Search Results - "L. I. Kolchinskaya"

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  1. 1

    Fusion of synaptic vesicles and plasma membrane in the presence of synaptosomal soluble proteins by Trikash, I.O., Kolchinskaya, L.I.

    Published in Neurochemistry international (01-08-2006)
    “…Fusion between synaptic vesicles and plasma membranes isolated from rat brain synaptosomes is regarded as a model of neurosecretion. The main aim of current…”
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    Effect of potential-dependent potassium uptake on calcium accumulation in rat brain mitochondria by Akopova, O. V., Kolchinskaya, L. I., Nosar, V. I., Bouryi, V. A., Mankovskaya, I. N., Sagach, V. F.

    Published in Biochemistry (Moscow) (2013)
    “…The effect of potential-dependent potassium uptake at 0–120 mM K + on matrix Ca 2+ accumulation in rat brain mitochondria was studied. An increase in oxygen…”
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    Functional activity of permeability transition pore in energized and deenergized rat liver mitochondria by Akopova, O. V., Kolchinskaya, L. I., Kolchinskaya, V. I. Nosar

    Published in Ukrainian biochemical journal (24-12-2020)
    “…Permeability transition pore (mPTP) opening was studied under energized and deenergized conditions in rat liver mitochondria, and the effect of membrane…”
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    Effect of Valinomycin-Induced Potassium Influx on the Formation of Reactive Oxygen Species in the Rat Brain Mitochondria by Akopova, O. V., Kolchinskaya, L. I., Nosar, V. I., Bouryi, V. A., Man’kovskaya, I. N., Sagach, V. F.

    Published in Neurophysiology (New York) (01-11-2013)
    “…We studied the effect of valinomycin-induced voltage-dependent potassium influx on the formation of reactive oxygen species (ROs) in preparations of isolated…”
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    ATP-sensitive potassium transport in rat brain mitochondria is highly sensitive to mK(ATP) channels openers: a light scattering study by Akopova, O. V., Kolchinskaya, L. I., Kolchinskaya, V. I. Nosar, Kolchinskaya, A. N. Smirnov, Kolchinskaya, L. V. Bratus

    Published in Ukrainian biochemical journal (13-11-2020)
    “…The aspects of ATP-sensitive K+ transport regulation by mitochondrial K+,ATP-sensitive (mKATP) channels openers are important for understanding the properties…”
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    Effect of Lipids on the Activity of Calpain in Subcellular Fractions Obtained from the Rat Brain by Kolchinskaya, L. I, Тrikash, I. O, Gumenyuk, V. P, Malysheva, M. K

    Published in Neurophysiology (New York) (01-02-2009)
    “…We studied the effect of lipids on the activity of a neutral cysteine proteinase, calpain, in subcellular fractions obtained from the rat brain. Extraction of…”
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    Effect of potential-dependent potassium uptake on production of reactive oxygen species in rat brain mitochondria by Akopova, O. V., Kolchinskaya, L. I., Nosar, V. I., Bouryi, V. A., Mankovska, I. N., Sagach, V. F.

    Published in Biochemistry (Moscow) (2014)
    “…The effect of potential-dependent potassium uptake on reactive oxygen species (ROS) generation in mitochondria of rat brain was studied. It was found that the…”
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    Activity of calpain in subcellular fractions of the rat brain by Kolchinskaya, L I, Malysheva, M K

    Published in Neurophysiology (New York) (01-01-2004)
    “…We studied the activity of a calcium-dependent proteinase, calpain, in subcellular fractions obtained from rat brain tissue. The rates of calpain-mediated…”
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    The effect of ATP-dependent K(+)-channel opener on transmembrane potassium exchange and reactive oxygen species production upon the opening of mitochondrial pore by Akopova, O V, Kolchinskaia, L I, Nosar', V I, Buryĭ, V A, Man'kovskaia, I N, Sagach, V F

    Published in Ukrainian biochemical journal (01-03-2014)
    “…The effect of mitochondrial ATP-dependent K(+)-channel (K(+)ATP-channel) opener diazoxide (DZ) on transmembrane potassium exchange and reactive oxygen species…”
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  10. 10

    Cytochrome C as an amplifier of ROS release in mitochondria by Akopova, O V, Kolchinskaya, L I, Nosar, V I, Bouryi, V A, Mankovska, I N, Sagach, V F

    “…The influence of exogenous cytochrome c on reactive oxygen species (ROS) formation and its dependence on mitochondrial permeability transition pore (MPTP)…”
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    Inhibition by oxytocin of voltage-activated calcium influx in cultured PC12 pheochromocytoma cells by Kolchinskaya, L I, Kononenko, N I, Pogorelaya, N C

    “…1. Voltage-activated dihydropyridine-sensitive Ca2+ influx was measured in PC12 pheochromocytoma cells using 45Ca. 2. It has been found that oxytocin inhibits…”
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    The effect of potential-dependent potassium uptake on membrane potential in rat brain mitochondria by O. V. Akopova, V. I. Nosar, L. I. Kolchinskaya, I. N. Mankovska, M. K. Malysheva, V. F. Sagach

    Published in Ukrainian biochemical journal (27-02-2013)
    “…The effect of potential-dependent potassium uptake on the transmembrane potential difference (ΔΨm) in rat brain mitochondria has been studied­. It was shown…”
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    Estimation of ATP-dependent K(+)-channel contribution to potential-dependent potassium uptake in the rat brain mitochondria by Akopova, O V, Nosar', V I, Kolchinskaia, L I, Man'kovskaia, I N, Malysheva, M K, Sagach, V F

    Published in Ukrainian biochemical journal (01-01-2014)
    “…The effect of potassium on state 4 respiration (substrate oxidation in the absence of ADP) was investigated. It was shown that potential-dependent potassium…”
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    The effect of ATP-dependent K(+)-channel opener on the functional state and the opening of cyclosporine-sensitive pore in rat liver mitochondria by O. V. Akopova, V. I. Nosar, V. A. Bouryi, L. I. Kolchinskaya, I. N. Mankovska, V. F. Sagach

    Published in Ukrainian biochemical journal (27-06-2013)
    “…The effect of mitochondrial ATP-dependent K+-channel (K+АТР-channel) opener diazoxide (DZ) on the oxygen consumption, functional state and the opening of…”
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    Interaction of in vitro synthesized casein with artificial phospholipid vesicules by Balkov, D. I., Rachkov, A. E., Kolchinskaya, L. I., Starodub, N. F., Elskaya, A. V., Lishko, V. K.

    Published in Biopolimery i kletka (20-09-1987)
    “…The model system is developed to study the incorporation of products of eukaryotic mRNA cell-free translation into lecithin liposomes. It is shown that in the…”
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