Decellularization and cellularization of organs have emerged as disruptive methods in tissue engineering and regenerative medicine. Porous hydrogel scaffolds have widespread applications in tissue engineering, regenerative medicine and drug discovery as viable tissue mimics. However, the existing hydrogel fabrication techniques suffer from limited control over pore interconnectivity, density and size, which leads to inefficient nutrient and oxygen transport to cells embedded in the scaffolds. Here, we demonstrated an innovative approach to develop a new platform for tissue engineered constructs using live bacteria as sacrificial porogens. E.coli were patterned and cultured in an interconnected three-dimensional (3D) hydrogel network. The gr...
Engineered living materials (ELMs) are growing in interest as they offer the potential to combine th...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
Bacterial nanocellulose (BNC) has proven to be an effective hydrogel-like material for different tis...
Decellularization and cellularization of organs have emerged as disruptive methods in tissue enginee...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
In this article, we describe an approach to generate microporous cell-laden hydrogels for fabricatin...
<p>(<b>a</b>) <i>E. coli</i> encapsulation in hydrogels as porogens and l<b>iv</b>e sacrificial pore...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
A one-step microfluidic system is developed in this study which enables the encapsulation of stem ce...
Tissue engineering holds great promise for regeneration and repair of diseased tissues, making the d...
Tissue engineering holds great promise for regeneration and repair of diseased tissues, making the d...
Technological processes based on microorganisms such as bacteria offer great potential for an enviro...
The emerging field of tissue engineering is dedicated to restore, maintain or improve the functions ...
Millions of patients suffer from end-stage organ failure and tissue loss each year. The most practic...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
Engineered living materials (ELMs) are growing in interest as they offer the potential to combine th...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
Bacterial nanocellulose (BNC) has proven to be an effective hydrogel-like material for different tis...
Decellularization and cellularization of organs have emerged as disruptive methods in tissue enginee...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
In this article, we describe an approach to generate microporous cell-laden hydrogels for fabricatin...
<p>(<b>a</b>) <i>E. coli</i> encapsulation in hydrogels as porogens and l<b>iv</b>e sacrificial pore...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
A one-step microfluidic system is developed in this study which enables the encapsulation of stem ce...
Tissue engineering holds great promise for regeneration and repair of diseased tissues, making the d...
Tissue engineering holds great promise for regeneration and repair of diseased tissues, making the d...
Technological processes based on microorganisms such as bacteria offer great potential for an enviro...
The emerging field of tissue engineering is dedicated to restore, maintain or improve the functions ...
Millions of patients suffer from end-stage organ failure and tissue loss each year. The most practic...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
Engineered living materials (ELMs) are growing in interest as they offer the potential to combine th...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
Bacterial nanocellulose (BNC) has proven to be an effective hydrogel-like material for different tis...