[HTML][HTML] Additive manufacturing of nerve decellularized extracellular matrix-contained polyurethane conduits for peripheral nerve regeneration

YW Chen, CC Chen, HY Ng, CW Lou, YS Chen… - Polymers, 2019 - mdpi.com
The nervous system is the part of our body that plays critical roles in the coordination of
actions and sensory information as well as communication between different body parts …

Synthesis of shape memory electroconductive polyurethane with self-healing capability as an intelligent biomedical scaffold for bone tissue engineering

A Shaabani, R Sedghi - Polymer, 2021 - Elsevier
Electrically conductive polymeric materials are known as a special class of intelligent
bioactive materials capable of regulating cellular behaviors of human adipose-derived …

Substantial effect of silk fibroin reinforcement on properties of hydroxyapatite/silk fibroin nanocomposite for bone tissue engineering application

J Mobika, M Rajkumar, VN Priya, SPL Sibi - Journal of Molecular Structure, 2020 - Elsevier
Nano-biocomposites that mimics bone's extracellular matrix with hydroxyapatite as an
inorganic and silk fibroin as organic phase for three different ratios via a simple in-situ co …

Current achievements in 3D bioprinting technology of chitosan and its hybrids

S Mallakpour, F Sirous, CM Hussain - New Journal of Chemistry, 2021 - pubs.rsc.org
In recent years, additive manufacturing, or in other words three-dimensional (3D) printing
technology, has rapidly become one of the hot topics in the world. Among the vast majority of …

[HTML][HTML] Surface-treated 3D printed Ti-6Al-4V scaffolds with enhanced bone regeneration performance: An in vivo study

G Zhang, P Zhao, L Lin, L Qin, Z Huan… - Annals of …, 2021 - ncbi.nlm.nih.gov
Background Given their highly adjustable and predictable properties, three-dimensional
(3D) printed geometrically ordered porous biomaterials offer unique opportunities as …

[HTML][HTML] Additively manufactured porous scaffolds by design for treatment of bone defects

S Toosi, MJ Javid-Naderi, A Tamayol… - … in Bioengineering and …, 2024 - frontiersin.org
There has been increasing attention to produce porous scaffolds that mimic human bone
properties for enhancement of tissue ingrowth, regeneration, and integration. Additive …

[HTML][HTML] 3D printing of amino resin-based photosensitive materials on multi-parameter optimization design for vascular engineering applications

YC Chiu, YF Shen, AKX Lee, SH Lin, YC Wu, YW Chen - Polymers, 2019 - mdpi.com
Cardiovascular diseases are currently the most common cause of death globally and of
which, the golden treatment method for severe cardiovascular diseases or coronary artery …

Tunable mechanical properties of chitosan-based biocomposite scaffolds for bone tissue engineering applications: A review

B Sushma, A Shanmugavadivu… - International Journal of …, 2024 - Elsevier
Bone tissue engineering (BTE) aims to develop implantable bone replacements for severe
skeletal abnormalities that do not heal. In the field of BTE, chitosan (CS) has become a …

[HTML][HTML] A Review of the Current State of the Art of Polyether Ether Ketone (PEEK) Composite Based 3D-Printed Biomedical Scaffolds

R Surendran, SS Pavithran, A Balachandran, S Vijayan… - Designs, 2023 - mdpi.com
Three-dimensional printing or additive manufacturing (AM) has enabled innovative
advancements in tissue engineering through scaffold development. The use of scaffolds …

Additive manufacturing technologies for fabrication of biomaterials for surgical procedures in dentistry: a narrative review

M Özcan, EB Magini, GM Volpato, A Cruz… - Journal of …, 2022 - Wiley Online Library
Purpose To screen and critically appraise available literature regarding additive
manufacturing technologies for bone graft material fabrication in dentistry. Material and …