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] Multifunctional GelMA platforms with nanomaterials for advanced tissue therapeutics

AG Kurian, RK Singh, KD Patel, JH Lee, HW Kim - Bioactive materials, 2022 - Elsevier
Polymeric hydrogels are fascinating platforms as 3D scaffolds for tissue repair and delivery
systems of therapeutic molecules and cells. Among others, methacrylated gelatin (GelMA) …

[HTML][HTML] 3D-printed microrobots from design to translation

SR Dabbagh, MR Sarabi, MT Birtek, S Seyfi… - Nature …, 2022 - nature.com
Microrobots have attracted the attention of scientists owing to their unique features to
accomplish tasks in hard-to-reach sites in the human body. Microrobots can be precisely …

Advances in regenerative medicine and tissue engineering: innovation and transformation of medicine

K Dzobo, NE Thomford, DA Senthebane… - Stem cells …, 2018 - Wiley Online Library
Humans and animals lose tissues and organs due to congenital defects, trauma, and
diseases. The human body has a low regenerative potential as opposed to the urodele …

Biomaterials-based regenerative strategies for skin tissue wound healing

G Kaur, G Narayanan, D Garg… - ACS Applied Bio …, 2022 - ACS Publications
Skin tissue wound healing proceeds through four major stages, including hematoma
formation, inflammation, and neo-tissue formation, and culminates with tissue remodeling …

[HTML][HTML] 3D printing applications for healthcare research and development

M Javaid, A Haleem, RP Singh, R Suman - Global Health Journal, 2022 - Elsevier
There is a growing demand for customised, biocompatible, and sterilisable components in
the medical business. 3D Printing is a disruptive technology for healthcare and provides …

[HTML][HTML] Human stem cell based corneal tissue mimicking structures using laser-assisted 3D bioprinting and functional bioinks

A Sorkio, L Koch, L Koivusalo, A Deiwick, S Miettinen… - Biomaterials, 2018 - Elsevier
There is a high demand for developing methods to produce more native-like 3D corneal
structures. In the present study, we produced 3D cornea-mimicking tissues using human …

[HTML][HTML] Alginate-based hydrogels as drug delivery vehicles in cancer treatment and their applications in wound dressing and 3D bioprinting

F Abasalizadeh, SV Moghaddam, E Alizadeh… - Journal of biological …, 2020 - Springer
Hydrogels are a three-dimensional and crosslinked network of hydrophilic polymers. They
can absorb a large amount of water or biological fluids, which leads to their swelling while …

Intravital three-dimensional bioprinting

A Urciuolo, I Poli, L Brandolino, P Raffa… - Nature biomedical …, 2020 - nature.com
Fabrication of three-dimensional (3D) structures and functional tissues directly in live
animals would enable minimally invasive surgical techniques for organ repair or …

[HTML][HTML] The 3D bioprinted scaffolds for wound healing

PE Antezana, S Municoy, MI Álvarez-Echazú… - Pharmaceutics, 2022 - mdpi.com
Skin tissue engineering and regeneration aim at repairing defective skin injuries and
progress in wound healing. Until now, even though several developments are made in this …