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Background: The reactivity of blood with non-endothelial surface is a challenge for long-term Ventricular Assist Devices development, usually made with pure titanium, which despite of being inert, low density and high mechanical resistance it does not avoid the thrombogenic responses. Here we tested a modification on the titanium surface with Laser Induced Periodic Surface Structures followed by Diamond Like Carbon (DLC) coating in different thicknesses to customize the wettability profile by changing the surface energy of the titanium.
Methods: Four different surfaces were proposed: (1) Pure Titanium as Reference Material (RM), (2) Textured as Test Sample (TS), (3) Textured with DLC 0.3μm as (TSA) and (4) Textured with 2.4μm DLC as (TSB). A single implant was positioned in the abdominal aorta of Wistar rats and the effects of hemodynamic interaction were evaluated without anticoagulant drugs.
Results: After twelve weeks, the implants were extracted and subjected to qualitative analysis by Scanning Electron Microscopy under low vacuum and X-ray Energy Dispersion. The regions that remained in contact with the wall of the aorta showed encapsulation of the endothelial tissue. TSB implants, although superhydrophilic, have proven that the DLC coating inhibits the adhesion of biological material, prevents abrasive wear and delamination, as observed in the TS and TSA implants. Pseudo- neointimal layers were heterogeneously identified in higher concentration on Test Surfaces.
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http://dx.doi.org/10.1111/aor.14683 | DOI Listing |
J Biomech Eng
September 2025
Oral and Maxillofacial Surgery, University Hospitals Leuven, Kapucijnenvoer 33, 3000 Leuven, Belgium.
The patient-specific mandibular reconstruction plate (PSMRP) has gained prominence for its precise adaptation to mandibular contours and reported enhanced mechanical reliability compared to the manual-bent mandibular reconstruction plate (MBMRP). Despite this, a biomechanical comparison between MBMRP and PSMRP is essential for informed clinical decision-making and advancing the field of mandibular reconstruction. Thereupon, biomechanical behavior was compared between two reconstructed mandibles with the MBMRP made of commercial pure titanium plate and the PSMRP stemmed from a common ramus reconstruction case, respectively, in physiological simulation using finite element analyses.
View Article and Find Full Text PDFZhongguo Gu Shang
August 2025
Department of Spinal Surgery, Ningbo No.6 Hospital, Ningbo 315040, Zhejiang, China.
Objective: To establish a two-segment vertebrectomy model using the finite element method, and to measure and compare the biomechanical properties of the lower cervical anterior transpedicular root screw (ATPRS) plate system, lower cervical anterior pedicle screw (ATPS) plate system, and lower cervical anterior cervical locked-plate (ACLP) system on this model.
Methods: CT data of the cervical spine (C-T) from a 34-year-old healthy adult male volunteer were collected. A nonlinear complete model of the lower cervical spine (C-C) was established using Mimics 10.
Colloids Surf B Biointerfaces
August 2025
Institute of Biomedical Engineering, College of Medicine, Southwest Jiaotong University, Chengdu, Sichuan 610031, China. Electronic address:
Titanium (Ti) and Ti alloy are the most widely used implant metals, but the limited bioactivity hinders the further clinical application. Aiming to enhance their osteogenesis, dual biomimetic strategies were utilized to decorate the surface of Ti by topological and biochemical cues. Firstly, a series of concentric circles with TiO nanotubes on Ti were fabricated by photolithography and anodic oxidation.
View Article and Find Full Text PDFJ Oral Biol Craniofac Res
August 2025
Oral Biology Department, Faculty of Dentistry, Tanta University, Al-Geish Street, Tanta, 31527, Egypt.
Background: Biodegradable magnesium-based implants present significant potential for maxillofacial applications, particularly in mandible fixation, due to their osteoconductive properties and elimination of secondary removal surgeries.
Objective: The present study aimed to assess the in vivo biocompatibility and degradation behavior of pure magnesium (Mg) and Mg-Zn-Ca alloy plates implanted in the mandibles of New Zealand rabbits, providing insights into their clinical viability.
Materials And Methods: Twenty-four male New Zealand White rabbits were divided into two groups and received titanium, pure Mg, and Mg-Zn-Ca alloy plates passively implanted into the mandibular bone surface.
Materials (Basel)
August 2025
Oral Surgery Department, Fluminense Federal University, Niteroi 24220-140, Brazil.
The different macro and micro geometries of dental implants are parameters that directly affect osseointegration, making them an important area for research. The objective of this preclinical study was to compare, through histological and histomorphometric analyses, the biological response of two different dental implant surfaces in osseointegration. Surface morphology and chemistry were characterized by SEM/EDX, optical-emission spectroscopy, protein adsorption (BSA), and adipose-derived stem-cell morphology.
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