Decellularized extracellular matrix-based bioinks for engineering tissue-and organ-specific microenvironments

BS Kim, S Das, J Jang, DW Cho - Chemical reviews, 2020‏ - ACS Publications
Biomaterials-based biofabrication methods have gained much attention in recent years.
Among them, 3D cell printing is a pioneering technology to facilitate the recapitulation of …

[HTML][HTML] An overview on materials and techniques in 3D bioprinting toward biomedical application

S Vanaei, MS Parizi, F Salemizadehparizi… - Engineered …, 2021‏ - Elsevier
Abstract Three-dimensional (3D) bioprinting, an additive manufacturing based technique of
biomaterials fabrication, is an innovative and auspicious strategy in medical and …

[HTML][HTML] An introduction to 3D bioprinting: possibilities, challenges and future aspects

ŽP Kačarević, PM Rider, S Alkildani, S Retnasingh… - Materials, 2018‏ - mdpi.com
Bioprinting is an emerging field in regenerative medicine. Producing cell-laden, three-
dimensional structures to mimic bodily tissues has an important role not only in tissue …

Synthesis and properties of gelatin methacryloyl (GelMA) hydrogels and their recent applications in load-bearing tissue

M Sun, X Sun, Z Wang, S Guo, G Yu, H Yang - Polymers, 2018‏ - mdpi.com
Photocrosslinked gelatin methacryloyl (GelMA) hydrogels have attracted great concern in
the biomedical field because of their good biocompatibility and tunable physicochemical …

[HTML][HTML] Process, material, and regulatory considerations for 3D printed medical devices and tissue constructs

WL Ng, J An, CK Chua - Engineering, 2024‏ - Elsevier
Abstract Three-dimensional (3D) printing is a highly automated platform that facilitates
material deposition in a layer-by-layer approach to fabricate pre-defined 3D complex …

Print me an organ! Why we are not there yet

WL Ng, CK Chua, YF Shen - Progress in Polymer Science, 2019‏ - Elsevier
Bioprinting offers a highly-automated and advanced manufacturing platform that facilitates
the deposition of bio-inks (living cells, biomaterials and growth factors) in a scalable and …

Bioinks and bioprinting: A focused review

M Mobaraki, M Ghaffari, A Yazdanpanah, Y Luo… - Bioprinting, 2020‏ - Elsevier
Bioprinting is a process based on additive manufacturing that uses biomaterials as the
microenvironment for living cells. These materials often referred to as bioinks, are based on …

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 …

Guiding lights: tissue bioprinting using photoactivated materials

M Lee, R Rizzo, F Surman, M Zenobi-Wong - Chemical Reviews, 2020‏ - ACS Publications
Photoactivated materials have found widespread use in biological and medical applications
and are playing an increasingly important role in the nascent field of three-dimensional (3D) …

[HTML][HTML] Bioprinting the future using light: A review on photocrosslinking reactions, photoreactive groups, and photoinitiators

K Elkhoury, J Zuazola, S Vijayavenkataraman - SLAS technology, 2023‏ - Elsevier
Light-based bioprinting is a type of additive manufacturing technologies that uses light to
control the formation of biomaterials, tissues, and organs. It has the potential to revolutionize …