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Updated: May 12, 2026

Control of Cell Geometry through Infrared Laser Assisted Micropatterning
Published on: July 10, 2021
Embossing of micropatterned ceramics and their cellular response
Danish Nadeem1, Terje Sjostrom, Andrew Wilkinson
1School of Oral and Dental Sciences, University of Bristol, Bristol, BS1 2LY, United Kingdom.
None:
The aim of this work is to investigate the use of microtopographies in providing physical cues to modulate the cellular response of human mesenchymal stem cells on ceramics. Two microgrooved patterns (100 microm/50 microm, 10 microm/10 microm groove/pitch) were transcribed reversely onto alumina green ceramic tapes via an embossing technique followed by sintering. Characterization of the micropatterned alumina surfaces and their cellular response was carried out. Spread and polygonal cell morphologies were observed on the wider groove (50 microm/100 microm) surface. Cells seeded onto the narrow groove (10 microm/10 microm) surface aligned themselves alongside the grooves, resulting in more elongated cell morphology. More osteoid matrix nodules shown by osteopontin and osteocalcin biomarkers were detected on the larger grooved surfaces after cell culture of 21 days, indicating a greater level of osteogenicity. This study has shown that micropatterned wider groove (50 microm) topographies are more suitable surfaces for improving osseointegration of ceramic implants.

