Source: Tsui, Y., et al. Hypoxic Preconditioning of Marrow-derived Progenitor Cells As a Source for the Generation of Mature Schwann Cells. J. Vis. Exp. (2017)
This video demonstrates a method for obtaining Schwann cell-like cells from multipotent bone marrow stromal cells (BMSCs). Initially, the BMSCs undergo hypoxia treatment, followed by directed differentiation into neuronal progenitor cells. Subsequently, specific media and culture conditions are employed to induce the transformation of these progenitor cells into Schwann cell-like cells.
All procedures involving sample collection have been performed in accordance with the institute's IRB guidelines.
1. Preparation of Rat MSC Cultures
2. Preparation of Human BMSC Cultures
3. Hypoxic Preconditioning
4. Neural Progenitor Enrichment Culture
5. Generation of Schwann cell-like cells
Figure 1: Establishment of MSC colonies. Sizeable MSC colonies should be visible 6-7 days after the plating of bone marrow cells onto tissue culture plastic. A representative image of a rat MSC colony is shown (A), while human colonies demonstrate a similar appearance. Colonies can be passaged on day 10. Seen at higher magnification, both rat (B) and human (D) MSCs exhibit a characteristic fibroblast-like morphology after passaging. MSCs maintained for high passage numbers acquire a flattened, quadrangular morphology (C) and should be discarded.
Figure 2: Characterization of MSCs. (A–D) Representative images of human MSCs. MSCs can be characterized by the expression of appropriate markers, such as CD90 (A), CD73 (B), and Stro-1 (C), and by the absence of hematopoietic stem cell markers, such as CD45 (D). (E–G) Rat MSCs isolated and expanded as described in the protocol demonstrate multipotency in their ability to form adipocytes (E; fat deposits stained with Sudan Red), osteoblasts (F; pericellular matrix stained with Alizarin Red), and chondrocytes (G; proteoglycans stained with Safranin-O) under appropriate culture conditions. Scale bars = 100 μm.
Figure 3: Enrichment of neural progenitors from MSCs. Both rat (A) and human (C) MSCs form neurospheres when cultured upon low-adherence tissue culture plastic in a medium supplemented with EGF/bFGF. The numbers and average diameter of rat (B) and human (D) spheres are enhanced via the hypoxic preconditioning of MSCs (16 h, 1% O2) before sphere induction. Scale bars = 200 μm.
The authors have nothing to disclose.
αMEM | Sigmaaldrich | M4526 | |
DMEM/F12 | Thermofisher scientific | 12400-024 | |
FBS | Biosera | FB-1280/500 | |
B27 | Thermofisher scientific | 17504-001 | |
Epidermal growth factor (EGF) | Thermofisher scientific | PHG0313 | |
Basic fibroblast growth factor (bFGF) | Peprotech | 100-18B/100UG | |
Platelet-derived growth factor-AA (PDGF-AA) | Peprotech | 100-13A | |
Heregulin beta-3, EGF domain (β-Her) | Millipore | 01-201 | |
Poly-D-lysine (PDL) | Sigmaaldrich | P7886-1G | |
Laminin | Thermofisher scientific | 23017015 | |
Penicillin / streptomycin (P/S) | Thermofisher Scientific | 15140-122 | |
TrypLE Express | Thermofisher Scientific | 12604-013 | |
10 cm plate for adherent culture | TPP | 93100 | Used for selection of MSCs |
6-well plate for adherent culture | TPP | 92006 | Used for expansion of MSCs following passaging |
UltraLow 6-well plate for nonadherent culture | Corning | 3471 | Used for neural progenitor enrichment |
anti-human CD90(Thy-1) | BD Biosciences | 555593 | |
anti-human CD73 | BD Biosciences | 550256 | |
anti-human/rat STRO-1 | R&D Systems | MAB1038 | |
anti-human CD45 | BD Biosciences | 555480 | |
Hypoxia chamber | Billups-Rothenberg | MIC-101 | |
HEPES buffer | Sigmaaldrich | H4034-100G | |
anti-human nestin | R&D Systems | MAB1259 | |
anti-rat CD90(Thy-1) | BD Biosciences | 554895 | |
anti-rat CD73 | BD Biosciences | 551123 | |
anti-rat nestin | BD Biosciences | MAB1259 | |
anti-rat CD45 | BD Biosciences | 554875 | |
Anti-S100β | Dako | Z031101 | |
Anti-p75 | Millipore | MAB5386 | |
Anti-GFAP | Sigmaaldrich | G3893 | |
Anti-Class III-beta tubulin (Tuj-1) | Covance | MMS-435P | |
Anti-Human nuclei | Millipore | MAB1281 |