Biomaterial-based platforms for tumour tissue engineering

R Curvello, V Kast, P Ordóñez-Morán, A Mata… - Nature Reviews …, 2023‏ - nature.com
Tissue engineering has produced innovative tools for cancer research. 3D cancer models
based on molecularly designed biomaterials aim to harness the dimensionality and …

Current advances in 3D bioprinting for cancer modeling and personalized medicine

N Germain, M Dhayer, S Dekiouk… - International journal of …, 2022‏ - mdpi.com
Tumor cells evolve in a complex and heterogeneous environment composed of different cell
types and an extracellular matrix. Current 2D culture methods are very limited in their ability …

[HTML][HTML] 3D bioprinting using hydrogels: cell inks and tissue engineering applications

AC Dell, G Wagner, J Own, JP Geibel - Pharmaceutics, 2022‏ - mdpi.com
3D bioprinting is transforming tissue engineering in medicine by providing novel methods
that are precise and highly customizable to create biological tissues. The selection of a “cell …

[HTML][HTML] The impact of microfluidics in high-throughput drug-screening applications

P De Stefano, E Bianchi, G Dubini - Biomicrofluidics, 2022‏ - pubs.aip.org
Drug discovery is an expensive and lengthy process. Among the different phases, drug
discovery and preclinical trials play an important role as only 5–10 of all drugs that begin …

3D bioprinting as a powerful technique for recreating the tumor microenvironment

I Parodi, D Di Lisa, L Pastorino, S Scaglione, MM Fato - Gels, 2023‏ - mdpi.com
In vitro three-dimensional models aim to reduce and replace animal testing and establish
new tools for oncology research and the development and testing of new anticancer …

Characterization of biocompatibility of functional bioinks for 3D bioprinting

J Kim - Bioengineering, 2023‏ - mdpi.com
Three-dimensional (3D) bioprinting with suitable bioinks has become a critical tool for
fabricating 3D biomimetic complex structures mimicking physiological functions. While …

[PDF][PDF] 3D bioprinting and the revolution in experimental cancer model systems—A review of develo** new models and experiences with in vitro 3D bioprinted …

D Sztankovics, D Moldvai, G Petővári… - Pathology and …, 2023‏ - por-journal.com
This April, the European Union (EU) prohibited selling new cosmetic products tested on
animals without any exemptions (1). Accordingly, it is forbidden to place a new product on …

Integration of Hydrogels and 3D Bioprinting Technologies for Chronic Wound Healing Management

M Kumi, T Chen, Z Zhang, A Wang, G Li… - ACS Biomaterials …, 2024‏ - ACS Publications
The integration of hydrogel-based bioinks with 3D bioprinting technologies presents an
innovative approach to chronic wound management, which is particularly challenging to …

Performance of hybrid gelatin-PVA bioinks integrated with genipin through extrusion-based 3D bioprinting: An in vitro evaluation using human dermal fibroblasts

S Masri, M Maarof, I Abd Aziz, R Idrus… - … Journal of Bioprinting, 2023‏ - pmc.ncbi.nlm.nih.gov
3D bioprinting technology is a well-established and promising advanced fabrication
technique that utilizes potential biomaterials as bioinks to replace lost skin and promote new …

A comprehensive review of 3D bioprinting biomaterials: Properties, strategies and wound healing application

R Choudary, N Saini, DS Chopra, D Singh… - Journal of Materials …, 2023‏ - Springer
Abstract 3D printing technologies, also referred to as additive manufacturing or rapid
prototy** have gained attention over the past few years for tissue engineering, the printing …