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001-es BibID:BIBFORM058666
Első szerző:Bacskai Ildikó (immunológus)
Cím:Mesenchymal stromal cell-like cells set the balance of stimulatory and inhibitory signals in monocyte-derived dendritic cells / Ildikó Bacskai, Anett Mázló, Katalin Kis-Tóth, Attila Szabó, György Panyi, Balázs Sarkadi, Ágota Apáti, Éva Rajnavölgyi
Dátum:2015
ISSN:1547-3287
Megjegyzések:The major reservoir of human multipotent mesenchymal stem/stromal cells (MSC) is the bone marrow (BM) with the capability to control hematopoietic stem cell (HSC) development. The regenerative potential of MSC is associated with enhanced endogenous repair and healing mechanisms that modulate inflammatory responses. Our previous results revealed that MSC-like (MSCl) cells derived from pluripotent human embryonic stem cells resemble BM-derived MSC in morphology, phenotype and differentiating potential. Here we investigated the effects of MSCl cells on the phenotype and functions of dendritic cells (DC). To assess how anti-viral immune responses could be regulated by intracellular pattern recognition receptors (PRR) of DC in the presence of MSCl cells we activated DC with the specific ligands of retinoic acid-inducible gene I (RIG-I) helicases and found that activated DC co-cultured with MSCl cells exhibited reduced expression of CD1a and CD83 cell surface molecules serving as phenotypic indicators of DC differentiation and activation, respectively. However, RIG-I-mediated stimulation of DC via specific ligands in the presence of MSCl cells resulted in significantly higher expression of the co-stimulatory molecules CD80 and CD86 than in the presence of BM-MSC. In line with these results the concentration of IL-6, IL-10 and CXCL8 was increased in the supernatant of the DC-MSCl co-cultures, while the secretion of TNF-?, CXCL10, IL-12 and IFN? was reduced. Furthermore, the concerted action of mechanisms involved in the regulation of DC migration resulted in the blockade of cell migration indicating altered DC functionality mediated by MSCl cell-derived signals and mechanisms resulting in a suppressive microenvironment.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
mesenchymal stromal cell
dendritic cell
immunsuppression
RIG-like receptors
matrix metalloproteinases
Megjelenés:Stem Cells And Development. - 24 : 15 (2015), p. 1805-1816. -
További szerzők:Türk-Mázló Anett (1989-) (molekuláris biológus) Kis-Tóth Katalin (1975-) (immunológus) Szabó Attila (1981-) (molekuláris biológus, immunológus, filozófus) Panyi György (1966-) (biofizikus) Sarkadi Balázs Apáti Ágota Rajnavölgyi Éva (1950-) (immunológus)
Pályázati támogatás:TÁMOP 4.2.4. A/2-11-1-2012-0001
TÁMOP
TÁMOP 4.2.2.A-11/1/KONV-2012-0023
TÁMOP
OTKA NK 101538
OTKA
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2.

001-es BibID:BIBFORM037289
Első szerző:Szabó Attila (molekuláris biológus, immunológus, filozófus)
Cím:Temporally designed treatment of melanoma cells by ATRA and polyI:C results in enhanced chemokine and IFNb secretion controlled differently by TLR3 and MDA5 / Szabo Attila, Osman Rolah M., Bacskai Ildiko, Kumar Brahma V., Agod Zsofia, Lanyi Arpad, Gogolak Peter, Rajnavolgyi Eva
Dátum:2012
ISSN:0960-8931
Megjegyzések:In the last three decades, the incidence of melanoma has increased worldwide and no effective treatment modalities have been developed yet. All-trans retinoic acid (ATRA) and polyinosinic:polycytidylic acid (polyI:C) are strong inducers of toll-like receptor 3 (TLR3) and MDA5 expression, and polyI:C-induced TLR3 and MDA5 signaling specifically causes cell death in melanoma cells in vitro. We addressed the question of whether ATRA pretreatment could enhance the efficacy of polyI:C and, if so, would ATRA have any additional effects on this process. We found that the combined treatment of human melanoma cells with ATRA and polyI:C strongly increased the expression of TLR3 and MDA5 in both WM35 and WM983A cells associated with significantly higher mRNA and secreted levels of interferon b (IFNb), CXCL1, CXCL8/IL-8, CXCL9, and CXCL10 than cells treated with either ATRA or polyI:C. Silencing of MDA5 by siRNA moderately affected IFNb secretion, whereas TLR3 knockdown interfered with both CXCL chemokine and IFNb production. Furthermore, the supernatants of ATRA + polyI:C-activated cultures increased the migration of both human monocyte-derived macrophages and CD1a + dendritic cells significantly as compared with the supernatants of cells treated with either ATRA or polyI:C, and this effect occurred in a TLR3-dependent manner. In conclusion, consecutive treatment with ATRA and polyI:C results in strong, TLR3/MDA5-mediated chemokine and IFN responses in cultured human melanoma cells, which triggers a functional migratory response in professional antigen-presenting cells. This novel mode of concomitant activation may represent a more efficient treatment option for future melanoma therapy.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
Molekuláris Medicina
Megjelenés:Melanoma Research 22 : 5 (2012), p. 351-361. -
További szerzők:Osman, Rolah M. Bacskai Ildikó (1985-) (immunológus) Kumar, Brahma V. Agod Zsófia Lányi Árpád (1962-) (biológus, immunológus) Gogolák Péter (1968-) (biológus, immunológus) Rajnavölgyi Éva (1950-) (immunológus)
Pályázati támogatás:TÁMOP-4.2.1/B-09/1/KONV-2010-0007
TÁMOP
Jelátviteli kapcsolatok ős- és dendritikus sejt altípusokban
NK101538
OTKA
Internet cím:Szerző által megadott URL
DOI
Intézményi repozitóriumban (DEA) tárolt változat
Borító:
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