[HTML][HTML] 3D printing of hydrogels: Rational design strategies and emerging biomedical applications

J Li, C Wu, PK Chu, M Gelinsky - Materials Science and Engineering: R …, 2020 - Elsevier
Abstract 3D printing alias additive manufacturing can transform 3D virtual models created by
computer-aided design (CAD) into physical 3D objects in a layer-by-layer manner …

Crosslinking strategies for 3D bioprinting of polymeric hydrogels

A GhavamiNejad, N Ashammakhi, XY Wu… - Small, 2020 - Wiley Online Library
Abstract Three‐dimensional (3D) bioprinting has recently advanced as an important tool to
produce viable constructs that can be used for regenerative purposes or as tissue models …

3D-printed flexible sensors for food monitoring

D Song, X Chen, M Wang, Z Wu, X **ao - Chemical Engineering Journal, 2023 - Elsevier
In recent years, the convergence of 3D printing technology and flexible sensors has played
a crucial role in various fields, particularly in industrial production. The widespread …

Engineering and functionalization of gelatin biomaterials: From cell culture to medical applications

AB Bello, D Kim, D Kim, H Park… - Tissue Engineering Part B …, 2020 - liebertpub.com
Health care and medicine were revolutionized in recent years by the development of
biomaterials, such as stents, implants, personalized drug delivery systems, engineered …

Soy protein: Molecular structure revisited and recent advances in processing technologies

X Sui, T Zhang, L Jiang - Annual Review of Food Science and …, 2021 - annualreviews.org
Rising health concerns and increasing obesity levels in human society have led some
consumers to cut back on animal protein consumption and switch to plant-based proteins as …

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 …

3D bioprinted scaffolds for bone tissue engineering: State-of-the-art and emerging technologies

Z Yazdanpanah, JD Johnston, DML Cooper… - … in bioengineering and …, 2022 - frontiersin.org
Treating large bone defects, known as critical-sized defects (CSDs), is challenging because
they are not spontaneously healed by the patient's body. Due to the limitations associated …

3D bioprinting: from benches to translational applications

MA Heinrich, W Liu, A Jimenez, J Yang, A Akpek, X Liu… - Small, 2019 - Wiley Online Library
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue
engineering and regenerative medicine. However, conventional 3D biofabrication …

Assessment methodologies for extrusion-based bioink printability

G Gillispie, P Prim, J Copus, J Fisher, AG Mikos… - …, 2020 - iopscience.iop.org
Extrusion-based bioprinting is one of the leading manufacturing techniques for tissue
engineering and regenerative medicine. Its primary limitation is the lack of materials, known …

Direct-ink writing 3D printed energy storage devices: From material selectivity, design and optimization strategies to diverse applications

J Yan, S Huang, Y Von Lim, T Xu, D Kong, X Li… - Materials Today, 2022 - Elsevier
Additive manufacturing, also known as three-dimensional (3D) printing technology, has
recently emerged as a promising fabrication technology for a variety of applications with …