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Browsing by Author "Civcic, Milorad (18436145000)"

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    Clinical Case Seminar. Peculiar prolactinomas in patients with pituitary developmental gene mutations: From an adult endocrinologist perspective
    (2012)
    Doknic, Mirjana (6603478362)
    ;
    Pekic, Sandra (6602553641)
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    Civcic, Milorad (18436145000)
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    Popovic, Vera (35451450900)
    Context: Congenital hypopituitarism is a syndrome which is associated with single or multiple pituitary hormone deficiencies. Mutations in a number of developmental genes have been linked to combined pituitary hormone deficiencies, the most common being mutation in the pituitary homeobox protein prophet of the Pit 1 gene (PROP1). PROP1 exhibits DNA-binding and transcriptional activities. On magnetic resonance imaging, most patients with PROP1 mutation have a hypoplastic pituitary gland. Occasionally, transient pituitary enlargement before definite involution is reported. Kallmann syndrome (KS) is a human developmental genetic disorder which is a clinically (isolated hypogonadotropic hypogonadism-IHH) and genetically heterogeneous disease. Routine neuroimaging in classical IHH is thought to be of limited clinical value and normal anatomy of the hypothalamic-pituitary region is often reported. For neither disorder are there many reports on imaging during adulthood. Nor are there any guidelines concerning long-term imaging follow-up in patients with developmental pituitary disorders. Objective: Our aim was to present unusual endocrine and imaging abnormalities which developed in adulthood in two patients with developmental pituitary disorders. Cases: We report a female with combined pituitary hormone deficiencies (GH, TSH, gonadotropin and ACTH), except for prolactin, as a consequence of PROP1 mutation, and a male with KS (anosmia and IHH) due to Kal 2 gene (fibroblast growth factor receptor 1- FGFR1) mutation, both of whom in adulthood presented with prolactinomas. CONCLUSION: Both patients with developmental gene mutations, after long-term correction of their sex steroid status, developed prolactinomas. Although the exact mechanism of pituitary tumorigenesis is not known, we speculate that sex steroids may have facilitated prolactinoma development from the prolactin cell pool which underwent uncontrolled proliferation in the setting of a developmental disorder.
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    High risk first degree relatives of type 1 diabetics: An association with increases in CXCR3+ T memory cells reflecting an enhanced activity of Th1 autoimmune response
    (2014)
    Milicic, Tanja (24073432600)
    ;
    Jotic, Aleksandra (13702545200)
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    Markovic, Ivanka (7004033826)
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    Lalic, Katarina (13702563300)
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    Jeremic, Veljko (36100429200)
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    Lukic, Ljiljana (24073403700)
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    Rajkovic, Natasa (13702670500)
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    Popadic, Dušan (6602255798)
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    Macesic, Marija (26967836100)
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    Seferovic, Jelena P. (23486982900)
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    Aleksic, Sandra (7007167510)
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    Stanarcic, Jelena (59663037000)
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    Civcic, Milorad (18436145000)
    ;
    Lalic, Nebojsa M. (13702597500)
    We analyzed the level of (a) CXCR3+ (Th1) and CCR4+ (Th2) T memory cells (b) interferon-γ inducible chemokine (IP-10)(Th1) and thymus and activation-regulated chemokine (TARC)(Th2), in 51 first degree relatives (FDRs) of type 1 diabetics (T1D) (17 high risk FDRs (GADA+, IA-2+) and 34 low risk FDRs (GADA-, IA-2-)), 24 recent-onset T1D (R-T1D), and 18 healthy subjects. T memory subsets were analyzed by using four-color immunofluorescence staining and flowcytometry. IP-10 and TARC were determined by ELISA. High risk FDRs showed higher levels of CXCR3+ and lower level of CCR4+ T memory cells compared to low risk FDRs (64.98 ± 5.19 versus 42.13 ± 11.11; 29.46 ± 2.83 versus 41.90 ± 8.58%, resp., P < 0.001). Simultaneously, both IP-10 and TARC levels were increased in high risk versus low risk FDRs (160.12 ± 73.40 versus 105.39 ± 71.30; 438.83 ± 120.62 versus 312.04 ± 151.14 pg/mL, P < 0.05). Binary logistic regression analysis identified the level of CXCR3+ T memory cells as predictors for high risk FDRs, together with high levels of IP-10. The results imply that, in FDRs, the risk for T1D might be strongly influenced by enhanced activity of Th1 and diminished activity of Th2 autoimmune response. © 2014 Tanja Milicic et al.
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    High risk first degree relatives of type 1 diabetics: An association with increases in CXCR3+ T memory cells reflecting an enhanced activity of Th1 autoimmune response
    (2014)
    Milicic, Tanja (24073432600)
    ;
    Jotic, Aleksandra (13702545200)
    ;
    Markovic, Ivanka (7004033826)
    ;
    Lalic, Katarina (13702563300)
    ;
    Jeremic, Veljko (36100429200)
    ;
    Lukic, Ljiljana (24073403700)
    ;
    Rajkovic, Natasa (13702670500)
    ;
    Popadic, Dušan (6602255798)
    ;
    Macesic, Marija (26967836100)
    ;
    Seferovic, Jelena P. (23486982900)
    ;
    Aleksic, Sandra (7007167510)
    ;
    Stanarcic, Jelena (59663037000)
    ;
    Civcic, Milorad (18436145000)
    ;
    Lalic, Nebojsa M. (13702597500)
    We analyzed the level of (a) CXCR3+ (Th1) and CCR4+ (Th2) T memory cells (b) interferon-γ inducible chemokine (IP-10)(Th1) and thymus and activation-regulated chemokine (TARC)(Th2), in 51 first degree relatives (FDRs) of type 1 diabetics (T1D) (17 high risk FDRs (GADA+, IA-2+) and 34 low risk FDRs (GADA-, IA-2-)), 24 recent-onset T1D (R-T1D), and 18 healthy subjects. T memory subsets were analyzed by using four-color immunofluorescence staining and flowcytometry. IP-10 and TARC were determined by ELISA. High risk FDRs showed higher levels of CXCR3+ and lower level of CCR4+ T memory cells compared to low risk FDRs (64.98 ± 5.19 versus 42.13 ± 11.11; 29.46 ± 2.83 versus 41.90 ± 8.58%, resp., P < 0.001). Simultaneously, both IP-10 and TARC levels were increased in high risk versus low risk FDRs (160.12 ± 73.40 versus 105.39 ± 71.30; 438.83 ± 120.62 versus 312.04 ± 151.14 pg/mL, P < 0.05). Binary logistic regression analysis identified the level of CXCR3+ T memory cells as predictors for high risk FDRs, together with high levels of IP-10. The results imply that, in FDRs, the risk for T1D might be strongly influenced by enhanced activity of Th1 and diminished activity of Th2 autoimmune response. © 2014 Tanja Milicic et al.
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    Type 2 diabetic patients with ischemic stroke: Decreased insulin sensitivity and decreases in antioxidant enzyme activity are related to different stroke subtypes
    (2013)
    Jotic, Aleksandra (13702545200)
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    Covickovic Sternic, Nadezda (6603691178)
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    Kostic, Vladimir S. (57189017751)
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    Lalic, Katarina (13702563300)
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    Milicic, Tanja (24073432600)
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    Mijajlovic, Milija (55404306300)
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    Lukic, Ljiljana (24073403700)
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    Civcic, Milorad (18436145000)
    ;
    Colak, Emina (16318847100)
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    Macesic, Marija (26967836100)
    ;
    Seferovic, Jelena P. (23486982900)
    ;
    Aleksic, Sandra (7007167510)
    ;
    Lalic, Nebojsa M. (13702597500)
    We analyzed (a) insulin sensitivity (IS) and (b) glutathione peroxidase (GSH-Px), glutathione reductase (GR), and superoxide dismutase (SOD) antioxidant enzyme activity in type 2 diabetic (T2D) patients with atherothrombotic infarction (ATI) (group A), lacunar infarction (LI) (B), or without stroke (C) and in nondiabetics with ATI (D), LI (E), or without stroke (F). ATI and LI were confirmed by brain imaging IS levels were determined by minimal model (Si index), and the enzyme activity by spectrophotometry. In T2D patients, Si was lower in A and B versus C (1.14 ± 0.58, 1.00 ± 0.26 versus 3.14 ± 0.62 min-1/mU/l × 104, P < 0.001) and in nondiabetics in D and E versus F (3.38 ± 0.77, 3.03 ± 0.72 versus 6.03 ± 1.69 min-1/mU/l × 104, P < 0.001). Also, GSH-Px and GR activities were lower in A and B versus C (GSH-Px: 21.96 ± 3.56, 22.51 ± 1.23 versus 25.12 ± 1.67; GR: 44.37 ± 3.58, 43.50 ± 2.39 versus 48.58 ± 3.67 U/gHb; P < 0.001) and in D and E versus F (GSH-Px: 24.75 ± 3.02, 25.57 ± 1.92 versus 28.56 ± 3.91; GR: 48.27 ± 6.81, 49.17 ± 6.24 versus 53.67 ± 3.96 U/gHb; P < 0.001). Decreases in Si and GR were significantly related to both ATI and LI in T2D. Our results showed that decreased IS and impaired antioxidant enzymes activity influence ischemic stroke subtypes in T2D. The influence of insulin resistance might be exerted on the level of glutathione-dependent antioxidant enzymes. © 2013 Aleksandra Jotic et al.
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    Type 2 diabetic patients with ischemic stroke: Decreased insulin sensitivity and decreases in antioxidant enzyme activity are related to different stroke subtypes
    (2013)
    Jotic, Aleksandra (13702545200)
    ;
    Covickovic Sternic, Nadezda (6603691178)
    ;
    Kostic, Vladimir S. (57189017751)
    ;
    Lalic, Katarina (13702563300)
    ;
    Milicic, Tanja (24073432600)
    ;
    Mijajlovic, Milija (55404306300)
    ;
    Lukic, Ljiljana (24073403700)
    ;
    Civcic, Milorad (18436145000)
    ;
    Colak, Emina (16318847100)
    ;
    Macesic, Marija (26967836100)
    ;
    Seferovic, Jelena P. (23486982900)
    ;
    Aleksic, Sandra (7007167510)
    ;
    Lalic, Nebojsa M. (13702597500)
    We analyzed (a) insulin sensitivity (IS) and (b) glutathione peroxidase (GSH-Px), glutathione reductase (GR), and superoxide dismutase (SOD) antioxidant enzyme activity in type 2 diabetic (T2D) patients with atherothrombotic infarction (ATI) (group A), lacunar infarction (LI) (B), or without stroke (C) and in nondiabetics with ATI (D), LI (E), or without stroke (F). ATI and LI were confirmed by brain imaging IS levels were determined by minimal model (Si index), and the enzyme activity by spectrophotometry. In T2D patients, Si was lower in A and B versus C (1.14 ± 0.58, 1.00 ± 0.26 versus 3.14 ± 0.62 min-1/mU/l × 104, P < 0.001) and in nondiabetics in D and E versus F (3.38 ± 0.77, 3.03 ± 0.72 versus 6.03 ± 1.69 min-1/mU/l × 104, P < 0.001). Also, GSH-Px and GR activities were lower in A and B versus C (GSH-Px: 21.96 ± 3.56, 22.51 ± 1.23 versus 25.12 ± 1.67; GR: 44.37 ± 3.58, 43.50 ± 2.39 versus 48.58 ± 3.67 U/gHb; P < 0.001) and in D and E versus F (GSH-Px: 24.75 ± 3.02, 25.57 ± 1.92 versus 28.56 ± 3.91; GR: 48.27 ± 6.81, 49.17 ± 6.24 versus 53.67 ± 3.96 U/gHb; P < 0.001). Decreases in Si and GR were significantly related to both ATI and LI in T2D. Our results showed that decreased IS and impaired antioxidant enzymes activity influence ischemic stroke subtypes in T2D. The influence of insulin resistance might be exerted on the level of glutathione-dependent antioxidant enzymes. © 2013 Aleksandra Jotic et al.

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