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March 12, 2026Journal of Functional Biomaterials0 citationsOpen Access

Influence of the Topography of Zirconium Treated with Laser Micropatterning on Periodontal Ligament Stem Cells: An In Vitro Study

ISIldefonso Serrano-BelmonteARAlba Rico-MolinaJRJ. I. Rosales-Leal

Key Points

  • This study aims to analyze how laser micropatterning modifies zirconium surfaces and its impact on periodontal ligament stem cells (PDLSCs).
  • Examined zirconium surfaces treated with laser micropatterning and plastic coverslips as a control.
  • Counted adhered PDLSCs using the Neubauer chamber after 48 hours.
  • Assessed cell morphology and adhesion through confocal and scanning electron microscopy.
  • Significant differences in primary cell adhesion were observed across zirconium surface types.
  • Grid and channel topographies promoted the highest fibroblast adhesion.
  • Regular and moderately rough surfaces enhanced cell proliferation and development.

Abstract

Zirconium is a widely used material in the field of dentistry, employed for implants and their components as well as for the creation of crowns and veneers. Given that its biocompatibility has been studied and demonstrated in various fields of application, it is necessary to analyze how surface modification of this material influences its properties. The purpose of this study was to analyze the biocompatibility, initial adhesion (48 h), and morphology of periodontal ligament stem cells (PDLSCs) seeded on different zirconium surfaces treated with laser micropatterning, as well as plastic coverslips as a control. The Neubauer chamber was used to count the cells adhered to each of the sets, and confocal and scanning electron microscopy were employed to examine the adhesion and morphology of periodontal ligament stem cells on each of the zirconium surfaces studied. Results: Statistically significant differences were found in terms of primary cell adhesion, with sets 3 (grid topography) and 4 (channel topography) showing the most favorable characteristics for fibroblast adhesion. It was concluded that regular and moderately rough surfaces promoted better cell proliferation and development.

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Cite This Study

Serrano-Belmonte et al. (2026) studied this question.

synapsesocial.com/papers/69b257df96eeacc4fcec6e1dhttps://doi.org/10.3390/jfb17030132
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