The normal mammary microenvironment can suppress tumorigenesis and redirect cancer cells to adopt a normal mammary epithelial cell fate in vivo. Understanding of this phenomenon offers great promise for novel treatment and detection strategies in cancer, but current model systems make mechanistic insights into the process difficult. We have recently described a low-cost bioprinting platform designed to be accessible for basic cell biology laboratories. Here we report the use of this system for the study of tumorigenesis and microenvironmental redirection of breast cancer cells. We show our bioprinter significantly increases tumoroid formation in 3D collagen gels and allows for precise generation of tumoroid arrays. We also demonstrate that ...
The tumor extracellular matrix (ECM) plays a vital role in tumor progression and drug resistance. Pr...
In vitro cancer models that can simulate patient-specific drug responses for personalized medicine h...
Abstract Background Standard three-dimensional (3D) in vitro culture techniques, such as those used ...
The normal mammary microenvironment can suppress tumorigenesis and redirect cancer cells to adopt a ...
Prior work has shown that our bioprinting system can reliably produce human mammary organoids and tu...
Understanding the microenvironmental factors that control cell function, differentiation, and stem c...
Prior work within our lab has demonstrated the ability to print both murine and human mammary organo...
Previous work from our laboratory has demonstrated the use of an accessible, open- source 3D Bioprin...
Cancer is becoming one the leading causes of death worldwide, and in particular, breast cancer, whic...
Background: Standard three-dimensional (3D) in vitro culture techniques, such as those used for mamm...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
The mammary gland is an important model system for several reasons but principal among them is that ...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
Cancer tissue engineering has remained challenging due to the limitation of the conventional biofabr...
"Human tumour progression is a dynamic process involving diverse biological and biochemical events s...
The tumor extracellular matrix (ECM) plays a vital role in tumor progression and drug resistance. Pr...
In vitro cancer models that can simulate patient-specific drug responses for personalized medicine h...
Abstract Background Standard three-dimensional (3D) in vitro culture techniques, such as those used ...
The normal mammary microenvironment can suppress tumorigenesis and redirect cancer cells to adopt a ...
Prior work has shown that our bioprinting system can reliably produce human mammary organoids and tu...
Understanding the microenvironmental factors that control cell function, differentiation, and stem c...
Prior work within our lab has demonstrated the ability to print both murine and human mammary organo...
Previous work from our laboratory has demonstrated the use of an accessible, open- source 3D Bioprin...
Cancer is becoming one the leading causes of death worldwide, and in particular, breast cancer, whic...
Background: Standard three-dimensional (3D) in vitro culture techniques, such as those used for mamm...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
The mammary gland is an important model system for several reasons but principal among them is that ...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
Cancer tissue engineering has remained challenging due to the limitation of the conventional biofabr...
"Human tumour progression is a dynamic process involving diverse biological and biochemical events s...
The tumor extracellular matrix (ECM) plays a vital role in tumor progression and drug resistance. Pr...
In vitro cancer models that can simulate patient-specific drug responses for personalized medicine h...
Abstract Background Standard three-dimensional (3D) in vitro culture techniques, such as those used ...