Recent progress of bio‐printed PEGDA‐based bioinks for tissue regeneration

E Hamedi, N Vahedi, F Sigaroodi… - Polymers for …, 2023 - Wiley Online Library
Abstract Three‐dimensional (3D) bioprinting is a promising method for the fabrication of
tissue engineering constructs. The bioprintable materials with cells or other biological parts …

Designing advanced hydrogel inks with direct ink writing based 3D printability for engineered biostructures

D Bhardwaj, R Singhmar, M Garg, D Gupta… - European Polymer …, 2024 - Elsevier
The advent of 3D printing technology in the 1980s enabled the fabrication of patient-specific
products with precise shape, size, and complexity. A variety of 3D printing techniques, such …

[HTML][HTML] Chitooligosaccharide and Its Derivatives: Potential Candidates as Food Additives and Bioactive Components

A Mittal, A Singh, J Buatong, J Saetang, S Benjakul - Foods, 2023 - mdpi.com
Chitooligosaccharide (CHOS), a depolymerized chitosan, can be prepared via physical,
chemical, and enzymatic hydrolysis, or a combination of these techniques. The superior …

[HTML][HTML] Critical Overview on Pure Chitosan-based Scaffolds for Bone Tissue Engineering: Clinical insights in Dentistry

L Signorini, G Marenzi, A Facente… - … Journal of Medical …, 2023 - ncbi.nlm.nih.gov
Abstract Bone Tissue Engineering (BTE) is a field of regenerative medicine continuously
improving, thanks to the development of new biomaterials used as grafts or scaffolds for …

[HTML][HTML] Applications of light-based 3D bioprinting and photoactive biomaterials for tissue engineering

X Zhang, X Zhang, Y Li, Y Zhang - Materials, 2023 - mdpi.com
The emergence of additive manufacturing, commonly referred to as 3D printing, has led to a
revolution in the field of biofabrication. Numerous types of 3D bioprinting, including extrusion …

Cu-MSNs and ZnO nanoparticles incorporated poly (ethylene glycol) diacrylate/sodium alginate double network hydrogel for simultaneous enhancement of …

EM Hia, SR Jang, B Maharjan, J Park… - Colloids and Surfaces B …, 2024 - Elsevier
In this study, a double network (DN) hydrogel was synthesized using poly (ethylene glycol)
diacrylate (PEGDA) and sodium alginate (SA), incorporating copper-doped mesoporous …

Application of 3D/4D/5D and 6D Bioprinting in Cancer Research: How Does the Future Look Like?

D Khorsandi, D Rezayat, S Sezen, R Ferrao… - Journal of Materials …, 2024 - pubs.rsc.org
The application of Three-and four-dimensional (3D/4D) printing in cancer research
represents a significant advancement in understanding and addressing the complexities of …

Chitosan derived chito-oligosaccharides promote osteoblast differentiation and offer anti-osteoporotic potential: Molecular and morphological evidence from a …

S Vimalraj, D Govindarajan, S Sudhakar… - International Journal of …, 2024 - Elsevier
This study delves into the potential of chito-oligosaccharides (COS) to promote osteoblast
differentiation and prevent osteoporosis, utilizing experiments with mouse MSCs and the …

Exploring the Potentials of Chitin and Chitosan‐Based Bioinks for 3D‐Printing of Flexible Electronics: The Future of Sustainable Bioelectronics

M Kumi, T Wang, O Ejeromedoghene, J Wang… - Small …, 2024 - Wiley Online Library
Chitin and chitosan‐based bioink for 3D‐printed flexible electronics have tremendous
potential for innovation in healthcare, agriculture, the environment, and industry. This …

[HTML][HTML] Single/Multi-Network Conductive Hydrogels—A Review

N Hasan, MM Bhuyan, JH Jeong - Polymers, 2024 - mdpi.com
Hydrogels made from conductive organic materials have gained significant interest in recent
years due to their wide range of uses, such as electrical conductors, freezing resistors …