Engineered cardiac tissue models become increasingly important for understanding normal and disease cardiac physiology [1]. Where clinical diagnostic tools usually measure overall function of the heart, cardiac tissue models make it possible to focus on single CMs and their microenvironment. The use of in-vitro cardiac disease models can give more insight in the functionality changes of CMs during disease and thereby speed up the development of new therapies. Therefore, we aim to develop a model for healthy and diseased myocardium to study the effect of diseased microenvironments on the mechanical performance of CMs. The platform consists of 3D engineered microtissues with matrix, CMs and fibroblasts (FBs) on an array of polydimethylsiloxan...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
IntroductionFibrosis is a hallmark of cardiac disease leading to changes in myocardial architecture ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
The inability of the myocardium to regenerate after injury plus the inadequate number of available h...
The thesis focuses on investigating cardiac mechanics on a microscale. We consider mechanical proces...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
Drug- and cell-based strategies for treating heart disease, including myocardial infarction, face si...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
IntroductionFibrosis is a hallmark of cardiac disease leading to changes in myocardial architecture ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
The inability of the myocardium to regenerate after injury plus the inadequate number of available h...
The thesis focuses on investigating cardiac mechanics on a microscale. We consider mechanical proces...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
In vitro cardiac modeling has taken great strides in the past decade. While most cell and engineere...
Drug- and cell-based strategies for treating heart disease, including myocardial infarction, face si...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
IntroductionFibrosis is a hallmark of cardiac disease leading to changes in myocardial architecture ...