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The Impact of As-Built Surface Characteristics of Selective-Laser-Melted Ti-6Al-4V on Early Osteoblastic Response for Potential Dental Applications.


ABSTRACT: This study investigates the potential of Selective Laser Melting (SLM) to tailor the surface characteristics of Ti6Al4V directly during fabrication, eliminating the need for post-processing treatments potentially for dental implants. By adjusting the Volumetric Energy Density (VED) through controlled variations in the laser scanning speed, we achieved customized surface textures at both the micro- and nanoscale levels. SLM samples fabricated at moderate VED levels (50-100 W·mm3/s) exhibited optimized dual-scale surface roughness-a macro-roughness of up to 25.5-27.6 µm and micro-roughness of as low as 58.8-64.2 nm-resulting in significantly enhanced hydrophilicity, with water contact angles (WCAs) decreasing to ~62°, compared to ~80° on a standard grade 5 machined Ti6Al4V plate. The XPS analysis revealed that the surface oxygen content remains relatively stable at low VED values, with no significant increase. The surface topography plays a significant role in influencing the WCA, particularly when the VED values are low (below 200 W·mm3/s) during SLM, indicating the dominant effect of surface morphology over chemistry in these conditions. Biological assays using osteoblast-like MG-63 cells demonstrated that these as-built SLM surfaces supported a 1.5-fold-higher proliferation and improved cytoskeletal organization relative to the control, confirming the enhanced early cellular responses. These results highlight the capability of SLM to engineer bioactive implant surfaces through process-controlled morphology and chemistry, presenting a promising strategy for the next generation of dental implants suitable for immediate placement and osseointegration.

SUBMITTER: Razzaq MH 

PROVIDER: S-EPMC12295017 | biostudies-literature | 2025 Jun

REPOSITORIES: biostudies-literature

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The Impact of As-Built Surface Characteristics of Selective-Laser-Melted Ti-6Al-4V on Early Osteoblastic Response for Potential Dental Applications.

Razzaq Muhammad Hassan MH   Ayeni Olugbenga O   Köklü Selin S   Berk Kagan K   Zaheer Muhammad Usama MU   Tjardts Tim T   Faupel Franz F   Veziroglu Salih S   Mishra Yogendra Kumar YK   Aycan Mehmet Fatih MF   Aktas O Cenk OC   Ameri Tayebeh T   Sen Sinan S  

Journal of functional biomaterials 20250623 7


This study investigates the potential of Selective Laser Melting (SLM) to tailor the surface characteristics of Ti6Al4V directly during fabrication, eliminating the need for post-processing treatments potentially for dental implants. By adjusting the Volumetric Energy Density (VED) through controlled variations in the laser scanning speed, we achieved customized surface textures at both the micro- and nanoscale levels. SLM samples fabricated at moderate VED levels (50-100 W·mm<sup>3</sup>/s) exh  ...[more]

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