Inspired by the microstructure of the stem cell niche, which is generally composed of adjacent cell protection layers and an extracellular matrix (ECM), we present novel microfluidic porous microcarriers for cell culture that consist of external–internal connected scaffold structures and biopolymer matrix fillers. The biomimetic scaffold structure of the porous microcarriers not only avoids the imposition of shear forces on the encapsulated cells but also provides a confined microenvironment for cell self-assembly, whereas the biopolymers in the porous cores of the microcarriers can act as an ECM microenvironment to promote the formation of multicellular spheroid aggregates for biomedical applications
3D microfluidic cell culture systems offer a biologically relevant model to conduct micro-scale mamm...
Tissue engineering strategies have relied on engineered 3-dimensional (3D) scaffolds to provide arch...
Interactions of cells with their extracellular matrix (ECM) play an important role in development, d...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
The extracellular matrix of most natural tissues comprises various types of cells, including fibrobl...
By combining microfluidics and soft-lithographic molding of gels containing mammalian cells, a devic...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
© 2017 Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. Cell function is me...
One of the main scopes of modern cell engineering is development of cellular models that can replace...
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge...
The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip,...
Cell-based assay platforms are indispensable for basic biological studies and in the pharmaceutical ...
Most of in vivo tissue cells reside in 3D extracellular matrix (ECM) with fluid flow. To better stud...
Biomaterials capable of efficient gene delivery by embedded cells provide a fundamental tool for the...
Stem cells capacity to self-renew and differentiate into specialized cell types, endow them with gre...
3D microfluidic cell culture systems offer a biologically relevant model to conduct micro-scale mamm...
Tissue engineering strategies have relied on engineered 3-dimensional (3D) scaffolds to provide arch...
Interactions of cells with their extracellular matrix (ECM) play an important role in development, d...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
The extracellular matrix of most natural tissues comprises various types of cells, including fibrobl...
By combining microfluidics and soft-lithographic molding of gels containing mammalian cells, a devic...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
© 2017 Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. Cell function is me...
One of the main scopes of modern cell engineering is development of cellular models that can replace...
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge...
The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip,...
Cell-based assay platforms are indispensable for basic biological studies and in the pharmaceutical ...
Most of in vivo tissue cells reside in 3D extracellular matrix (ECM) with fluid flow. To better stud...
Biomaterials capable of efficient gene delivery by embedded cells provide a fundamental tool for the...
Stem cells capacity to self-renew and differentiate into specialized cell types, endow them with gre...
3D microfluidic cell culture systems offer a biologically relevant model to conduct micro-scale mamm...
Tissue engineering strategies have relied on engineered 3-dimensional (3D) scaffolds to provide arch...
Interactions of cells with their extracellular matrix (ECM) play an important role in development, d...