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Response of Human Corneal Fibroblasts on Silk Film Surface Patterns
Authors:Eun Seok Gil  Sang‐Hyug Park  Jeff Marchant  Fiorenzo Omenetto  David L. Kaplan
Affiliation:Department of Biomedical Engineering, Sackler School of Biomedical Science, Tufts University, 4 Colby St., Medford, Massachusetts 02155, USA
Abstract:Transparent, biodegradable, mechanically robust, and surface‐patterned silk films were evaluated for the effect of surface morphology on human corneal fibroblast (hCF) cell proliferation, orientation, and ECM deposition and alignment. A series of dimensionally different surface groove patterns were prepared from optically graded glass substrates followed by casting poly(dimethylsiloxane) (PDMS) replica molds. The features on the patterned silk films showed an array of asymmetric triangles and displayed 37–342 nm depths and 445–3 582 nm widths. hCF DNA content on all patterned films were not significantly different from that on flat silk films after 4 d in culture. However, the depth and width of the grooves influenced cell alignment, while the depth differences affected cell orientation; overall, deeper and narrower grooves induced more hCF orientation. Over 14 d in culture, cell layers and actin filament organization demonstrated that confluent hCFs and their cytoskeletal filaments were oriented along the direction of the silk film patterned groove axis. Collagen type V and proteoglycans (decorin and biglycan), important markers of corneal stromal tissue, were highly expressed with alignment. Understanding corneal stromal fibroblast responses to surface features on a protein‐based biomaterial applicable in vivo for corneal repair potential suggests options to improve corneal tissue mimics. Further, the approaches provide fundamental biomaterial designs useful for bioengineering oriented tissue layers, an endemic feature in most biological tissue structures that lead to critical tissue functions.
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Keywords:cornea  extracellular matrix  fibroblasts  silk  surface patterns
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