Live cell arrays are an emerging tool that expand traditional 2D in vitro cell culture, increasing experimental precision and throughput. A patterned cell system was developed by combining the cell-repellent properties of polyvinyl alcohol hydrogels with the cell adhesive properties of self-assembled films of dopamine (polydopamine). It was shown that polydopamine could be patterned onto spin-cast polyvinyl alcohol hydrogels by microcontact printing, which in turn effectively patterned the growth of several cell types (HeLa, human embryonic kidney, human umbilical vein endothelial cells (HUVEC) and prostate cancer). The cells could be patterned in geometries down to single-cell confinement, and it was demonstrated that cell patterns could b...
A high-throughput cell printing technology has developed to simulate the liver tissue environment us...
Engineered surface-bound molecular gradients are of great importance for a range of biological appli...
Three-dimensional (3D) multicellular cell spheroids (MCSs) are excellent <i>in vitro</i> cell models...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
This Article introduces a simple method of cell patterning, inspired by the mussel anchoring protein...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
Human pluripotent stem cells (hPSCs) possess great value in the aspect of cellular therapies due to ...
Fabrication of cell growth environment in vitro to control the cell spatial arrangement and prolifer...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
Creation of more physiologically relevant cell models in tissue culture is a requisite for advancing...
The need for efficient and reproducible cell culture is necessary for the development of novel biol...
Recently, Poly-dimethylsiloxane (PDMS) have been widely used in cell studies due to its many advanta...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
In this paper the easy and reliable preparation of precise micropatterns on PDMS surfaces is describ...
The physical characteristics of cell culture materials, such as their elasticity, affect stem cell f...
A high-throughput cell printing technology has developed to simulate the liver tissue environment us...
Engineered surface-bound molecular gradients are of great importance for a range of biological appli...
Three-dimensional (3D) multicellular cell spheroids (MCSs) are excellent <i>in vitro</i> cell models...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
This Article introduces a simple method of cell patterning, inspired by the mussel anchoring protein...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
Human pluripotent stem cells (hPSCs) possess great value in the aspect of cellular therapies due to ...
Fabrication of cell growth environment in vitro to control the cell spatial arrangement and prolifer...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
Creation of more physiologically relevant cell models in tissue culture is a requisite for advancing...
The need for efficient and reproducible cell culture is necessary for the development of novel biol...
Recently, Poly-dimethylsiloxane (PDMS) have been widely used in cell studies due to its many advanta...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
In this paper the easy and reliable preparation of precise micropatterns on PDMS surfaces is describ...
The physical characteristics of cell culture materials, such as their elasticity, affect stem cell f...
A high-throughput cell printing technology has developed to simulate the liver tissue environment us...
Engineered surface-bound molecular gradients are of great importance for a range of biological appli...
Three-dimensional (3D) multicellular cell spheroids (MCSs) are excellent <i>in vitro</i> cell models...