The research areas of tissue engineering and drug development have displayed increased interest in organ-on-a-chip studies, in which physiologically or pathologically relevant tissues can be engineered to test pharmaceutical candidates. Microfluidic technologies enable the control of the cellular microenvironment for these applications through the topography, size, and elastic properties of the microscale cell culture environment, while delivering nutrients and chemical cues to the cells through continuous media perfusion. Traditional materials used in the fabrication of microfluidic devices, such as poly(dimethylsiloxane) (PDMS), offer high fidelity and high feature resolution, but do not facilitate cell attachment. To overcome this challe...
In this thesis, I developed three different microfluidic platforms to produce cell-loaded spherical,...
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge...
Stem cells capacity to self-renew and differentiate into specialized cell types, endow them with gre...
The research areas of tissue engineering and drug development have displayed increased interest in o...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Heart failure is a major international health issue. Myocardial mass loss and lack of contractility ...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
This work describes the results of experimental study of the flow of soft objects (microgels) throug...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Microfluidic devices are used extensively in the development of new in vitro cell culture models lik...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In this thesis, I developed three different microfluidic platforms to produce cell-loaded spherical,...
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge...
Stem cells capacity to self-renew and differentiate into specialized cell types, endow them with gre...
The research areas of tissue engineering and drug development have displayed increased interest in o...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Heart failure is a major international health issue. Myocardial mass loss and lack of contractility ...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
This work describes the results of experimental study of the flow of soft objects (microgels) throug...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Microfluidic devices are used extensively in the development of new in vitro cell culture models lik...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In this thesis, I developed three different microfluidic platforms to produce cell-loaded spherical,...
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge...
Stem cells capacity to self-renew and differentiate into specialized cell types, endow them with gre...