Light-based vat-polymerization bioprinting

R Levato, O Dudaryeva… - Nature Reviews …, 2023 - nature.com
Light-based vat-polymerization bioprinting enables computer-aided patterning of 3D cell-
laden structures in a point-by-point, layer-by-layer or volumetric manner, using vat (vats) …

[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 bioprinting in otolaryngology: A review

A McMillan, N McMillan, N Gupta… - Advanced …, 2023 - Wiley Online Library
The evolution of tissue engineering and 3D bioprinting has allowed for increased
opportunities to generate musculoskeletal tissue grafts that can enhance functional and …

4D printing of extrudable and degradable poly (ethylene glycol) microgel scaffolds for multidimensional cell culture

CE Miksch, NP Skillin, BE Kirkpatrick, GK Hach… - Small, 2022 - Wiley Online Library
Granular synthetic hydrogels are useful bioinks for their compatibility with a variety of
chemistries, affording printable, stimuli‐responsive scaffolds with programmable structure …

(Bio) printing in personalized medicine—opportunities and potential benefits

D Shopova, A Yaneva, D Bakova, A Mihaylova… - Bioengineering, 2023 - mdpi.com
The global development of technologies now enters areas related to human health, with a
transition from conventional to personalized medicine that is based to a significant extent on …

Organoid: Bridging the gap between basic research and clinical practice

G Weng, J Tao, Y Liu, J Qiu, D Su, R Wang, W Luo… - Cancer Letters, 2023 - Elsevier
Nowadays, the diagnosis and treatment system of malignant tumors has increasingly tended
to be more precise and personalized. And the existing tumor models are still unable to fully …

Oxygen-generating scaffolds: One step closer to the clinical translation of tissue engineered products

R Augustine, M Gezek, NS Bostanci, A Nguyen… - Chemical Engineering …, 2023 - Elsevier
The lack of oxygen supply in engineered constructs has been an ongoing challenge for
tissue engineering and regenerative medicine. Upon implantation of an engineered tissue …

Toward Artificial Cell‐Mediated Tissue Engineering: A New Perspective

Y Sümbelli, AF Mason, JCM van Hest - Advanced Biology, 2023 - Wiley Online Library
The fast‐growing pace of regenerative medicine research has allowed the development of a
range of novel approaches to tissue engineering applications. Until recently, the main points …

Total disc replacement devices: structure, material, fabrication, and properties

G Song, Z Qian, K Wang, J Liu, Y Wei… - Progress in Materials …, 2023 - Elsevier
The intervertebral disc (IVD) is an important component of the human spine that maintains
physiological motion and distributes loads. Single-or multi-segment degeneration occurs …

Vascularized organ bioprinting: From strategy to paradigm

H Wang, X Liu, Q Gu, X Zheng - Cell Proliferation, 2023 - Wiley Online Library
Over the past two decades, 3D bioprinting has become a popular research topic worldwide,
as it is the most promising approach for manufacturing vascularized organs in vitro …