4.6 Article

Migration of connective tissue-derived cells is mediated by ultra-low concentration gradient fields of EGF

期刊

EXPERIMENTAL CELL RESEARCH
卷 317, 期 11, 页码 1491-1502

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2011.04.003

关键词

Gradient; Concentration; Microfabrication; Fibroblast; Chemotaxis; EGF

资金

  1. NCI NIH HHS [R21 CA118255-02, R21 CA118255] Funding Source: Medline
  2. NIGMS NIH HHS [R21 GM071703, R21 GM071703-02] Funding Source: Medline

向作者/读者索取更多资源

The directed migration of cells towards chemical stimuli incorporates simultaneous changes in both the concentration of a chemotactic agent and its concentration gradient, each of which may influence cell migratory response. In this study, we utilized a microfluidic system to examine the interactions between epidermal growth factor (EGF) concentration and EGF gradient in stimulating the chemotaxis of connective tissue-derived fibroblast cells. Cells seeded within microfluidic devices were exposed to concentration gradients established by EGF concentrations that matched or exceeded those required for maximum chemotactic responses seen in transfilter migration assays. The migration of individual cells within the device was measured optically after steady-state gradients had been experimentally established. Results illustrate that motility was maximal at EGF concentration gradients between .01- and 0.1-ng/(mL.mm) for all concentrations used. In contrast, the number of motile cells continually increased with increasing gradient steepness for all concentrations examined. Microfluidics-based experiments exposed cells to minute changes in EGF concentration and gradient that were in line with the acute EGFR phosphorylation measured. Correlation of experimental data with established mathematical models illustrated that the fibroblasts studied exhibit an unreported chemosensitivity to minute changes in EGF concentration, similar to that reported for highly motile cells, such as macrophages. Our results demonstrate that shallow chemotactic gradients, while previously unexplored, are necessary to induce the rate of directed cellular migration and the number of motile cells in the connective tissue-derived cells examined. Published by Elsevier Inc.

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