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Updated: Jan 20, 2026

Determining Genome-wide Transcript Decay Rates in Proliferating and Quiescent Human Fibroblasts
Published on: January 2, 2018
Controlling fibroblast adhesion and proliferation by 1D Al2O3 nanostructures
Oral Cenk Aktas1, Wolfgang Metzger2, Lisa Mees2
1Department of Paediatric Cardiology, Saarland University, 66421 Homburg, Germany. oca@tf.uni-kiel.de.
Abstract:
The fibrotic encapsulation, which is mainly accompanied by an excessive proliferation of fibroblasts, is an undesired phenomenon after the implantation of various medical devices. Beside the surface chemistry, the topography plays also a major role in the fibroblast-surface interaction. In the present study, one-dimensional aluminium oxide (1D Al2O3) nanostructures with different distribution densities were prepared to reveal the response of human fibroblasts to the surface topography. The cell size, the cell number and the ability to form well-defined actin fibres and focal adhesions were significantly impaired with increasing distribution density of the 1D Al2O3 nanostructures on the substratum.
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