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In recent years, one of the more important and costly problems of modern medicine is the need to replace or supplement organs in order to improve the quality of human life. In this field, promising solutions seem to have been implants which are based on NiTi alloys with shape memory effects. Unfortunately, this material is susceptible to the corrosion and release of toxic nickel to the human organism. Hence, its application as a long-term material is strongly limited. Therefore, this paper presents a new solution which should help to improve the functionality of the NiTi alloy and elongate its medical stability to use. The idea was focused on functionalization of the implant surface by a biocompatible, multifunctional coating without any impact on the features of the substrate, i.e., the martensitic transformation responsible for shape memory effects. For this purpose, we prepared a colloidal suspension, composed of β-TCP (particle size ∼450 nm) and the Ag/SiO nanocomposite which due to the electrophoretic deposition (EPD) led to the formation of structurally atypical calcium phosphosilicate coating. Those biomaterials formed a crack-free coating, adhering well to the NiTi surface when distributed over the entire surface, with low concentration of metallic and oxide silver (<3 at. %). At the same time, the coat-forming materials had resulted in the growth of a Gram-negative bacterial biofilm. Additionally, the additive of the silver-silica composite enhances cell proliferation, effectively a few times higher than commonly used coat-forming materials (e.g., pure β-TCP).
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http://dx.doi.org/10.1021/acsabm.8b00510 | DOI Listing |
Cureus
August 2025
Department of Orthodontic Science, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo, JPN.
Purpose Improved superelastic nickel-titanium (Ni-Ti) alloy wires (ISWs) can be used not only for aligning but also for closing the extraction space. The objective of this study was to measure and compare the force and moment generated during mandibular molar protraction using an ISW combined with either short or long hooks under simulated crowded dentition conditions. Materials and methods Assuming crowded dentition following mandibular first premolar extraction, we designed a three-tooth model simulating the canine, the second premolar, and the first molar.
View Article and Find Full Text PDFAdv Sci (Weinh)
August 2025
Physical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
The properties of architected materials, such as origami, kirigami, and lattice materials, are determined by the intrinsic properties of the base material and the designed architecture. It is shown that van der Waals interaction between the elements of the architecture is critical for the mechanical properties of nano-architected triangular graphene. Molecular dynamics simulations demonstrate that interplay between the flexibility and high Young's modulus of graphene, the designed architecture, and the van der Waals interaction between graphene ligaments results in a shape memory effect with a specific energy dissipation of more than 25 times that of the well-known shape memory alloy NiTi.
View Article and Find Full Text PDFInt J Mol Sci
August 2025
Department of Pediatric Dentistry and Preclinical Dentistry, Wroclaw Medical University, Krakowska Str. 26, 50-425 Wroclaw, Poland.
The biocompatibility of orthodontic archwires is crucial for ensuring patient safety and the long-term success of orthodontic treatment. This study evaluated the biocompatibility of stainless steel (SS) and nickel-titanium (Ni-Ti) orthodontic archwires, as well as stainless steel metal brackets, before and after the application of a graphene coating. The assessment was based on the materials' effects on a fibroblast cell line and on the development of a foetal chicken egg embryo.
View Article and Find Full Text PDFDent J (Basel)
August 2025
Surpreendente Research Group, 4400-239 Vila Nova de Gaia, Portugal.
This study aimed to compare the clinical durability, mechanical performance, and stress behavior of three NiTi rotary systems-BlueShaper (Blue), BlueShaper Pro (Dual Wire), and BlueShaper Gold (fully gold-treated NiTi)-through a multimodal evaluation that included simulated instrumentation in 3D-printed replicas, mechanical testing, and finite element analysis (FEA). Sixty instruments (n = 20 per group) were tested. Simulated canal preparation was conducted in standardized 3D-printed mandibular molars with a 40° mesial root curvature until fracture occurred.
View Article and Find Full Text PDFLangmuir
August 2025
College of Mechanical and Electric Engineering, Changchun University of Science and Technology, Changchun 130022, China.
Hydrogen fuel cell bipolar plates demand surfaces with an atomically smooth morphology and stable electrochemical interfaces to minimize contact resistance and corrosion degradation. While nickel-titanium (NiTi) alloys offer inherent advantages for this role, their practical deployment is hindered by persistent surface defects (e.g.
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