Preparation, properties, and applications of gelatin-based hydrogels (GHs) in the environmental, technological, and biomedical sectors

F Mushtaq, ZA Raza, SR Batool, M Zahid… - International journal of …, 2022 - Elsevier
Gelatin's versatile functionalization offers prospects of facile and effective crosslinking as
well as combining with other materials (eg, metal nanoparticles, carbonaceous, minerals …

From shape to function: the next step in bioprinting

R Levato, T Jungst, RG Scheuring, T Blunk… - Advanced …, 2020 - Wiley Online Library
Abstract In 2013, the “biofabrication window” was introduced to reflect the processing
challenge for the fields of biofabrication and bioprinting. At that time, the lack of printable …

Review of alginate-based hydrogel bioprinting for application in tissue engineering

P Rastogi, B Kandasubramanian - Biofabrication, 2019 - iopscience.iop.org
The dawn of 3D printing in medicine has given the field the hope of vitality in many patients
fighting a multitude of diseases. Also entitled bioprinting, this appertains to its sequential …

Strategies to use fibrinogen as bioink for 3D bioprinting fibrin-based soft and hard tissues

BAG de Melo, YA Jodat, EM Cruz, JC Benincasa… - Acta biomaterialia, 2020 - Elsevier
Fibrin gel has been widely used for engineering various types of tissues due to its
biocompatible nature, biodegradability, and tunable mechanical and nanofibrous structural …

[HTML][HTML] Visible light-induced 3D bioprinting technologies and corresponding bioink materials for tissue engineering: a review

Z Zheng, D Eglin, M Alini, GR Richards, L Qin, Y Lai - Engineering, 2021 - Elsevier
Abstract Three-dimensional (3D) bioprinting based on traditional 3D printing is an emerging
technology that is used to precisely assemble biocompatible materials and cells or bioactive …

Extrusion bioprinting: Recent progress, challenges, and future opportunities

S Ramesh, OLA Harrysson, PK Rao, A Tamayol… - Bioprinting, 2021 - Elsevier
Extrusion-based bioprinting involves extrusion of bioinks through nozzles to create three-
dimensional structures. The bioink contains living organisms with biological relevance for …

Hydrogels for bioprinting: A systematic review of hydrogels synthesis, bioprinting parameters, and bioprinted structures behavior

E Mancha Sánchez, JC Gómez-Blanco… - … in Bioengineering and …, 2020 - frontiersin.org
Nowadays, bioprinting is rapidly evolving and hydrogels are a key component for its
success. In this sense, synthesis of hydrogels, as well as bioprinting process, and cross …

3D bioprinting of functional tissue models for personalized drug screening and in vitro disease modeling

X Ma, J Liu, W Zhu, M Tang, N Lawrence, C Yu… - Advanced drug delivery …, 2018 - Elsevier
Abstract 3D bioprinting is emerging as a promising technology for fabricating complex tissue
constructs with tailored biological components and mechanical properties. Recent advances …

3D bioprinting using cross-linker-free silk–gelatin bioink for cartilage tissue engineering

YP Singh, A Bandyopadhyay… - ACS applied materials & …, 2019 - ACS Publications
Cartilage tissue is deprived of intrinsic self-regeneration capability; hence, its damage often
progresses to a chronic condition which reduces the quality of life. Toward the fabrication of …

Bio-sourced monomers and cationic photopolymerization–The green combination towards eco-friendly and non-toxic materials

L Pierau, C Elian, J Akimoto, Y Ito, S Caillol… - Progress in Polymer …, 2022 - Elsevier
Cationic photopolymerization is amongst the greenest processes used to obtain polymers
since light is abundant, inexpensive and allows for rapid and waste-less curing at room …