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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:BIBFORM020764
Első szerző:Kis-Tóth Katalin (immunológus)
Cím:Voltage-Gated Sodium Channel Nav1.7 Maintains the Membrane Potential and Regulates the Activation and Chemokine-Induced Migration of a Monocyte-Derived Dendritic Cell Subset / Katalin Kis-Toth, Peter Hajdu, Ildiko Bacskai, Orsolya Szilagyi, Ferenc Papp, Attila Szanto, Edit Posta, Peter Gogolak, Gyorgy Panyi, Eva Rajnavolgyi
Dátum:2011
Megjegyzések:Expression of CD1a protein defines a human dendritic cell (DC) subset with unique functional activities. We aimed to study the expression of the Nav1.7 sodium channel and the functional consequences of its activity in CD1a(-) and CD1a(+) DC. Single-cell electrophysiology (patch-clamp) and quantitative PCR experiments performed on sorted CD1a(-) and CD1a(+) immature DC (IDC) showed that the frequency of cells expressing Na(+) current, current density, and the relative expression of the SCN9A gene encoding Nav1.7 were significantly higher in CD1a(+) cells than in their CD1a(-) counterparts. The activity of Nav1.7 results in a depolarized resting membrane potential (-8.7 +/- 1.5 mV) in CD1a(+) IDC as compared with CD1a(-) cells lacking Nav1.7 (-47 +/- 6.2 mV). Stimulation of DC by inflammatory signals or by increased intracellular Ca(2+) levels resulted in reduced Nav1.7 expression. Silencing of the SCN9A gene shifted the membrane potential to a hyperpolarizing direction in CD1a(+) IDC, resulting in decreased cell migration, whereas pharmacological inhibition of Nav1.7 by tetrodotoxin sensitized the cells for activation signals. Fine-tuning of IDC functions by a voltage-gated sodium channel emerges as a new regulatory mechanism modulating the migration and cytokine responses of these DC subsets
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
ACTIVATION
article
Cells
Electrophysiology
Human
Hungary
immunology
Sodium
Tetrodotoxin
Megjelenés:The Journal of Immunology. - 187 : 3 (2011), p. 1273-1280. -
További szerzők:Hajdu Péter (1975-) (biofizikus) Bacskai Ildikó (1985-) (immunológus) Szilágyi Orsolya (1985-) (molekuláris biológus, biokémikus) Papp Ferenc (1979-) (biofizikus) Szántó Attila (1976-) (orvos, biokémikus) Feketéné Posta Edit (1986-) (reumatológus) Gogolák Péter (1968-) (biológus, immunológus) Panyi György (1966-) (biofizikus) Rajnavölgyi Éva (1950-) (immunológus)
Pályázati támogatás:TÁMOP-4.2.1/B-09/1/KONV-2010-0007
TÁMOP
Molekuláris immunológia
TÁMOP-4.2.2-08/1-2008-0015
TÁMOP
Internet cím:DOI
Intézményi repozitóriumban (DEA) tárolt változat
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