Advances in 3D bioprinting of tissues/organs for regenerative medicine and in-vitro models

P Jain, H Kathuria, N Dubey - Biomaterials, 2022 - Elsevier
Tissue/organ shortage is a major medical challenge due to donor scarcity and patient
immune rejections. Furthermore, it is difficult to predict or mimic the human disease condition …

Engineering multi‐cellular spheroids for tissue engineering and regenerative medicine

S Kim, EM Kim, M Yamamoto, H Park… - Advanced Healthcare …, 2020 - Wiley Online Library
Multi‐cellular spheroids are formed as a 3D structure with dense cell–cell/cell–extracellular
matrix interactions, and thus, have been widely utilized as implantable therapeutics and …

[HTML][HTML] The cell in the ink: Improving biofabrication by printing stem cells for skeletal regenerative medicine

G Cidonio, M Glinka, JI Dawson, ROC Oreffo - Biomaterials, 2019 - Elsevier
Recent advances in regenerative medicine have confirmed the potential to manufacture
viable and effective tissue engineering 3D constructs comprising living cells for tissue repair …

The ECM: to scaffold, or not to scaffold, that is the question

JC Valdoz, BC Johnson, DJ Jacobs, NA Franks… - International Journal of …, 2021 - mdpi.com
The extracellular matrix (ECM) has pleiotropic effects, ranging from cell adhesion to cell
survival. In tissue engineering, the use of ECM and ECM-like scaffolds has separated the …

Engineered biomaterials to guide spheroid formation, function, and fabrication into 3D tissue constructs

N Di Caprio, JA Burdick - Acta biomaterialia, 2023 - Elsevier
Cellular spheroids are aggregates of cells that are being explored to address fundamental
biological questions and as building blocks for engineered tissues. Spheroids possess …

3D bioprinting strategies for the regeneration of functional tubular tissues and organs

HJ Jeong, H Nam, J Jang, SJ Lee - Bioengineering, 2020 - mdpi.com
It is difficult to fabricate tubular-shaped tissues and organs (eg, trachea, blood vessel, and
esophagus tissue) with traditional biofabrication techniques (eg, electrospinning, cell-sheet …

Biomimetic trachea engineering via a modular ring strategy based on bone‐marrow stem cells and atelocollagen for use in extensive tracheal reconstruction

Y Xu, J Dai, X Zhu, R Cao, N Song, M Liu… - Advanced …, 2022 - Wiley Online Library
The fabrication of biomimetic tracheas with a architecture of cartilaginous rings alternately
interspersed between vascularized fibrous tissue (CRVFT) has the potential to perfectly …

Stereolithography 3D bioprinting method for fabrication of human corneal stroma equivalent

SS Mahdavi, MJ Abdekhodaie, H Kumar… - Annals of Biomedical …, 2020 - Springer
Abstract 3D bioprinting technology is a promising approach for corneal stromal tissue
regeneration. In this study, gelatin methacrylate (GelMA) mixed with corneal stromal cells …

Technologies for the fabrication of crosslinked polysaccharide-based hydrogels and its role in microbial three-dimensional bioprinting–A review

Y Sharma, V Shankar - International Journal of Biological Macromolecules, 2023 - Elsevier
Three-Dimensional bioprinting has recently gained more attraction among researchers for
its wide variety of applicability. This technology involving in developing structures that mimic …

Tissue engineering and regenerative medicine 2019: the role of biofabrication—a year in review

T Ramos, L Moroni - Tissue Engineering Part C: Methods, 2020 - liebertpub.com
Despite its relative youth, biofabrication is unceasingly expanding by assimilating the
contributions from various disciplinary areas and their technological advances. Those …