Source: Silva, T.P., et al. Scalable Generation of Mature Cerebellar Organoids from Human Pluripotent Stem Cells and Characterization by Immunostaining. J. Vis. Exp. (2020)
This video demonstrates a technique for generating mature cerebellar organoids from induced pluripotent stem cells (iPSCs) using a single-use 3D bioreactor. The bioreactor facilitates iPSC aggregate formation, which then undergoes treatment with a series of culture media enriched in growth factors and chemokines that induce the differentiation of the iPSC aggregates into mature cerebellar organoids. Subsequently, the organoids are harvested and cryopreserved for further analysis.
1. Seeding of human iPSCs in the bioreactor
2. Differentiation and maturation of human iPSC-derived aggregates in cerebellar organoids
Table 1: Stock solutions and media preparation. Listed are all the components and volumes used to prepare media for the iPSCs maintenance and differentiation protocol, as well as stock solutions of growth factors and small molecules. For stock solutions, all stock concentrations and protocols for reconstitution are listed.
Media preparation | mTeSR1 Final volume: 500 mL |
1. Thaw mTeSR1 5× supplement at room temperature (RT) or at 4 °C overnight and mix with basal medium 2. Store complete mTeSR1 medium at 4 °C for up to 2 weeks or prepare 40 mL aliquots and store at -20 °C 3. Pre-warm complete mTeSR1 at RT before use |
gfCDM (growth factor-free chemically defined medium) Final volume: 60 mL |
30 mL Ham's F12 30 mL IMDM 600 µL chemically defined lipid concentrate (1 % v/v) 2.4 µL monothioglycerol (450 μM) 30 µL apo-transferrin (stock solution at 30 mg/mL in water, final concentration: 15 μg/mL) 300 mg crystallization-purified BSA (5 mg/mL) 42 µL insulin (stock concentration at 10 mg/mL, final concentration: 7 µg/mL) 300 µL P/S (0.5% v/v, 50 U/ml penicillin/50 μg/ml streptomycin) | |
Neurobasal Final volume: 60 mL |
60 mL of Neurobasal medium 600 µL N2 supplement 600 µL Glutamax I 300 µL P/S (0.5 % v/v). | |
Complete BrainPhys Final volume: 60 mL |
60mL of BrainPhys 1.2 mL NeuroCult SM1 Neuronal Supplement 600 µL N2 Supplement 12 µL BDNF (final concentration: 20 ng/mL) 12 µL GDNF (final concentration: 20 ng/mL) 300 µL Dibutyryl-cAMP (stock concentration: 100 mg/mL in water, final concentration: 1 mM) 42 µL ascorbic acid (stock concentration: 50 µg/mL in water, final concentration: 200 nM) | |
Stock solutions of growth factors and small molecules | Basic fibroblast growth factor (bFGF/FGF2) Stock concentration: 100 µg/mL |
1. Reconstitute in 5 mM Tris, pH 7.6, at a concentration of 10 mg/mL 2. Dilute with 0.1 % BSA in PBS (v/v) to a final stock concentration of 100 µg/mL |
Stromal cell-derived factor 1 (SDF1) Stock concentration: 100 µg/mL |
1. Reconstitute in water at a concentration of 10 mg/mL 2. Dilute with 0.1 % BSA (v/ v) in PBS to a final stock concentration of 100 µg/mL. |
|
Brain-derived neurotrophic factor (BDNF) Stock concentration: 100 µg/mL< |
||
Glial cell-derived neurotrophic factor (GDNF) Stock concentration: 100 µg/mL |
||
Fibroblast growth factor 19 (FGF19) Stock concentration: 100 µg/mL |
1. Reconstitute in 5 mM sodium phosphate, pH 7.4, at a concentration of 10 mg/mL 2. Dilute with 0.1 % BSA in PBS (v/v) to a final stock concentration of 100 µg/mL |
|
ROCK inhibitor Y-27632 Stock concentration: 10mM |
Reconstitute in DMSO at a concentration of 10 mM. | |
SB431542 Stock concentration: 10mM |
||
Insulin Stock concentration: 10 mg/mL |
1. Reconstitute 10 mg of insulin in 300 µL of 10 mM NaOH 2. Carefully add 1 M NaOH until the solution becomes clear-transparent 3.Fill to 1 mL with sterile water |
Table 2: Solutions for preparation of organoids for cryosectioning and immunostaining. Listed are all the components and volumes used to prepare the solutions used in the preparation of organoids for cryosectioning and immunostaining.
Gelatin/Sucrose Final concentration: 7.5%/15% w/w |
1. Weigh 15 g of sucrose and 7.5 g of gelatin in a sterile Schott Glass Bottle and mix well 2. Pre-warm the PBS 1× at 65 °C 3. Add pre-warmed PBS 1× to a final weight of 100 g and mix well 4. Place the Schott Glass Bottle in a heating plate at 65 °C and shake until the gelatin melts 5. Incubate at 37 °C until the solution stabilizes |
The authors have nothing to disclose.
BrainPhys Neuronal Medium N2-A & SM1 kit | 5793 – 500mL | Stem cell tecnhnologies | |
Chemically defined lipid concentrate | 11905031 | ThermoFisher | |
Crystallization-purified BSA | 5470 | Sigma | |
DMEM-F12 | 32500-035 | ThermoFisher | |
Fetal bovine serum | A3840001 | ThermoFisher | |
Gelatin from bovine skin | G9391 | Sigma | |
Glutamax I | 10566-016 | ThermoFisher | |
Dibutyryl cAMP | SC- 201567B -500mg | Frilabo | |
Ham's F12 | 21765029 | ThermoFisher | |
Human Episomal iPSC Line | A18945 | ThermoFisher | iPSC6.2 |
IMDM | 12440046 | ThermoFisher | |
Insulin | 91077C | Sigma | |
iPS DF6-9-9T.B | WiCell | ||
Iso-pentane | PHR1661-2ML | Sigma | |
L-Ascorbic acid | A-92902 | Sigma | |
Matrigel | 354230 | Corning | basement membrane matrix |
Monothioglycerol | M6154 | Sigma | |
mTeSR1 | 85850 -500ml | Stem cell technologies | |
N2 supplement | 17502048 | ThermoFisher | |
Neurobasal | 12348017 | ThermoFisher | |
Paraformaldehyde | 158127 | Sigma | |
PBS-0.1 Single-Use Vessel | SKU: IA-0.1-D-001 | PBS Biotech | |
PBS-MINI MagDrive Base Unit | SKU: IA-UNI-B-501 | PBS Biotech | |
Recombinant human BDNF | 450-02 | Peprotech | |
Recombinant human bFGF/FGF2 | 100-18B | Peprotech | |
Recombinant human FGF19 | 100-32 | Peprotech | |
Recombinant human GDNF | 450-10 | Peprotech | |
Recombinant human SDF1 | 300-28A | Peprotech | |
ROCK inhibitor | Y-27632 72302 | Stem cell technologies | |
SB431542 | S4317 | Sigma | |
Sucrose | S7903 | Sigma | |
Tissue-Tek O.C.T. Compound | 25608-930 | VWR |