Our understanding of cell biology and its integration with materials science has led to technological innovations in the bioengineering of tissue-mimicking grafts that can be utilized in clinical and pharmaceutical applications. Bioengineering of native-like multiscale building blocks provides refined control over the cellular microenvironment, thus enabling functional tissues. In this review, we focus on assembling building blocks from the biomolecular level to the millimeter scale. We also provide an overview of techniques for assembling molecules, cells, spheroids, and microgels and achieving bottom-up tissue engineering. Additionally, we discuss driving mechanisms for self- and guided assembly to create micro-to-macro scale tissue struc...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
This book offers readers cutting-edge research at the interface of polymer science and engineering, ...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Our understanding of cell biology and its integration with materials science has led to technologica...
The complexity of the human body derives from numerous modular building blocks assembled hierarchica...
A material-based bottom-up approach is proposed towards an assembly of cells and engineered micro-ob...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
3D hydrogel microstructures that encapsulate cells have been used in broad applications in microscal...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Tissue engineering provides a powerful solution for current organ shortages, and researchers have cu...
The great demand for tissue and organ grafts, compounded by an aging demographic and a shortage of a...
Despite the enormous advances in tissue engineering, several challenges still pre-vent the widesprea...
Engineering three-dimensional (3D) scaffolds for functional tissue and organ regeneration is a major...
In bottom-up tissue engineering, small modular units of cells and biomaterials are assembled toward ...
Tissue engineering aims at replicating tissues and organs to develop applications in vivo and in vit...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
This book offers readers cutting-edge research at the interface of polymer science and engineering, ...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Our understanding of cell biology and its integration with materials science has led to technologica...
The complexity of the human body derives from numerous modular building blocks assembled hierarchica...
A material-based bottom-up approach is proposed towards an assembly of cells and engineered micro-ob...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
3D hydrogel microstructures that encapsulate cells have been used in broad applications in microscal...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Tissue engineering provides a powerful solution for current organ shortages, and researchers have cu...
The great demand for tissue and organ grafts, compounded by an aging demographic and a shortage of a...
Despite the enormous advances in tissue engineering, several challenges still pre-vent the widesprea...
Engineering three-dimensional (3D) scaffolds for functional tissue and organ regeneration is a major...
In bottom-up tissue engineering, small modular units of cells and biomaterials are assembled toward ...
Tissue engineering aims at replicating tissues and organs to develop applications in vivo and in vit...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
This book offers readers cutting-edge research at the interface of polymer science and engineering, ...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...