric oxide (NO), synthesized by endothelial NO synthase (eNOS)
whose actions are regulated by phosphorylation at various sites. Decreased
phosphorylation of eNOS at Thr495 during antioxidative response, promotes its
activity and NO production, contributing to neuroprotection. Given the scarcity of
data about P4 antioxidative actions in prefrontal cortex during CCH, current study
assessed the level of HNE and NO, as well as MnSOD activity and the extent of
eNOS phosphorylation at Thr495 in rats subjected to sham operation and injected
with vehicle (commercial flax oil) or animals with permanent occlusion of common
carotid arteries and treated either with vehicle or P4 (1.7 mg/kg/day) for 7 days.
Results indicate that P4 decreases CCH-induced HNE generation and MnSOD
activity, diminishes inactivation of eNOS and increases production of protective NO.
In conclusion, P4 might downscale oxidative stress and boost antioxidant defense
capacity in CCH model, pointing investigated parameters as potential targets of P4
neuroprotective actions. Financially supported by MNTPR RS, grants 173044 and
41014.",
publisher = "Brussels, Belgium : Federation of European Neurocience Societies",
journal = "11th FENS Forum of Neuroscience",
title = "Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion",
pages = "1971",
url = "https://hdl.handle.net/21.15107/rcub_ibiss_3897"
}
Guševac, I., Tatalović, N., Zarić, M., Martinović, J., Mitrović, N., Blagojević, D., Grković, I.,& Drakulić, D.. (2018). Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion. in 11th FENS Forum of Neuroscience
Brussels, Belgium : Federation of European Neurocience Societies., 1971.
https://hdl.handle.net/21.15107/rcub_ibiss_3897
Guševac I, Tatalović N, Zarić M, Martinović J, Mitrović N, Blagojević D, Grković I, Drakulić D. Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion. in 11th FENS Forum of Neuroscience. 2018;:1971.
https://hdl.handle.net/21.15107/rcub_ibiss_3897 .
Guševac, Ivana, Tatalović, Nikola, Zarić, Marina, Martinović, Jelena, Mitrović, Nataša, Blagojević, Duško, Grković, Ivana, Drakulić, Dunja, "Progesterone downscales oxidative stress and boosts antioxidant defense capacity in rat model of permanent common carotid artery occlusion" in 11th FENS Forum of Neuroscience (2018):1971,
https://hdl.handle.net/21.15107/rcub_ibiss_3897 .

Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development

Grković, Ivana; Bjelobaba, Ivana; Mitrović, Nataša; Lavrnja, Irena; Drakulić, Dunja; Martinović, Jelena; Stanojlović, Miloš; Horvat, Anica; Nedeljković, Nadežda

(Amsterdam: Elsevier Science Publisher, 2016)

TY  - JOUR
AU  - Grković, Ivana
AU  - Bjelobaba, Ivana
AU  - Mitrović, Nataša
AU  - Lavrnja, Irena
AU  - Drakulić, Dunja
AU  - Martinović, Jelena
AU  - Stanojlović, Miloš
AU  - Horvat, Anica
AU  - Nedeljković, Nadežda
PY  - 2016
UR  - http://radar.ibiss.bg.ac.rs/handle/123456789/5977
AB  - Nucleoside triphosphate diphosphohydrolase3 (NTPDase3) is membrane-bound ectoenzyme which hydrolyzes extracellular ATP, thus modulating the function of purinergicreceptors and the pattern of purinergic signaling. Here we analyzed the developmentalexpression of NTPDase3 in female hypothalamus, cerebral cortex and hippocampal formationat different postnatal ages (PD7–PD90) by qRT-PCR and immunohistochemistry. Inhypothalamus and hippocampus, a similar developmental profile was seen: NTPDase3 geneexpression was stable during postnatal development and increased in adults. In the cortex,upregulation of NTPDase3 mRNA expression was seen at PD15 and further increase wasevidenced in adults. Immunohistochemical analysis at PD7 revealed faint neuronal NTPDase3localization, in dorsal hypothalamus. The immunoreactivity (ir) gradually increased in PD15and PD20, in clusters of cells in the lateral, ventral and dorsomedial hypothalamus.Furthermore, in PD20 animals, NTPDase3-ir was detected on short fibers in the posteriorhypothalamic area, while in PD30 the fibers appeared progressively longer and markedlyvaricose. In adults, the strongest NTPDase3-ir was observed in collections of cells indorsomedial hypothalamic nucleus, dorsal and lateral hypothalamus and in several thalamicareas, whereas the varicose fibers traversed entire diencephalon, particularly paraventricularthalamic nucleus, ventromedial and dorsomedial hypothalamic nuclei, the arcuate nucleus andthe prefornical part of the lateral hypothalamus. The presumably ascending NTPDase3-irfibers were first observed in PD20; their density and the varicose appearance increased untilthe adulthood. Prominent enhancement of NTPDase3-ir in the hypothalamus coincides withage when animals acquire diurnal rhythms of sleeping and feeding, supporting the hypothesisthat this enzyme may be involved in regulation of homeostatic functions.
PB  - Amsterdam: Elsevier Science Publisher
T2  - Journal of chemical neuroanatomy
T1  - Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development
VL  - 77
DO  - 10.1016/j.jchemneu.2016.04.001
SP  - 10
EP  - 18
ER  - 
@article{
author = "Grković, Ivana and Bjelobaba, Ivana and Mitrović, Nataša and Lavrnja, Irena and Drakulić, Dunja and Martinović, Jelena and Stanojlović, Miloš and Horvat, Anica and Nedeljković, Nadežda",
year = "2016",
abstract = "Nucleoside triphosphate diphosphohydrolase3 (NTPDase3) is membrane-bound ectoenzyme which hydrolyzes extracellular ATP, thus modulating the function of purinergicreceptors and the pattern of purinergic signaling. Here we analyzed the developmentalexpression of NTPDase3 in female hypothalamus, cerebral cortex and hippocampal formationat different postnatal ages (PD7–PD90) by qRT-PCR and immunohistochemistry. Inhypothalamus and hippocampus, a similar developmental profile was seen: NTPDase3 geneexpression was stable during postnatal development and increased in adults. In the cortex,upregulation of NTPDase3 mRNA expression was seen at PD15 and further increase wasevidenced in adults. Immunohistochemical analysis at PD7 revealed faint neuronal NTPDase3localization, in dorsal hypothalamus. The immunoreactivity (ir) gradually increased in PD15and PD20, in clusters of cells in the lateral, ventral and dorsomedial hypothalamus.Furthermore, in PD20 animals, NTPDase3-ir was detected on short fibers in the posteriorhypothalamic area, while in PD30 the fibers appeared progressively longer and markedlyvaricose. In adults, the strongest NTPDase3-ir was observed in collections of cells indorsomedial hypothalamic nucleus, dorsal and lateral hypothalamus and in several thalamicareas, whereas the varicose fibers traversed entire diencephalon, particularly paraventricularthalamic nucleus, ventromedial and dorsomedial hypothalamic nuclei, the arcuate nucleus andthe prefornical part of the lateral hypothalamus. The presumably ascending NTPDase3-irfibers were first observed in PD20; their density and the varicose appearance increased untilthe adulthood. Prominent enhancement of NTPDase3-ir in the hypothalamus coincides withage when animals acquire diurnal rhythms of sleeping and feeding, supporting the hypothesisthat this enzyme may be involved in regulation of homeostatic functions.",
publisher = "Amsterdam: Elsevier Science Publisher",
journal = "Journal of chemical neuroanatomy",
title = "Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development",
volume = "77",
doi = "10.1016/j.jchemneu.2016.04.001",
pages = "10-18"
}
Grković, I., Bjelobaba, I., Mitrović, N., Lavrnja, I., Drakulić, D., Martinović, J., Stanojlović, M., Horvat, A.,& Nedeljković, N.. (2016). Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development. in Journal of chemical neuroanatomy
Amsterdam: Elsevier Science Publisher., 77, 10-18.
https://doi.org/10.1016/j.jchemneu.2016.04.001
Grković I, Bjelobaba I, Mitrović N, Lavrnja I, Drakulić D, Martinović J, Stanojlović M, Horvat A, Nedeljković N. Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development. in Journal of chemical neuroanatomy. 2016;77:10-18.
doi:10.1016/j.jchemneu.2016.04.001 .
Grković, Ivana, Bjelobaba, Ivana, Mitrović, Nataša, Lavrnja, Irena, Drakulić, Dunja, Martinović, Jelena, Stanojlović, Miloš, Horvat, Anica, Nedeljković, Nadežda, "Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development" in Journal of chemical neuroanatomy, 77 (2016):10-18,
https://doi.org/10.1016/j.jchemneu.2016.04.001 . .
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Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development

Grković, Ivana; Bjelobaba, Ivana; Mitrović, Nataša; Lavrnja, Irena; Drakulić, Dunja; Martinović, Jelena; Stanojlović, Miloš; Horvat, Anica; Nedeljković, Nadežda

(Amsterdam: Elsevier Science Publisher, 2016)

TY  - JOUR
AU  - Grković, Ivana
AU  - Bjelobaba, Ivana
AU  - Mitrović, Nataša
AU  - Lavrnja, Irena
AU  - Drakulić, Dunja
AU  - Martinović, Jelena
AU  - Stanojlović, Miloš
AU  - Horvat, Anica
AU  - Nedeljković, Nadežda
PY  - 2016
UR  - http://radar.ibiss.bg.ac.rs/handle/123456789/5976
AB  - Nucleoside triphosphate diphosphohydrolase3 (NTPDase3) is membrane-bound ectoenzyme which hydrolyzes extracellular ATP, thus modulating the function of purinergic
receptors and the pattern of purinergic signaling. Here we analyzed the developmental
expression of NTPDase3 in female hypothalamus, cerebral cortex and hippocampal formation
at different postnatal ages (PD7–PD90) by qRT-PCR and immunohistochemistry. In
hypothalamus and hippocampus, a similar developmental profile was seen: NTPDase3 gene
expression was stable during postnatal development and increased in adults. In the cortex,
upregulation of NTPDase3 mRNA expression was seen at PD15 and further increase was
evidenced in adults. Immunohistochemical analysis at PD7 revealed faint neuronal NTPDase3
localization, in dorsal hypothalamus. The immunoreactivity (ir) gradually increased in PD15
and PD20, in clusters of cells in the lateral, ventral and dorsomedial hypothalamus.
Furthermore, in PD20 animals, NTPDase3-ir was detected on short fibers in the posterior
hypothalamic area, while in PD30 the fibers appeared progressively longer and markedly
varicose. In adults, the strongest NTPDase3-ir was observed in collections of cells in
dorsomedial hypothalamic nucleus, dorsal and lateral hypothalamus and in several thalamic
areas, whereas the varicose fibers traversed entire diencephalon, particularly paraventricular
thalamic nucleus, ventromedial and dorsomedial hypothalamic nuclei, the arcuate nucleus and
the prefornical part of the lateral hypothalamus. The presumably ascending NTPDase3-ir
fibers were first observed in PD20; their density and the varicose appearance increased until
the adulthood. Prominent enhancement of NTPDase3-ir in the hypothalamus coincides with
age when animals acquire diurnal rhythms of sleeping and feeding, supporting the hypothesis
that this enzyme may be involved in regulation of homeostatic functions.
PB  - Amsterdam: Elsevier Science Publisher
T2  - Journal of chemical neuroanatomy
T1  - Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development
VL  - 77
DO  - 10.1016/j.jchemneu.2016.04.001
SP  - 10
EP  - 18
ER  - 
@article{
author = "Grković, Ivana and Bjelobaba, Ivana and Mitrović, Nataša and Lavrnja, Irena and Drakulić, Dunja and Martinović, Jelena and Stanojlović, Miloš and Horvat, Anica and Nedeljković, Nadežda",
year = "2016",
abstract = "Nucleoside triphosphate diphosphohydrolase3 (NTPDase3) is membrane-bound ectoenzyme which hydrolyzes extracellular ATP, thus modulating the function of purinergic
receptors and the pattern of purinergic signaling. Here we analyzed the developmental
expression of NTPDase3 in female hypothalamus, cerebral cortex and hippocampal formation
at different postnatal ages (PD7–PD90) by qRT-PCR and immunohistochemistry. In
hypothalamus and hippocampus, a similar developmental profile was seen: NTPDase3 gene
expression was stable during postnatal development and increased in adults. In the cortex,
upregulation of NTPDase3 mRNA expression was seen at PD15 and further increase was
evidenced in adults. Immunohistochemical analysis at PD7 revealed faint neuronal NTPDase3
localization, in dorsal hypothalamus. The immunoreactivity (ir) gradually increased in PD15
and PD20, in clusters of cells in the lateral, ventral and dorsomedial hypothalamus.
Furthermore, in PD20 animals, NTPDase3-ir was detected on short fibers in the posterior
hypothalamic area, while in PD30 the fibers appeared progressively longer and markedly
varicose. In adults, the strongest NTPDase3-ir was observed in collections of cells in
dorsomedial hypothalamic nucleus, dorsal and lateral hypothalamus and in several thalamic
areas, whereas the varicose fibers traversed entire diencephalon, particularly paraventricular
thalamic nucleus, ventromedial and dorsomedial hypothalamic nuclei, the arcuate nucleus and
the prefornical part of the lateral hypothalamus. The presumably ascending NTPDase3-ir
fibers were first observed in PD20; their density and the varicose appearance increased until
the adulthood. Prominent enhancement of NTPDase3-ir in the hypothalamus coincides with
age when animals acquire diurnal rhythms of sleeping and feeding, supporting the hypothesis
that this enzyme may be involved in regulation of homeostatic functions.",
publisher = "Amsterdam: Elsevier Science Publisher",
journal = "Journal of chemical neuroanatomy",
title = "Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development",
volume = "77",
doi = "10.1016/j.jchemneu.2016.04.001",
pages = "10-18"
}
Grković, I., Bjelobaba, I., Mitrović, N., Lavrnja, I., Drakulić, D., Martinović, J., Stanojlović, M., Horvat, A.,& Nedeljković, N.. (2016). Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development. in Journal of chemical neuroanatomy
Amsterdam: Elsevier Science Publisher., 77, 10-18.
https://doi.org/10.1016/j.jchemneu.2016.04.001
Grković I, Bjelobaba I, Mitrović N, Lavrnja I, Drakulić D, Martinović J, Stanojlović M, Horvat A, Nedeljković N. Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development. in Journal of chemical neuroanatomy. 2016;77:10-18.
doi:10.1016/j.jchemneu.2016.04.001 .
Grković, Ivana, Bjelobaba, Ivana, Mitrović, Nataša, Lavrnja, Irena, Drakulić, Dunja, Martinović, Jelena, Stanojlović, Miloš, Horvat, Anica, Nedeljković, Nadežda, "Expression of ecto-nucleoside triphosphate diphosphohydrolase3 (NTPDase3) in the female rat brain during postnatal development" in Journal of chemical neuroanatomy, 77 (2016):10-18,
https://doi.org/10.1016/j.jchemneu.2016.04.001 . .
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