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Updated: Sep 27, 2025

Generating Primary Fibroblast Cultures from Mouse Ear and Tail Tissues
Published on: January 10, 2016
Effect of crystallinity and related surface properties on gene expression of primary fibroblasts
Dorota Kołbuk1, Marzena Ciechomska2, Oliwia Jeznach1
1Institute of Fundamental Technological Research, Polish Academy of Sciences Pawińskiego 5b 02-106 Warsaw Poland dkolbuk@ippt.pan.pl.
Abstract:
The biomaterial-cells interface is one of the most fundamental issues in tissue regeneration. Despite many years of scientific work, there is no clear answer to what determines the desired adhesion of cells and the synthesis of ECM proteins. Crystallinity is a characteristic of the structure that influences the surface and bulk properties of semicrystalline polymers used in medicine. The crystallinity of polycaprolactone (PCL) was varied by changing the molecular weight of the polymer and the annealing procedure. Measurements of surface free energy showed differences related to substrate crystallinity. Additionally, the water contact angle was determined to characterise surface wettability which was crucial in the analysis of protein absorption. X-ray photoelectron spectroscopy was used to indicate oxygen bonds amount on the surface. Finally, the impact of the crystallinity, and related properties were demonstrated on dermal fibroblasts' response. Cellular proliferation and expression of selected genes: α-SMA, collagen I, TIMP, integrin were analysed.
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