Multimaterial 3D and 4D bioprinting of heterogenous constructs for tissue engineering

A Chen, W Wang, Z Mao, Y He, S Chen… - Advanced …, 2023 - Wiley Online Library
Additive manufacturing (AM), which is based on the principle of layer‐by‐layer shaping and
stacking of discrete materials, has shown significant benefits in the fabrication of …

[HTML][HTML] Biofabrication methods for reconstructing extracellular matrix mimetics

A Aazmi, D Zhang, C Mazzaglia, M Yu, Z Wang… - Bioactive Materials, 2024 - Elsevier
In the human body, almost all cells interact with extracellular matrices (ECMs), which have
tissue and organ-specific compositions and architectures. These ECMs not only function as …

[HTML][HTML] The application of 3D bioprinting in urological diseases

K Xu, Y Han, Y Huang, P Wei, J Yin, J Jiang - Materials Today Bio, 2022 - Elsevier
Urologic diseases are commonly diagnosed health problems affecting people around the
world. More than 26 million people suffer from urologic diseases and the annual expenditure …

3D Printing of green and renewable polymeric materials: toward greener additive manufacturing

G Guggenbiller, S Brooks, O King… - ACS Applied Polymer …, 2023 - ACS Publications
There is an ever-growing push toward sustainability and green manufacturing in a wide
array of industries, especially 3D printing, which is now recognized as a viable …

[HTML][HTML] Epitaxial growth of rare-earth yttrium on nanosheets to form semicoherent interface in zinc implant

C Shuai, J Zhang, Y Yang, H Qian, M Yang… - Journal of Materials …, 2024 - Elsevier
Molybdenum disulfide (MoS 2) nanosheet as nano reinforcement exhibits great advantages
in zinc (Zn) implant due to its coordinated crystal slip and grain boundary strain effect …

Development of digital light processing-based multi-material bioprinting for fabrication of heterogeneous tissue constructs

H Su, B Lu, M Li, X Yang, M Qin, Y Wu - Biomaterials Science, 2023 - pubs.rsc.org
Human tissues and organs have heterogeneous structures with multiple property gradients,
which are difficult to restore by single-material bioprinting technology. The advances in multi …

Simultaneous multi-material embedded printing for 3D heterogeneous structures

Z Gao, J Yin, P Liu, Q Li, R Zhang… - International Journal of …, 2023 - iopscience.iop.org
In order to mimic the natural heterogeneity of native tissue and provide a better
microenvironment for cell culturing, multi-material bioprinting has become a common …

Latest developments in engineered skeletal muscle tissues for drug discovery and development

S Ostrovidov, M Ramalingam, H Bae… - Expert opinion on …, 2023 - Taylor & Francis
Introduction With the advances in skeletal muscle tissue engineering, new platforms have
arisen with important applications in biology studies, disease modeling, and drug testing …

Inkjet 3D bioprinting for tissue engineering and pharmaceutics

D Zhao, H Xu, J Yin, H Yang - Journal of Zhejiang University-SCIENCE A, 2022 - Springer
Abstract 3D bioprinting has the capability to create 3D cellular constructs with the desired
shape using a layer-by-layer approach. Inkjet 3D bioprinting, as a key component of 3D …

Constructing biomimetic liver models through biomaterials and vasculature engineering

W Lv, H Zhou, A Aazmi, M Yu, X Xu… - Regenerative …, 2022 - academic.oup.com
The occurrence of various liver diseases can lead to organ failure of the liver, which is one of
the leading causes of mortality worldwide. Liver tissue engineering see the potential for …