Concepedia

Selective Differentiation of Neural Progenitor Cells by High-Epitope Density Nanofibers

Gabriel A. Silva, Catherine Czeisler, Krista L. Niece, Elia Beniash, Daniel A. Harrington, John A. Kessler, Samuel I. Stupp

Science · 2004 · 2.2K citations · 39 references

Concepts

Abstract

Neural progenitor cells were encapsulated in vitro within a three-dimensional network of nanofibers formed by self-assembly of peptide amphiphile molecules. The self-assembly is triggered by mixing cell suspensions in media with dilute aqueous solutions of the molecules, and cells survive the growth of the nanofibers around them. These nanofibers were designed to present to cells the neurite-promoting laminin epitope IKVAV at nearly van der Waals density. Relative to laminin or soluble peptide, the artificial nanofiber scaffold induced very rapid differentiation of cells into neurons, while discouraging the development of astrocytes. This rapid selective differentiation is linked to the amplification of bioactive epitope presentation to cells by the nanofibers.

References

39

Self-Assembly and Mineralization of Peptide-Amphiphile Nanofibers

Jeffrey D. Hartgerink, Elia Beniash, Samuel I. Stupp · Science · 2001

+12

3.6K citations

Functional Arteries Grown in Vitro

Laura E. Niklason, Jinming Gao, William M. Abbott et al. · Science · 1999

+17

1.7K citations

Peptide-amphiphile nanofibers: A versatile scaffold for the preparation of self-assembling materials

Jeffrey D. Hartgerink, Elia Beniash, Samuel I. Stupp · Proceedings of the National Academy of Sciences · 2002

+15

1.2K citations