[HTML][HTML] Effects of bone substitute architecture and surface properties on cell response, angiogenesis, and structure of new bone

FSL Bobbert, AA Zadpoor - Journal of Materials Chemistry B, 2017 - pubs.rsc.org
The success of bone substitutes used to repair bone defects such as critical sized defects
depends on the architecture of the porous biomaterial. The architectural parameters and …

[HTML][HTML] Graphene family materials in bone tissue regeneration: perspectives and challenges

X Cheng, Q Wan, X Pei - Nanoscale research letters, 2018 - Springer
We have witnessed abundant breakthroughs in research on the bio-applications of
graphene family materials in current years. Owing to their nanoscale size, large specific …

Comparison of 3D-printed poly-ɛ-caprolactone scaffolds functionalized with tricalcium phosphate, hydroxyapatite, bio-oss, or decellularized bone matrix

E Nyberg, A Rindone, A Dorafshar… - … Engineering Part A, 2017 - liebertpub.com
Three-dimensional (3D)-printing facilitates rapid, custom manufacturing of bone scaffolds
with a wide range of material choices. Recent studies have demonstrated the potential for …

[HTML][HTML] Biomimetic design strategy of complex porous structure based on 3D printing Ti-6Al-4V scaffolds for enhanced osseointegration

Z Wang, M Zhang, Z Liu, Y Wang, W Dong, S Zhao… - Materials & Design, 2022 - Elsevier
Ti6Al4V is extensively utilized as orthopedic implants owing to its outstanding
biocompatibility and mechanical qualities. However, because Ti6Al4V has a high strength, it …

Effects of macropore size in carbonate apatite honeycomb scaffolds on bone regeneration

K Hayashi, ML Munar, K Ishikawa - Materials Science and Engineering: C, 2020 - Elsevier
The pore architecture of scaffolds is a critical factor for angiogenesis and bone regeneration.
Although the effects of scaffold macropore size have been investigated, most scaffolds …

[HTML][HTML] Nano-hydroxyapatite bone scaffolds with different porous structures processed by digital light processing 3D printing

H Liang, Y Wang, S Chen, Y Liu, Z Liu… - International Journal of …, 2022 - ncbi.nlm.nih.gov
The morphologies and structures of the scaffold have a significant influence on their
mechanical and biological properties. In this work, different types of porous structures: Triply …

Graphene-oxide-modified β-tricalcium phosphate bioceramics stimulate in vitro and in vivo osteogenesis

C Wu, L Xia, P Han, M Xu, B Fang, J Wang, J Chang… - Carbon, 2015 - Elsevier
Graphene oxide (GO) has attracted much interest for applications in bone tissue
engineering; however, until now, the interaction between GO and stem cells, and the in vivo …

Influence of 3D printed porous architecture on mesenchymal stem cell enrichment and differentiation

KM Ferlin, ME Prendergast, ML Miller, DS Kaplan… - Acta Biomaterialia, 2016 - Elsevier
The interactions between cells and an underlying biomaterial are important for the
promotion of cell adhesion, proliferation, and function. Mesenchymal stem cells (MSCs) …

[HTML][HTML] Hydrogel: a potential material for bone tissue engineering repairing the segmental mandibular defect

DSA Al Maruf, YA Ghosh, H Xin, K Cheng, P Mukherjee… - Polymers, 2022 - mdpi.com
Free flap surgery is currently the only successful method used by surgeons to reconstruct
critical-sized defects of the jaw, and is commonly used in patients who have had bony …

Review of physical, mechanical, and biological characteristics of 3D-printed bioceramic scaffolds for bone tissue engineering applications

M Thangavel, R Elsen Selvam - ACS Biomaterials Science & …, 2022 - ACS Publications
This review focuses on the advancements in additive manufacturing techniques that are
utilized for fabricating bioceramic scaffolds and their characterizations leading to bone tissue …