Inkjet bioprinting of biomaterials

X Li, B Liu, B Pei, J Chen, D Zhou, J Peng… - Chemical …, 2020 - ACS Publications
The inkjet technique has the capability of generating droplets in the picoliter volume range,
firing thousands of times in a few seconds and printing in the noncontact manner. Since its …

[HTML][HTML] Additive manufacturing in the biomedical field-recent research developments

T Tom, SP Sreenilayam, D Brabazon, JP Jose… - Results in …, 2022 - Elsevier
The growth and development in the biomedical field are very essential for the sustainable
and holistic well-being of our entire society. The shortage of patient-specific products is the …

Biomaterialomics: Data science-driven pathways to develop fourth-generation biomaterials

B Basu, NH Gowtham, Y Xiao, SR Kalidindi, KW Leong - Acta Biomaterialia, 2022 - Elsevier
Conventional approaches to developing biomaterials and implants require intuitive tailoring
of manufacturing protocols and biocompatibility assessment. This leads to longer …

Application of 3D printing technology in bone tissue engineering: a review

Y Feng, S Zhu, D Mei, J Li, J Zhang… - Current Drug …, 2021 - ingentaconnect.com
Clinically, the treatment of bone defects remains a significant challenge, as it requires
autogenous bone grafts or bone graft substitutes. However, the existing biomaterials often …

Additively manufactured gradient porous Ti–6Al–4V hip replacement implants embedded with cell-laden gelatin methacryloyl hydrogels

E Davoodi, H Montazerian… - … applied materials & …, 2021 - ACS Publications
Laser additive manufacturing has led to a paradigm shift in the design of next-generation
customized porous implants aiming to integrate better with the surrounding bone. However …

[HTML][HTML] Biomimetic Ti–6Al–4V alloy/gelatin methacrylate hybrid scaffold with enhanced osteogenic and angiogenic capabilities for large bone defect restoration

L Ma, X Wang, Y Zhou, X Ji, S Cheng, D Bian, L Fan… - Bioactive Materials, 2021 - Elsevier
Titanium-based scaffolds are widely used implant materials for bone defect treatment.
However, the unmatched biomechanics and poor bioactivities of conventional titanium …

A review of powder deposition in additive manufacturing by powder bed fusion

P Avrampos, GC Vosniakos - Journal of manufacturing processes, 2022 - Elsevier
One of the most important aspects of Powder Bed Fusion (PBF) processes is the powder
layer spreading. The powder layer needs to be applied in such a way that its evenness and …

A review on the biocompatibility of PMMA-based dental materials for interim prosthetic restorations with a glimpse into their modern manufacturing techniques

SM Pituru, M Greabu, A Totan, M Imre, M Pantea… - Materials, 2020 - mdpi.com
This paper's primary aim is to outline relevant aspects regarding the biocompatibility of
PMMA (poly (methyl methacrylate))-based materials used for obtaining interim prosthetic …

Progress in 3D printing for bone tissue engineering: A review

W Lan, X Huang, D Huang, X Wei, W Chen - Journal of Materials Science, 2022 - Springer
Effective clinical methods for large bone defects are not yet available on account of the
complex intrinsic structure and mechanical characteristics of natural bone tissue. It remains …

Intelligent vascularized 3D/4D/5D/6D-printed tissue scaffolds

X Han, Q Saiding, X Cai, Y Xiao, P Wang, Z Cai… - Nano-Micro Letters, 2023 - Springer
Blood vessels are essential for nutrient and oxygen delivery and waste removal. Scaffold-
repairing materials with functional vascular networks are widely used in bone tissue …