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Human Microglia-like Cells: Differentiation from Induced Pluripotent Stem Cells and In Vitro Live-cell Phagocytosis Assay using Human Synaptosomes
Published on: August 18, 2022
In vitro differentiation of lineage-negative bone marrow cells into microglia-like cells
Daisuke Noto1, Kazuya Takahashi, Sachiko Miyake
1Department of Neurology and Neurobiology of Aging, Kanazawa University Graduate School of Medical Science, Kanazawa, Japan.
Abstract:
Microglia are believed to be the only resident immune cells in the CNS, originating from hematopoietic-derived myeloid cells and invading the CNS during development. However, the detailed mechanisms of differentiation and transformation of microglial cells are not fully understood. Here, we demonstrate that murine microglial cells show two morphological forms in vitro, namely, small round cells expressing CD11b, Iba1, triggering receptor expressing on myeloid cells-2 (TREM2), and weakly expressing major histocompatibility complex class II and large flat cells expressing only CD11b and Iba1. Moreover, lineage-negative bone marrow (LN) cells cultured with primary mixed glial culture cells could differentiate into only the small round microglia-like cells, despite the absence of CCR2 and Gr-1 expression. Addition of macrophage colony stimulating factor (M-CSF) to LN cell culture allowed the proliferation and expression of TREM2 in LN cells, and the addition of neutralizing anti-M-CSF antibodies suppressed the proliferation of LN cells despite the expression of TREM2. When LN cells were cultured with M-CSF, the number of small round cells in the culture was considerably low, indicating that the small round morphology of the immature cells is not maintained in the presence of only M-CSF. On the other hand, when LN cells were grown in the presence of astrocytes, the small round cells were maintained at a concentration of approximately 30% of the total population. Therefore, cell-cell contact with glial cells, especially astrocytes, may be necessary to maintain the small round shape of the immature cells expressing TREM2.
Insights
Murine microglia exhibit two distinct in vitro morphologies. Astrocytes are crucial for maintaining the small, round shape of immature microglia expressing TREM2, suggesting cell-cell contact is vital for their development.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia are the primary immune cells of the central nervous system (CNS), originating from myeloid precursors during development.
- The precise mechanisms governing microglial differentiation and morphological transformation remain incompletely understood.
Purpose of the Study:
- To investigate the differentiation pathways and morphological characteristics of microglial cells in vitro.
- To identify factors influencing microglial cell shape and development, particularly the role of astrocytes and specific growth factors.
Main Methods:
- Culturing murine microglial cells and lineage-negative bone marrow (LN) cells in vitro.
- Utilizing immunofluorescence to assess cell morphology and marker expression (CD11b, Iba1, TREM2, MHC class II, CCR2, Gr-1).
- Employing macrophage colony-stimulating factor (M-CSF) and neutralizing anti-M-CSF antibodies to study proliferation and differentiation.
Main Results:
- Murine microglia displayed two distinct in vitro forms: small round cells (expressing TREM2) and large flat cells.
- LN cells differentiated into small round microglia-like cells when co-cultured with glial cells, independent of CCR2 and Gr-1.
- M-CSF promoted LN cell proliferation and TREM2 expression, but co-culture with astrocytes was necessary to maintain the small round morphology.
Conclusions:
- Cell-cell contact, particularly with astrocytes, appears essential for maintaining the immature, small round morphology of microglia expressing TREM2.
- M-CSF influences microglial proliferation and TREM2 expression, but astrocyte interaction is key for preserving specific immature cell shapes.
