Source: Wongpaiboonwattana, W., et al. Neural Differentiation of Mouse Embryonic Stem Cells in Serum-free Monolayer Culture. J. Vis. Exp.(2015)
The video demonstrates a protocol that uses serum-free media to generate neural progenitors from mouse embryonic stem cells. The desired concentration of embryonic stem cells, suspended in serum-free media, is plated on gelatin-coated coverslips. At an optimal cell density, cells produce autocrine signaling factors, which, along with the neural differentiation-inducing factors in the serum-free media, trigger the differentiation of embryonic stem cells into neural progenitors.
1. Media Preparation
NOTE: The protocol relies on using a mix of two separate media: DMEM/F12 supplemented with modified N2 supplement and Neurobasal supplemented with B27 supplement, typically in a 1:1 ratio.
2. Plating the Cells
NOTE: This protocol applies equally to mouse ESC grown in 10% serum with leukemia inhibitory factor (LIF), serum replacement with LIF or serum-free media with LIF and bone morphogenetic protein 4 (BMP4) or MEK and GSK3 inhibitors (2i media) with or without LIF. However, the timing and efficiency of the differentiation may vary depending on the media and cells. For the experiments shown here we used the 46C mouse ESC line (with an EGFP reporter knocked into one of the endogenous Sox1 alleles), grown in GMEM with 10% serum and LIF. For optimal results, it is important that cells are dissociated and replated in the N2B27 media; simply changing of media from GMEM/serum/LIF to N2B27 always results in a reduced differentiation efficiency compared to replating the cells.
Table 1. Suggested plating densities and media volumes for different vessel sizes. The plating densities in this table were determined using the 46C cell line. For optimal results, the plating density of each individual line may have to be adjusted.
Platform | Range of effective density (cells/cm2) | Range of cell number to plate | Suggested initial media volume (µl) | Suggested media volume after day 1 (µl) |
6-well plate | 10,500 – 36,500 | 99,750 – 346,750 | 1,000 | 2,000 |
24-well plate | 15,600 – 46,800 | 29,640 – 88,920 | 500 | 1,000 |
96-well plate | 103,500 – 260,000 | 33,120 – 83,200 | 100 | 200 |
The authors have nothing to disclose.
Fetal bovine serum | Life Technologies | 10270-106 | |
DMEM/F12 | Life Technologies | 11320-074 | |
Neurobasal medium | Life Technologies | 21103-049 | |
StemPro Accutase Cell Dissociation Reagent | Life Technologies | A11105-01 | |
B-27 Supplement, serum free | Life Technologies | 17504-044 | |
Insulin | Sigma | I6634 | Reconstitute with sterile 0.01M HCl |
Apo-transferrin | Sigma | T1147 | Reconstitute with sterile water |
Progesterone | Sigma | P8783 | Reconstitute with ethanol |
Putrescine | Sigma | P5780 | Reconstitute with sterile water |
Sodium selenite | Sigma | S5261 | Reconstitute with sterile water |
Bovine albumin fraction V | Life Technologies | 15260-037 | |
L-Glutamine | Life Technologies | 25030-081 | Make sure it is completely dissolved before use as glutamine is usually sedimented |
Gelatine | Sigma | G1890 | |
6-well tissue culture dish | Thermo Scientific | 140675 | |
24-well tissue culture dish | Thermo Scientific | 142475 | |
96-well tissue culture dish | Thermo Scientific | 167008 | |
GMEM | Life Technologies | 11710-035 | |
Fetal bovine serum | Life Technologies | 10270-106 | |
MEM Non-essential amino acids solution | Life Technologies | 11140-050 | |
Sodium pyruvate | Life Technologies | 11360-070 | |
2-mercaptoethanol | Sigma | M7522 | |
25cm2 tissue culture flask | Thermo Scientific | 156367 |