Three-dimensional scaffold of electrosprayed fibers with large pore size for tissue regeneration.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 20620245.
- Also identified by DOI 10.1016/j.actbio.2010.07.003 and PMC identifier 2957508.
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Abstract
The regeneration of tissues using biodegradable porous scaffolds has been intensely investigated. Since electrospinning can produce scaffolds mimicking nanofibrous architecture found in the body, it has recently gained widespread attention. However, a major problem is the lack of pore size necessary for infiltration of cells into the layers below the surface, restricting cell colonization to the surfaces only. This study describes a novel twist to the traditional electrospinning technology: specifically, collector plates are designed which allow the formation of very thin layers with pore sizes suitable for cell infiltration. The thin samples could be handled without mechanically damaging the structure and could be transferred into cell culture. These thin layers were stacked layer-by-layer to develop thick structures. Thirty day cultures of fibroblasts show attachment and spreading of cells in every layer. This concept is useful in regenerating thick tissues with uniformly distributed cells and others in in vitro cell culture.
Medical subject headings
- Guided Tissue Regeneration
- Nanofibers
- Particle Size
- Tissue Scaffolds