Source: Pistollato, F., et al. Protocol for the Differentiation of Human Induced Pluripotent Stem Cells into Mixed Cultures of Neurons and Glia for Neurotoxicity Testing. J. Vis. Exp.(2017)
This video demonstrates the process of differentiating embryoid bodies (EBs) into neuroepithelial aggregates and their subsequent division into neuronal and glial cells. This method allows the efficient generation of neuronal and glial cells in vitro, which serve as test systems for toxicity testing as well as assessment of different pathways involved in neurotoxicity.
1. HiPSC Differentiation into Mixed Neurons and Glia
NOTE: The procedure takes approximately 28 days to complete, with the main steps outlined in Figure 1.
Table 1.
Note on dissociated rosette plating density: if rosette fragments do not look completely dissociated, in order to reach a cell plating density of about 15.000 cells/cm2, dissociated rosette fragments deriving from about 50 EBs/1 x 60mm-dish can be resuspended in 50 mL of complete NRI medium and plated as follows (depending on the plate format):
Multiwell plates / MEA | Growth area (cm2/well) | Volume of the cell suspension to plate per well (or MEA chip) | Maximum number of plates that can be plated (with 50 ml of cell suspension) |
96 wells | 0.3 | 100 ul | 5 |
48 wells | 0.7 | 220 ul | 4 |
24 wells | 2 | 625 ul | 3 |
12 wells | 4 | 1.25 ml | 3 |
6 wells | 10 | 3.125 ml | 2 |
Single well MEA chip | 3.5 | 1.1 ml | 45 |
Figure 1: Schematic Representation of the Neuronal Differentiation Protocol. (Upper part) IMR90-hiPSC colonies can be cut into fragments to form embryoid bodies (EBs). After 2 days in vitro (DIV), EBs can be plated onto laminin- or standard matrix-coated dishes and cultured in the presence of neuroepithelial induction (NRI) medium to generate neuroectodermal derivatives (rosettes, here stained for nestin (green) and β-III-tubulin (red)). Rosettes can be dissociated, collected, replated on laminin- or standard matrix-coated dishes, and further differentiated into mature neuronal (NF200, red) and glial (GFAP, green) cells in the presence of neuronal differentiation (ND) medium. (Lower part) rosette-derived NSCs (nestin, red) can be expanded in the presence of neural induction (NI) medium, cryopreserved, or further differentiated in the presence of ND medium to form mixed neuronal (NF200, green) and glial (GFAP, red) cultures.
Figure 2. Characterization of Undifferentiated IMR90-hiPSCs. (A and B) Representative phase-contrast images (10X and 20X magnifications) of undifferentiated IMR90-hiPSC colonies. (C) representative images of alkaline phosphatase-stained colonies (4X magnification). (D-F) Representative immunocytochemical images of (D) Oct4 (red), (E) SSEA3 (green), and (F) Tra1-60 (green). (G) Representative dot plot of SSEA1 (CD15) and SSEA4 staining, analyzed by flow cytometry. (H) The bar graph shows the percentages of Oct4+ (~75 – 80%), Tra1-60+ (~75 – 80%), SSEA3+ (~75 – 80%), nestin+ (~10 – 15%), and β-III-tubulin+ (~3 – 7%) cells, counterstained with DAPI and quantified by HCI, with a mean of 3 to 5 biological replicates ± the S.E.M.
The authors have nothing to disclose.
hiPSC EB medium: | |||
Knockout DMEM | Thermo-Fisher | 10829-018 | (Step 2.1.7) |
Knockout Serum Replacement (KOSR) | Thermo-Fisher | 10828-028 | 20% final concentration (Step 2.1.7) |
Non-Essential Amino Acids | Thermo-Fisher | 11140-035 | (Step 2.1.7) |
Penicillin/Streptomycin | Thermo-Fisher | 15140-122 | 50 U/mL final concentration (Step 2.1.7) |
L-Glutamine 200 mM Solution | Thermo-Fisher | 25030-081 | 2 mM final concentration (Step 2.1.7) |
β-Mercaptoethanol | Thermo-Fisher | 31350-010 | 50 µM final concentration (Step 2.1.7) |
Complete neuroepithelial induction medium (NRI): | |||
DMEM/F12 | Thermo-Fisher | 3133-038 | (Step 2.3.1) |
Non-Essential Amino Acids | Thermo-Fisher | 11140-035 | (Step 2.3.1) |
N2 Supplement | Thermo-Fisher | 17502-048 | (Step 2.3.1) |
Penicillin/Streptomycin | Thermo-Fisher | 15140-122 | 50 U/mL final concentration (Step 2.3.1) |
Heparin Grade I-A, ≥180 USP units/mg | Sigma-Aldrich | H3149-100KU | 2 µg/ml final concentration (Step 2.3.1) |
bFGF | Thermo-Fisher | 13256-029 | 20 ng/ml final concentration added before use (Step 2.3.1) |
Matrigel Basement Membrane Matrix | Corning | 354234 | 1:100 (Step 2.2). Thaw Matrigel on ice, prepare 200 ul aliquots and store them in -80°C. For coating, dilute 200 ul aliquot in 20 ml of cold DMEM/F12 medium. |
Laminin | Sigma-Aldrich | L2020 | 1:100 (Step 2.2). Dilute in PBS 1X. |
Complete Neuronal Differentiation medium (ND): | |||
Neurobasal Medium | Thermo-Fisher | 21103049 | (Step 2.4.11) |
B-27 Supplements (50x) | Thermo-Fisher | 17504044 | (Step 2.4.11) |
N2 Supplement | Thermo-Fisher | 17502-048 | (Step 2.4.11) |
Penicillin/Streptomycin | Thermo-Fisher | 15140-122 | 50 U/mL final concentration (Step 2.4.11) |
GDNF | Thermo-Fisher | PHC7045 | 1 ng/ml final concentration. Added before use. (Step 2.4.11) |
BDNF | Thermo-Fisher | PHC7074 | 2.5 ng/ml final concentration. Added before use. (Step 2.4.11) |