A bioinspired gelatin–amorphous calcium phosphate coating on titanium implant for bone regeneration

Y Feng, D Wu, J Knaus, S Keßler, B Ni… - Advanced …, 2023 - Wiley Online Library
Biocompatible and bio‐active coatings can enhance and accelerate osseointegration via
chemical binding onto substrates. Amorphous calcium phosphate (ACP) has been shown as …

[HTML][HTML] Dual-functional 3D-printed porous bioactive scaffold enhanced bone repair by promoting osteogenesis and angiogenesis

S Li, Y Cui, H Liu, Y Tian, Y Fan, G Wang, J Wang… - Materials Today Bio, 2024 - Elsevier
The treatment of bone defects is a difficult problem in orthopedics. The excessive destruction
of local bone tissue at defect sites destroys blood supply and renders bone regeneration …

[HTML][HTML] Electrohydrodynamic fabrication of triple-layered polycaprolactone dura mater substitute with antibacterial and enhanced osteogenic capability

Y Su, Z Li, H Zhu, J He, B Wei, D Li - Chinese Journal of Mechanical …, 2022 - Elsevier
In the field of dura mater repair, it is essential to employ artificial substitutes mimicking the
multilayered microarchitecture and multiple functions of native dura mater for effective …

Surface treatments and surface modification techniques for 3D built materials

P Vijaya Kumar, C Velmurugan - Innovations in Additive Manufacturing, 2022 - Springer
Abstract The Additive Manufacturing components are being involved to post processing
techniques in order to enhance the mechanical properties, surface quality and geometrical …

Modification of hydroxyapatite surface properties by electron irradiation

G Bai, JC Hornez, U Maschke, P Supiot… - Radiation Physics and …, 2020 - Elsevier
In the present work, the modification of wetting properties of EB irradiated HA ceramics are
studied under air and N 2 gas atmospheres. We show a noticeable increase of the …

Calcined hydroxyapatite powders with increased chemical stabilities and dispersibility

K Zhang, X Zhang, H Sun, X Li, J Bai… - Bioinspired …, 2022 - icevirtuallibrary.com
Biocompatible hydroxyapatite (HAp) powders have thermodynamically driven tendencies to
lower their surface areas due to the formation of irreversible aggregates. To address this …