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1.

001-es BibID:BIBFORM004837
Első szerző:Hajas György (biológus)
Cím:New phenotypic, functional and electrophysiological characteristics of KG-1 cells / György Hajas, Emese Zsiros, Tünde László, Péter Hajdú, Sándor Somodi, Bence Réthi, Péter Gogolák, Katalin Ludányi, György Panyi, Éva Rajnavölgyi
Dátum:2004
Megjegyzések:Myeloid dendritic cells (DC) are representatives of a rare and phenotypically diverse population of professional antigen presenting cells possessing high functional heterogeneity and flexibility. Here we studied the phenotypic, functional and electrophysiological characteristics of KG-1 cells, an erythroleukemia model cell line, which shares morphological and physiological similarities with immature and mature myeloid DC. We compared the expression of internalizing receptors and other cell surface molecules, antigen uptake and migration of unstimulated and activated KG-1 cells with the characteristics of immature and mature DC. Unstimulated KG-1 cells were less potent in capturing extracellular materials than immature DC. In contrast to monocyte-derived DC KG-1 cells stimulated by PMA and ionomycin ceased to migrate along the MIP-3beta chemokine gradient despite their high expression of CCR7 chemokine receptor and MDR, a transporter implicated in DC migration. Moreover, we determined the ion channel repertoire of KG-1 cells before and after treatment with PMA and ionomycin by using the patch-clamp technique. We found that both unstimulated and activated KG-1 cells expressed time- and voltage-independent, ChTx sensitive intracellular Ca(2+)-gated potassium conductance suggesting the presence of K(Ca) channels in their membranes. Based on our results we propose that KG-1 cells resemble myeloid DC but also possess unique phenotypic, functional and electrophysiological characteristics.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
analogs and derivatives
Animals
Calcium
Cell Line
Cell Movement
Cells
Dendritic Cells
Dextrans
Fluorescein
Fluorescein-5-isothiocyanate
Humans
Hungary
immunology
Ionomycin
Isoquinolines
Leukemia,Erythroblastic,Acute
metabolism
Patch-Clamp Techniques
physiology
Potassium
Research
Support
Tumor Cells,Cultured
Megjelenés:Immunology Letters. - 92 : 1-2 (2004), p. 97-106. -
További szerzők:Zsíros Emese (1980-) (orvos) László Tünde Hajdu Péter (1975-) (biofizikus) Somodi Sándor (1977-) (belgyógyász) Réthi Bence (1973-) (biológus, immunológus) Gogolák Péter (1968-) (biológus, immunológus) Ludányi Katalin (1975-) (immunológus) Panyi György (1966-) (biofizikus) Rajnavölgyi Éva (1950-) (immunológus)
Internet cím:Intézményi repozitóriumban (DEA) tárolt változat
DOI
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2.

001-es BibID:BIBFORM005189
Első szerző:Papp Ferenc (biofizikus)
Cím:CRAC channels in developing human dendritic cells / Papp, F., Hajdu, P., Varga, Z., Zsiros, E., Ludanyi, K., Gaspar, R., Rajnavolgyi, E., Panyi, Gy.
Dátum:2008
Tárgyszavak:Orvostudományok Elméleti orvostudományok idézhető absztrakt
Human
Dendritic Cells
Cells
Megjelenés:Biophysical Journal. - 94 : Suppl (2008), p. B290 -
További szerzők:Hajdu Péter (1975-) (biofizikus) Varga Zoltán (1969-) (biofizikus, szakfordító) Zsíros Emese (1980-) (orvos) Ludányi Katalin (1975-) (immunológus) Gáspár Rezső (1944-) (biofizikus) Rajnavölgyi Éva (1950-) (immunológus) Panyi György (1966-) (biofizikus)
Internet cím:elektronikus változat
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3.

001-es BibID:BIBFORM010313
Első szerző:Zsíros Emese (orvos)
Cím:Developmental switch of the expression of ion channels in human dendritic cells / Zsiros Emese, Kis-Tóth Katalin, Hajdú Péter, Gáspár Rezső, Joanna Bielansk, Antonio Felipe, Rajnavölgyi Éva, Panyi György
Dátum:2009
ISSN:0022-1767
Megjegyzések:Modulation of the expression and activity of plasma membrane ion channels is one of the mechanisms by which immune cells can regulate their intracellular Ca2(+) signaling pathways required for proliferation and/or differentiation. Voltage-gated K+ channels, inwardly rectifying K+ channels, and Ca2+-activated K+ channels have been described to play a major role in controlling the membrane potential in lymphocytes and professional APCs, such as monocytes, macrophages, and dendritic cells (DCs). Our study aimed at the characterization and identification of ion channels expressed in the course of human DC differentiation from monocytes. We report in this study for the first time that immature monocyte-derived DCs express voltage-gated Na+ channels in their plasma membrane. The analysis of the biophysical and pharmacological properties of the current and PCR-based cloning revealed the presence of Nav1.7 channels in immature DCs. Transition from the immature to a mature differentiation state, however, was accompanied by the down-regulation of Nav1.7 expression concomitant with the up-regulation of voltage-gated Kv1.3 K+ channel expression. The presence of Kv1.3 channels seems to be common for immune cells; hence, selective Kv1.3 blockers may emerge as candidates for inhibiting various functions of mature DCs that involve their migratory, cytokine-secreting, and T cell-activating potential.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
Union of Pharmacology
Dependent K+ channel
Human Lymhocytes T
Potassium channels
Sodium Channels
Electrophysiological properties
Peripheral nerve
Immune system
Macrophages
Activation
Megjelenés:The Journal of Immunology 183 : 7 (2009), p. 4483-4492. -
További szerzők:Kis-Tóth Katalin (1975-) (immunológus) Hajdu Péter (1975-) (biofizikus) Gáspár Rezső (1944-) (biofizikus) Bielansk, Joanna Felipe, Antonio Rajnavölgyi Éva (1950-) (immunológus) Panyi György (1966-) (biofizikus)
Internet cím:Szerző által megadott URL
DOI
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