Fibroblast and bacterial adhesion on a 3D‐printed polyetheretherketone‐based implant material

Abstract This study investigated fibroblast and bacteria proliferation on polyetheretherketone (PEEK)‐implant material 3D‐printed by fused deposition modeling (FDM) in comparison to titanium (cp‐Ti) and zirconia (ZrO 2 ). Four groups were tested, including horizontally FDM‐printed PEEK (PH), vertically printed FDM‐PEEK (printed vertically [PV]), cp‐Ti and ZrO 2 . Human gingival fibroblasts were cultured on discs (15/group), with viability evaluated at 1‐, 3‐, and 7‐d and cytokine production (IL‐6 and IL‐8) measured at 3‐d. Discs (9/group) were exposed to Streptococcus oralis with bacteria counted at 1‐ and 2‐d. Discs underwent scanning electron microscopy and surface roughness testing. Although fibroblast proliferation was similar for all groups at 24 h, values were significantly higher for PV than ZrO 2 at 3‐d. At 7‐d, fibroblast proliferation was significantly lower on PH than cp‐Ti. Bacterial adhesion for ZrO 2 was lower than other groups at 24 h and lower than PV and PH at 48 h. IL‐8 production was similar between groups, whereas IL‐6 was higher on cp‐Ti compared to ZrO 2 . PV was significantly rougher than other groups. FDM‐PEEK induces early fibroblast adhesion and viability and bacterial colonization comparable to reference implant materials. The positive outcomes of this study underscore FDM‐PEEK as a promising biomaterial comparable to established implant and prosthetic materials in terms of favorable biological responses and potential soft‐tissue seal.

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Publication Details

Journal
European Journal Of Oral Sciences
Published
2026-09-30
DOI
https://doi.org/10.1111/eos.70146
Primary Topic
Bone Tissue Engineering Materials
Type
article
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article

Fibroblast and bacterial adhesion on a 3D‐printed polyetheretherketone‐based implant material

António Mata, Neusa Silva, Raphael Freitas de Souza, Nesma El-Amier et al.
European Journal Of Oral Sciences
Bone Tissue Engineering Materials
article

Fibroblast and bacterial adhesion on a 3D‐printed polyetheretherketone‐based implant material

António Mata, Neusa Silva, Raphael Freitas de Souza, Nesma El-Amier, Elizabeth A. Zimmermann, Joana Rita Oliveira Faria Marques, Rafaela Branco
article en

Abstract

Abstract This study investigated fibroblast and bacteria proliferation on polyetheretherketone (PEEK)‐implant material 3D‐printed by fused deposition modeling (FDM) in comparison to titanium (cp‐Ti) and zirconia (ZrO 2 ). Four groups were tested, including horizontally FDM‐printed PEEK (PH), vertically printed FDM‐PEEK (printed vertically [PV]), cp‐Ti and ZrO 2 . Human gingival fibroblasts were cultured on discs (15/group), with viability evaluated at 1‐, 3‐, and 7‐d and cytokine production (IL‐6 and IL‐8) measured at 3‐d. Discs (9/group) were exposed to Streptococcus oralis with bacteria counted at 1‐ and 2‐d. Discs underwent scanning electron microscopy and surface roughness testing. Although fibroblast proliferation was similar for all groups at 24 h, values were significantly higher for PV than ZrO 2 at 3‐d. At 7‐d, fibroblast proliferation was significantly lower on PH than cp‐Ti. Bacterial adhesion for ZrO 2 was lower than other groups at 24 h and lower than PV and PH at 48 h. IL‐8 production was similar between groups, whereas IL‐6 was higher on cp‐Ti compared to ZrO 2 . PV was significantly rougher than other groups. FDM‐PEEK induces early fibroblast adhesion and viability and bacterial colonization comparable to reference implant materials. The positive outcomes of this study underscore FDM‐PEEK as a promising biomaterial comparable to established implant and prosthetic materials in terms of favorable biological responses and potential soft‐tissue seal.

European Journal Of Oral Sciences
University of Lisbon (PT), Mansoura University (EG), Université Laval (CA), McGill University (CA)
Openalex Percentile: Top 22%
Bone Tissue Engineering Materials
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