- Author:
Sang Jin YOO
1
;
Jongmin KIM
;
Chang Soo LEE
;
Yoonkey NAM
Author Information
- Publication Type:Original Article
- Keywords: 3D culture; scaffold; micro mesh; neuronal culture; 3D cell patterning
- MeSH: Adhesives; Animals; Cell Culture Techniques; Cell Differentiation; Cues; Hydrogel; Neurites; Neurons; Nylons; Rats; Sepharose; Tissue Engineering; Weights and Measures
- From:Experimental Neurobiology 2011;20(2):110-115
- CountryRepublic of Korea
- Language:English
- Abstract: Conventional method of cell culture studies has been performed on two-dimensional substrates. Recently, three-dimensional (3D) cell culture platforms have been a subject of interest as cells in 3D has significant differences in cell differentiation and behavior. Here we report a novel approach of 3D cell culture using a nylon micro mesh (NMM) as a cell culture scaffold. NMM is commonly used in cell culture laboratory, which eliminates the requirement of special technicality for biological laboratories. Furthermore, it is made of a micro-meter thick nylon fibers, which was adequate to engineer in cellular scales. We demonstrate the feasibility of the NMM as a 3D scaffold using E18 rat hippocampal neurons. NMM could be coated with cell adhesive coatings (polylysine or polyelectrolyte) and neurons showed good viability. Cells were also encapsulated in an agarose hydrogel and cultured in 3D using NMM. In addition, the 3D pattern of NMM could be used as a guidance cue for neurite outgrowth. The flexible and elastic properties of NMMs made it easier to handle the scaffold and also readily applicable for large-scale tissue engineering applications.