Shape/properties collaborative intelligent manufacturing of artificial bone scaffold: structural design and additive manufacturing process

P Feng, L Liu, F Yang, R Min, P Wu, C Shuai - Biofabrication, 2024 - iopscience.iop.org
Artificial bone graft stands out for avoiding limited source of autograft as well as susceptibility
to infection of allograft, which makes it a current research hotspot in the field of bone defect …

Photocatalytic antibacterial scaffold for inhibiting bacterial infection: Carriers separation, ROS generation and antibacterial action

P Feng, R He, F Yang, Y Lin, L Fan, H Pan… - Sustainable Materials …, 2025 - Elsevier
The recombination of photogenerated carriers in graphitic carbon nitride limits the
application in photocatalysis antibacterial, although graphitic carbon nitride has the potential …

Hierarchical engineering scaffolds for oral and craniofacial tissue regeneration: Recent advances and challenges

J Gu, Z Ke, H Pan, MH Sarfraz, Y Shi, J Shi, Z **e - Applied Materials Today, 2025 - Elsevier
Gradient structures in biological tissues play a pivotal role in organ development,
physiology, and disease conditions. Due to the unique anatomical location, natural oral and …

Reduced graphene oxide-mediated electron-hole separation using titanium dioxide increases the photocatalytic antibacterial activity of bone scaffolds

P Feng, H Tian, F Yang, S Peng, H Pan… - Bio-Design and …, 2025 - Springer
Fast electron–hole recombination issues during titanium dioxide (TiO2) photocatalysis limit
its application in preventing bac‐terial infection during bone defect repair. In this study …

Fast bone regeneration using injectable fully biomimetic organoids with biomineralized and organic microenvironments

R Zheng, N Zhang, S Mao, J Li, X Yan, G Zhang… - Biomaterials …, 2025 - pubs.rsc.org
Bone defects and congenital bone deficiencies are common clinical conditions. However,
conventional non-degradable artificial materials often lead to serious complications, such as …

Amphiphilic polymer coated carbon nanotubes: a promising platform against Salmonella typhi

S Saha, DG Prajapati, A Mishra - Microbial Pathogenesis, 2025 - Elsevier
Carbon nanotubes (CNTs) are an excellent example of new nanostructures that can
penetrate bacterial cell walls. Its remarkable physical features and potent antibacterial …

Revolutionizing the Future of Smart Materials: A Review of 4D Printing, Design, Optimization, and Machine Learning Integration

K Azher, A Nazir, MU Farooq, MR Haq, Z Ali… - Advanced Materials … - Wiley Online Library
With technological advancement and development, there is a tremendous increase in
demand for different smart materials because of their stimulation from external sources …