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Інститут фізіології ім. О. О. Богомольця
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(Created page with "{{LSSHEAD}} *Khomula E. et. al., Biochimica et Biophysica, 2013; *Kopach О. and Voitenko N. Brain Research Bulletin, 2012 *Kopach O. et. al., The Journal of Pain, 2012; *Kopa...")
 
 
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*Khomula E. et. al., Biochimica et Biophysica, 2013;
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*Kopach О. and Voitenko N. Brain Research Bulletin, 2012
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#Kopach O, Viatchenko-Karpinski V, Atianjoh F, Belan P, Tao Y, and Voitenko N  PKCα is required for inflammation-induced trafficking of extrasynaptic AMPA receptors in tonically firing lamina II dorsal horn neurons during the maintenance of persistent inflammatory pain. The Journal of Pain, 14(2):182-92. (2013). IF 4,5
*Kopach O. et. al., The Journal of Pain, 2012;
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#Khomula, E.V., Viatchenko-Karpinski, V.Y., Borisyuk, A.L., Duzhyy D, Belan, P.V., Voitenko N.V. Specific functioning of Cav3.2 T-type calcium and TRPV1 channels under different types of STZ-diabetic neuropathy  Biochimica et Biophysica Acta - Molecular Basis of Disease, 1832(5):636–649. (2013). IF 5,7
*Kopach O. et. al., Frontiers in Physiology, 2012;
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#Khomula, E.V., Borisyuk, A.L., Viatchenko-Karpinski, V.Y., Briede A, Belan, P.V., Voitenko N.V. Nociceptive neurons differentially express fast and slow T-type Ca 2+ currents in different types of diabetic neuropathy Neural Plasticity. Epub (2014). IF 3,6
*Kopach O. et. al., Journal of Cell Science, 2012;  
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#Kopach, O., Krotov, V., Belan, P., Voitenko, N. Inflammatory-induced changes in synaptic drive and postsynaptic AMPARs in lamina II dorsal horn neurons are cell-type specific Pain, 156(3):428-38.(2015). IF 5,6
*Kopach O. et. al., Pain, 2011;
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#Duzhyy, D.E., Viatchenko-Karpinski, V.Y., Khomula, E.V., Voitenko, N.V., Belan, P.V. Upregulation of T-type Ca<sup>2+</sup> channels in long-term diabetes determines increased excitability of a specific type of capsaicin-insensitive DRG neurons Molecular Pain. 20;11(1):29. (2015). IF 4,1
*Grishin E. et. al., Annals of Neurology, 2010;
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#Kopach, O., Krotov, V., Goncharenko, J., Voitenko, N. Inhibition of spinal ca2+-permeable ampa receptors with dicationic compounds alleviates persistent inflammatory pain without adverse effects Frontiers in Cellular Neuroscience. Epub (2016). IF 4,6
*Tsiklauri N. et. al., European Journal of Pharmacology, 2009;
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#Viatchenko-Karpinski, V., Novosolova, N., Ishchenko, Y., Azhar MA, Wright M, Tsintsadze V, Kamal A, Burnashev N, Miller AD, Voitenko N, Giniatullin, R., Lozovaya, N  Stable, synthetic analogs of diadenosine tetraphosphate inhibit rat and human P2X3 receptors and inflammatory pain Molecular Pain. Epub (2016). IF 4,1
*Park J. et. al., Journal of  Neuroscience, 2009;
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#Kopach, O., Maistrenko, A., Lushnikova, I., Belan P, Skibo, G., Voitenko, N. HIF-1α-mediated upregulation of SERCA2b: The endogenous mechanism for alleviating the ischemia-induced intracellular Ca2+store dysfunction in CA1 and CA3 hippocampal neurons Cell Calcium. 59(5):251-61. (2016) IF 4,3
*Kopach O. et. al., Cell Calcium, 2008.
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#Krotov V, Tokhtamysh A, Kopach O, Dromaretsky A, Sheremet Y, Belan P, Voitenko N. Functional Characterization of Lamina X Neurons in ex-Vivo Spinal Cord Preparation Frontiers in cellular neuroscience 11, 342. (2017). IF 4,6
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#Kopach, O., Medvediev, V., Krotov, V., Borisyuk A, Tsymbaliuk, V., Voitenko, N. Opposite, bidirectional shifts in excitation and inhibition in specific types of dorsal horn interneurons are associated with

Поточна версія на 17:49, 20 квітня 2018

About Research Members Selected Publications Achievement
  1. Kopach O, Viatchenko-Karpinski V, Atianjoh F, Belan P, Tao Y, and Voitenko N PKCα is required for inflammation-induced trafficking of extrasynaptic AMPA receptors in tonically firing lamina II dorsal horn neurons during the maintenance of persistent inflammatory pain. The Journal of Pain, 14(2):182-92. (2013). IF 4,5
  2. Khomula, E.V., Viatchenko-Karpinski, V.Y., Borisyuk, A.L., Duzhyy D, Belan, P.V., Voitenko N.V. Specific functioning of Cav3.2 T-type calcium and TRPV1 channels under different types of STZ-diabetic neuropathy Biochimica et Biophysica Acta - Molecular Basis of Disease, 1832(5):636–649. (2013). IF 5,7
  3. Khomula, E.V., Borisyuk, A.L., Viatchenko-Karpinski, V.Y., Briede A, Belan, P.V., Voitenko N.V. Nociceptive neurons differentially express fast and slow T-type Ca 2+ currents in different types of diabetic neuropathy Neural Plasticity. Epub (2014). IF 3,6
  4. Kopach, O., Krotov, V., Belan, P., Voitenko, N. Inflammatory-induced changes in synaptic drive and postsynaptic AMPARs in lamina II dorsal horn neurons are cell-type specific Pain, 156(3):428-38.(2015). IF 5,6
  5. Duzhyy, D.E., Viatchenko-Karpinski, V.Y., Khomula, E.V., Voitenko, N.V., Belan, P.V. Upregulation of T-type Ca2+ channels in long-term diabetes determines increased excitability of a specific type of capsaicin-insensitive DRG neurons Molecular Pain. 20;11(1):29. (2015). IF 4,1
  6. Kopach, O., Krotov, V., Goncharenko, J., Voitenko, N. Inhibition of spinal ca2+-permeable ampa receptors with dicationic compounds alleviates persistent inflammatory pain without adverse effects Frontiers in Cellular Neuroscience. Epub (2016). IF 4,6
  7. Viatchenko-Karpinski, V., Novosolova, N., Ishchenko, Y., Azhar MA, Wright M, Tsintsadze V, Kamal A, Burnashev N, Miller AD, Voitenko N, Giniatullin, R., Lozovaya, N Stable, synthetic analogs of diadenosine tetraphosphate inhibit rat and human P2X3 receptors and inflammatory pain Molecular Pain. Epub (2016). IF 4,1
  8. Kopach, O., Maistrenko, A., Lushnikova, I., Belan P, Skibo, G., Voitenko, N. HIF-1α-mediated upregulation of SERCA2b: The endogenous mechanism for alleviating the ischemia-induced intracellular Ca2+store dysfunction in CA1 and CA3 hippocampal neurons Cell Calcium. 59(5):251-61. (2016) IF 4,3
  9. Krotov V, Tokhtamysh A, Kopach O, Dromaretsky A, Sheremet Y, Belan P, Voitenko N. Functional Characterization of Lamina X Neurons in ex-Vivo Spinal Cord Preparation Frontiers in cellular neuroscience 11, 342. (2017). IF 4,6
  10. Kopach, O., Medvediev, V., Krotov, V., Borisyuk A, Tsymbaliuk, V., Voitenko, N. Opposite, bidirectional shifts in excitation and inhibition in specific types of dorsal horn interneurons are associated with
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