Micro/nano functional devices fabricated by additive manufacturing

Z Huang, G Shao, L Li - Progress in Materials Science, 2023 - Elsevier
Micro/nano functional devices featuring deep integration, intelligence, and miniaturization
have attracted considerable attention in frontier areas of research, such as micro/nano …

[HTML][HTML] 3D printing technology; methods, biomedical applications, future opportunities and trends

Y Bozkurt, E Karayel - Journal of Materials Research and Technology, 2021 - Elsevier
Abstract 3D printer technology is one of the innovations brought by the industrial age. It has
been in our lives for many years. It is rapidly developing and used in many sectors like …

[HTML][HTML] New insights of scaffolds based on hydrogels in tissue engineering

DM Radulescu, IA Neacsu, AM Grumezescu… - Polymers, 2022 - mdpi.com
In recent years, biomaterials development and characterization for new applications in
regenerative medicine or controlled release represent one of the biggest challenges. Tissue …

Smart/stimuli-responsive hydrogels: State-of-the-art platforms for bone tissue engineering

HM El-Husseiny, EA Mady, WA El-Dakroury… - Applied Materials …, 2022 - Elsevier
Repair of bone defects is a time-consuming, self-healing process based on tissue modeling
and remodeling. However, the capacity of this method is limited, especially for critical-sized …

[HTML][HTML] Tissue engineering and regenerative medicine: achievements, future, and sustainability in Asia

F Han, J Wang, L Ding, Y Hu, W Li, Z Yuan… - … in bioengineering and …, 2020 - frontiersin.org
Exploring innovative solutions to improve the healthcare of the aging and diseased
population continues to be a global challenge. Among a number of strategies toward this …

[HTML][HTML] 3D bioprinting pluripotent stem cell derived neural tissues using a novel fibrin bioink containing drug releasing microspheres

R Sharma, IPM Smits, L De La Vega, C Lee… - … in bioengineering and …, 2020 - frontiersin.org
3D bioprinting combines cells with a supportive bioink to fabricate multiscale, multi-cellular
structures that imitate native tissues. Here, we demonstrate how our novel fibrin-based …

[HTML][HTML] Embedded 3D bioprinting–An emerging strategy to fabricate biomimetic & large vascularized tissue constructs

H Budharaju, D Sundaramurthi, S Sethuraman - Bioactive Materials, 2024 - Elsevier
Three–dimensional bioprinting is an advanced tissue fabrication technique that allows
printing complex structures with precise positioning of multiple cell types layer–by–layer …

3D printing of neural tissues derived from human induced pluripotent stem cells using a fibrin-based bioink

E Abelseth, L Abelseth, L De la Vega… - ACS Biomaterials …, 2018 - ACS Publications
3D bioprinting offers the opportunity to automate the process of tissue engineering, which
combines biomaterial scaffolds and cells to generate substitutes for diseased or damaged …

[HTML][HTML] Bone marrow niches of hematopoietic stem and progenitor cells

O Kandarakov, A Belyavsky, E Semenova - International Journal of …, 2022 - mdpi.com
The mammalian hematopoietic system is remarkably efficient in meeting an organism's vital
needs, yet is highly sensitive and exquisitely regulated. Much of the organismal control over …

[HTML][HTML] Convergence of 3D bioprinting and nanotechnology in tissue engineering scaffolds

S Zhang, X Chen, M Shan, Z Hao, X Zhang, L Meng… - Biomimetics, 2023 - mdpi.com
Three-dimensional (3D) bioprinting has emerged as a promising scaffold fabrication strategy
for tissue engineering with excellent control over scaffold geometry and microstructure …