| Literature DB >> 32071891 |
Ben Newland1,2, Fanny Ehret3, Franziska Hoppe1, Dimitri Eigel1, Dagmar Pette1, Heike Newland1, Petra B Welzel1, Gerd Kempermann3,4, Carsten Werner1,4.
Abstract
Neural precursor cells have been much studied to further our understanding of the far-reaching and controversial question of adult neurogenesis. Currently, differentiation of primary neural precursor cells from the mouse dentate gyrus via 2-dimentional in vitro culture yields low numbers of neurons, a major hindrance to the field of study. 3-dimentional "neurosphere" culture allows better 3D cell-cell contact, but control over cell differentiation is poor because nutrition and oxygen restrictions at the core of the sphere causes spontaneous differentiation, predominantly to glial cells, not neurons. Our group has developed macroporous scaffolds, which overcome the above-mentioned problems, allowing long-term culture of neural stem cells, which can be differentiated into a much higher yield of neurons. Herein we describe a method for culturing neural precursor cells on RGD peptide functionalized-heparin containing cryogel scaffolds, either in standard non-adherent well-plates (static culture) or in spinner flasks (dynamic culture). This method includes: •The synthesis and characterization of heparin based microcarriers.•A "static" 3D culture method for that does not require spinner flask equipment.•"Dynamic" culture in which cell loaded microcarriers are transferred to a spinner flask.Entities:
Keywords: 3D culture of neural precursor cells on macroporous cryogel microcarriers; Biomaterials for cell culture; Cell survival; Dentate gyrus; Heparin; Neural progenitor differentiation; Scaffolds
Year: 2020 PMID: 32071891 PMCID: PMC7011076 DOI: 10.1016/j.mex.2020.100805
Source DB: PubMed Journal: MethodsX ISSN: 2215-0161
Fig. 1A schematic representation of the 3D culture protocol whereby the dry microcarriers are first loaded in a centrifuge tube before transfer to the desired culture conditions.
Fig. 2A representative fluorescent microscope image (40 μm Z-projection) of neural precursor cells analyzed by the Live/Dead cell assay after three days of static culture on a microcarrier. Live cells (green) can be seen adhered to the microcarrier (red) with nuclear counterstaining (blue) and few dead cells (orange). Such analysis can be used to validate the growth of the cells within the pores of the microcarriers. Scale bars represent 100 μm. See the parallel publication for further microscopy analysis [5].
| Subject Area: | Neuroscience |
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| Resource availability: | Raw data are available upon request. |