Bone regeneration strategies: Engineered scaffolds, bioactive molecules and stem cells current stage and future perspectives

A Ho-Shui-Ling, J Bolander, LE Rustom, AW Johnson… - Biomaterials, 2018 - Elsevier
Bone fractures are the most common traumatic injuries in humans. The repair of bone
fractures is a regenerative process that recapitulates many of the biological events of …

Biodegradable interbody cages for lumbar spine fusion: current concepts and future directions

M Laubach, P Kobbe, DW Hutmacher - Biomaterials, 2022 - Elsevier
Lumbar fusion often remains the last treatment option for various acute and chronic spinal
conditions, including infectious and degenerative diseases. Placement of a cage in the …

Synergy of Cu2+-Cu (OH) 2-CuO with TiO2 coatings, fabricated via plasma electrolytic Oxidation: Insights into the multifaceted mechanism governing visible light …

H Bahramian, A Fattah-alhosseini, M Karbasi… - Chemical Engineering …, 2023 - Elsevier
In this study, copper oxide-embedded TiO 2 coatings were introduced on pure titanium via
plasma electrolytic oxidation (PEO), which exhibited photocatalytic capacity for tetracycline …

An Amorphous Peri‐Implant Ligament with Combined Osteointegration and Energy‐Dissipation

J Hou, Z Xiao, Z Liu, H Zhao, Y Zhu, L Guo… - Advanced …, 2021 - Wiley Online Library
Progress toward developing metal implants as permanent hard‐tissue substitutes requires
both osteointegration to achieve load‐bearing support, and energy‐dissipation to prevent …

Nano-morphology, crystallinity and surface potential of anatase on micro-arc oxidized titanium affect its protein adsorption, cell proliferation and cell differentiation

DJ Lin, LJ Fuh, WC Chen - Materials Science and Engineering: C, 2020 - Elsevier
Using a novel microwave-assisted hydrothermal (MW) process we created nano-scale
anatase on micro-arc-oxidized (MAO) titanium surface. The morphology/crystallinity and …

[HTML][HTML] Optimization of stress distribution of bone-implant interface (BII)

C Zhang, C Zeng, Z Wang, T Zeng, Y Wang - Biomaterials Advances, 2023 - Elsevier
Many studies have found that the threshold of occlusal force tolerated by titanium-based
implants is significantly lower than that of natural teeth due to differences in biomechanical …

Incorporation of inorganic elements onto titanium-based implant surfaces by one-step plasma electrolytic oxidation: an efficient method to enhance osteogenesis

T Huang, H Wang, Z Zhang, K Feng, L Xiang - Biomaterials Science, 2022 - pubs.rsc.org
In the field of dental and orthopedic implantation, the core issue is achieving good and
stable osseointegration rapidly as well as for long-term, which is associated with a series of …

[HTML][HTML] The minipig intraoral dental implant model: A systematic review and meta-analysis

ML Musskopf, A Finger Stadler, UME Wikesjö… - PLoS One, 2022 - journals.plos.org
Objectives The objective of this report was to provide a review of the minipig intraoral dental
implant model including a meta-analysis to estimate osseointegration and crestal bone …

Antibacterial and osteogenesis performances of LL37-loaded titania nanopores in vitro and in vivo

X Shen, MA Al-Baadani, H He, L Cai, Z Wu… - International journal …, 2019 - Taylor & Francis
Background: Many studies have shown that the size of nanotube (NT) can significantly affect
the behavior of osteoblasts on titanium-based materials. But the weak bonding strength …

Elasto–Plastic materials behavior evaluation according to different models applied in indentation hardness tests

ALM Vargas, E Blando, R Hübler - Measurement, 2019 - Elsevier
Abstract Instrumented Hardness Tests (IHT), also known as nanoindentation, establishes
itself throughout the years as a standard method to characterize superficial elasto–plastic …