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Murine iPSC-derived microglia and macrophage cell culture models recapitulate distinct phenotypical and functional properties of classical and alternative neuro-immune polarisation
- Source :
- Digital.CSIC. Repositorio Institucional del CSIC, instname, Brain, behavior, and immunity
- Publication Year :
- 2019
- Publisher :
- Elsevier BV, 2019.
-
Abstract
- The establishment and validation of reliable induced pluripotent stem cell (iPSC)-derived in vitro models to study microglia and monocyte/macrophage immune function holds great potential for fundamental and translational neuro-immunology research. In this study, we first demonstrate that ramified CXCR1 iPSC-microglia (cultured within a neural environment) and round-shaped CXCR1 iPSC-macrophages can easily be differentiated from newly established murine CXCR1CCR2 iPSC lines. Furthermore, we show that obtained murine iPSC-microglia and iPSC-macrophages are distinct cell populations, even though iPSC-macrophages may upregulate CXCR1 expression when cultured within a neural environment. Next, we characterized the phenotypical and functional properties of murine iPSC-microglia and iPSC-macrophages following classical and alternative immune polarisation. While iPSC-macrophages could easily be triggered to adopt a classically-activated or alternatively-activated phenotype following, respectively, lipopolysaccharide + interferon γ or interleukin 13 (IL13) stimulation, iPSC-microglia and iPSC-macrophages cultured within a neural environment displayed a more moderate activation profile as characterised by the absence of MHCII expression upon classical immune polarisation and the absence of Ym1 expression upon alternative immune polarisation. Finally, extending our preceding in vivo studies, this striking phenotypical divergence was also observed for resident microglia and infiltrating monocytes within highly inflammatory cortical lesions in CXCR1CCR2 mice subjected to middle cerebral arterial occlusion (MCAO) stroke and following IL13-mediated therapeutic intervention thereon. In conclusion, our study demonstrates that the applied murine iPSC-microglia and iPSC-macrophage culture models are able to recapitulate in vivo microglia and monocyte/macrophage ontogeny and corresponding phenotypical/functional properties upon classical and alternative immune polarisation, and therefore represent a valuable in vitro platform to further study and modulate microglia and (infiltrating) monocyte immune responses under neuro-inflammatory conditions within a neural environment.<br />This work was supported by research grant G091518N (granted to PP) of the Fund for Scientific Research-Flanders (FWO-Vlaanderen, Belgium), by a Methusalem research grant from the Flemish government (granted to HG and ZB), by funding received from the Belgian Charcot Foundation (granted to PP and DLB) and by the ASCID (Antwerp Study Centre for Infectious Diseases). AQ and EL are holders of a PhD studentship from the FWO-Vlaanderen. EVB is holder of a PhD studentship from the University of Antwerp. DLB is holder of a postdoctoral fellowship from the FWO-Vlaanderen. FM is supported by the Peris 2016 from the Health Department of Generalitat de Catalunya. Research in the Pasque lab is supported by the Research Foundation – Flanders (FWO) (Odysseus Return Grant G0F7716N, to V.P.), the KU Leuven Research Fund (BOFZAP starting grant StG/15/021BF to V.P. C1 grant C14/16/077 to V.P. and Project financing).
- Subjects :
- 0301 basic medicine
Male
Neuroimmunomodulation
Receptors, CCR2
Immunology
Induced Pluripotent Stem Cells
CX3C Chemokine Receptor 1
Cell Culture Techniques
Interleukin (IL) 13
Mice, Transgenic
Biology
Monocytes
03 medical and health sciences
Behavioral Neuroscience
Mice
0302 clinical medicine
Immune system
Classical activation
Neuroinflammation
CX3CR1
medicine
Macrophage
Animals
Induced pluripotent stem cell
Polarisation
iPSC
Microglia
Endocrine and Autonomic Systems
Monocyte
Macrophages
Cell Differentiation
Alternative activation
Cell biology
Mice, Inbred C57BL
Stroke
Disease Models, Animal
030104 developmental biology
medicine.anatomical_structure
Phenotype
Interleukin 13
Female
Human medicine
030217 neurology & neurosurgery
Subjects
Details
- ISSN :
- 10902139 and 08891591
- Database :
- OpenAIRE
- Journal :
- Brain Behavior and Immunity 82: 406-421 (2019)
- Accession number :
- edsair.doi.dedup.....ee7ae5f7f532a206c4c472f70d1dfeb0