Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells

Mesenchymal stromal cells (MSCs) exert immunosuppressive effects on immune cells including dendritic cells (DCs). However, many details of the bidirectional interaction of MSCs with DCs are still unsolved and information on key molecules by which DCs can modulate MSC functions is limited. Here, we r...

Full description

Bibliographic Details
Main Authors: Sara Scutera, Valentina Salvi, Luisa Lorenzi, Giorgia Piersigilli, Silvia Lonardi, Daniela Alotto, Stefania Casarin, Carlotta Castagnoli, Erica Dander, Giovanna D’Amico, Silvano Sozzani, Tiziana Musso
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-06-01
Series:Frontiers in Immunology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fimmu.2018.01207/full
id doaj-06f67c9771e94687b1c2bb9c2f95ec47
record_format Article
spelling doaj-06f67c9771e94687b1c2bb9c2f95ec472020-11-25T00:49:09ZengFrontiers Media S.A.Frontiers in Immunology1664-32242018-06-01910.3389/fimmu.2018.01207338370Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal CellsSara Scutera0Valentina Salvi1Luisa Lorenzi2Giorgia Piersigilli3Silvia Lonardi4Daniela Alotto5Stefania Casarin6Carlotta Castagnoli7Erica Dander8Giovanna D’Amico9Silvano Sozzani10Tiziana Musso11Department of Public Health and Pediatric Sciences, University of Turin, Turin, ItalyDepartment of Molecular and Translational Medicine, University of Brescia, Brescia, ItalyDepartment of Molecular and Translational Medicine, University of Brescia, Brescia, ItalyDepartment of Public Health and Pediatric Sciences, University of Turin, Turin, ItalyDepartment of Molecular and Translational Medicine, University of Brescia, Brescia, ItalySkin Bank, Department of General and Specialized Surgery, A.O.U. Citta della Salute e della Scienza di Torino, Turin, ItalySkin Bank, Department of General and Specialized Surgery, A.O.U. Citta della Salute e della Scienza di Torino, Turin, ItalySkin Bank, Department of General and Specialized Surgery, A.O.U. Citta della Salute e della Scienza di Torino, Turin, Italy“M. Tettamanti” Research Center, Pediatric Department, University of Milano-Bicocca, Monza, Italy“M. Tettamanti” Research Center, Pediatric Department, University of Milano-Bicocca, Monza, ItalyDepartment of Molecular and Translational Medicine, University of Brescia, Brescia, ItalyDepartment of Public Health and Pediatric Sciences, University of Turin, Turin, ItalyMesenchymal stromal cells (MSCs) exert immunosuppressive effects on immune cells including dendritic cells (DCs). However, many details of the bidirectional interaction of MSCs with DCs are still unsolved and information on key molecules by which DCs can modulate MSC functions is limited. Here, we report that osteopontin (OPN), a cytokine involved in homeostatic and pathophysiologic responses, is constitutively expressed by DCs and regulated in the DC/MSC cocultures depending on the activation state of MSCs. Resting MSCs promoted OPN production, whereas the production of OPN was suppressed when MSCs were activated by proinflammatory cytokines (i.e., TNF-α, IL-6, and IL-1β). OPN induction required cell-to-cell contact, mediated at least in part, by β1 integrin (CD29). Conversely, activated MSCs inhibited the release of OPN via the production of soluble factors with a major role played by Prostaglandin E2 (PGE2). Accordingly, pretreatment with indomethacin significantly abrogated the MSC-mediated suppression of OPN while the direct addition of exogenous PGE2 inhibited OPN production by DCs. Furthermore, DC-conditioned medium promoted osteogenic differentiation of MSCs with a concomitant inhibition of adipogenesis. These effects were paralleled by the repression of the adipogenic markers PPARγ, adiponectin, and FABP4, and induction of the osteogenic markers alkaline phosphatase, RUNX2, and of the bone-anabolic chemokine CCL5. Notably, blocking OPN activity with RGD peptides or with an antibody against CD29, one of the OPN receptors, prevented the effects of DC-conditioned medium on MSC differentiation and CCL5 induction. Because MSCs have a key role in maintenance of bone marrow (BM) hematopoietic stem cell niche through reciprocal regulation with immune cells, we investigated the possible MSC/DC interaction in human BM by immunohistochemistry. Although DCs (CD1c+) are a small percentage of BM cells, we demonstrated colocalization of CD271+ MSCs with CD1c+ DCs in normal and myelodysplastic BM. OPN reactivity was observed in occasional CD1c+ cells in the proximity of CD271+ MSCs. Altogether, these results candidate OPN as a signal modulated by MSCs according to their activation status and involved in DC regulation of MSC differentiation.https://www.frontiersin.org/article/10.3389/fimmu.2018.01207/fulldendritic cellsmesenchymal stromal cellsosteopontinccl5adipogenesisosteogenesis
collection DOAJ
language English
format Article
sources DOAJ
author Sara Scutera
Valentina Salvi
Luisa Lorenzi
Giorgia Piersigilli
Silvia Lonardi
Daniela Alotto
Stefania Casarin
Carlotta Castagnoli
Erica Dander
Giovanna D’Amico
Silvano Sozzani
Tiziana Musso
spellingShingle Sara Scutera
Valentina Salvi
Luisa Lorenzi
Giorgia Piersigilli
Silvia Lonardi
Daniela Alotto
Stefania Casarin
Carlotta Castagnoli
Erica Dander
Giovanna D’Amico
Silvano Sozzani
Tiziana Musso
Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
Frontiers in Immunology
dendritic cells
mesenchymal stromal cells
osteopontin
ccl5
adipogenesis
osteogenesis
author_facet Sara Scutera
Valentina Salvi
Luisa Lorenzi
Giorgia Piersigilli
Silvia Lonardi
Daniela Alotto
Stefania Casarin
Carlotta Castagnoli
Erica Dander
Giovanna D’Amico
Silvano Sozzani
Tiziana Musso
author_sort Sara Scutera
title Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
title_short Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
title_full Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
title_fullStr Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
title_full_unstemmed Adaptive Regulation of Osteopontin Production by Dendritic Cells Through the Bidirectional Interaction With Mesenchymal Stromal Cells
title_sort adaptive regulation of osteopontin production by dendritic cells through the bidirectional interaction with mesenchymal stromal cells
publisher Frontiers Media S.A.
series Frontiers in Immunology
issn 1664-3224
publishDate 2018-06-01
description Mesenchymal stromal cells (MSCs) exert immunosuppressive effects on immune cells including dendritic cells (DCs). However, many details of the bidirectional interaction of MSCs with DCs are still unsolved and information on key molecules by which DCs can modulate MSC functions is limited. Here, we report that osteopontin (OPN), a cytokine involved in homeostatic and pathophysiologic responses, is constitutively expressed by DCs and regulated in the DC/MSC cocultures depending on the activation state of MSCs. Resting MSCs promoted OPN production, whereas the production of OPN was suppressed when MSCs were activated by proinflammatory cytokines (i.e., TNF-α, IL-6, and IL-1β). OPN induction required cell-to-cell contact, mediated at least in part, by β1 integrin (CD29). Conversely, activated MSCs inhibited the release of OPN via the production of soluble factors with a major role played by Prostaglandin E2 (PGE2). Accordingly, pretreatment with indomethacin significantly abrogated the MSC-mediated suppression of OPN while the direct addition of exogenous PGE2 inhibited OPN production by DCs. Furthermore, DC-conditioned medium promoted osteogenic differentiation of MSCs with a concomitant inhibition of adipogenesis. These effects were paralleled by the repression of the adipogenic markers PPARγ, adiponectin, and FABP4, and induction of the osteogenic markers alkaline phosphatase, RUNX2, and of the bone-anabolic chemokine CCL5. Notably, blocking OPN activity with RGD peptides or with an antibody against CD29, one of the OPN receptors, prevented the effects of DC-conditioned medium on MSC differentiation and CCL5 induction. Because MSCs have a key role in maintenance of bone marrow (BM) hematopoietic stem cell niche through reciprocal regulation with immune cells, we investigated the possible MSC/DC interaction in human BM by immunohistochemistry. Although DCs (CD1c+) are a small percentage of BM cells, we demonstrated colocalization of CD271+ MSCs with CD1c+ DCs in normal and myelodysplastic BM. OPN reactivity was observed in occasional CD1c+ cells in the proximity of CD271+ MSCs. Altogether, these results candidate OPN as a signal modulated by MSCs according to their activation status and involved in DC regulation of MSC differentiation.
topic dendritic cells
mesenchymal stromal cells
osteopontin
ccl5
adipogenesis
osteogenesis
url https://www.frontiersin.org/article/10.3389/fimmu.2018.01207/full
work_keys_str_mv AT sarascutera adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT valentinasalvi adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT luisalorenzi adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT giorgiapiersigilli adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT silvialonardi adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT danielaalotto adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT stefaniacasarin adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT carlottacastagnoli adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT ericadander adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT giovannadamico adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT silvanosozzani adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
AT tizianamusso adaptiveregulationofosteopontinproductionbydendriticcellsthroughthebidirectionalinteractionwithmesenchymalstromalcells
_version_ 1725252715641044992