abstract: The objective of this research was to create a 3D in vitro model to mimic the native breast tumor microenvironment. Polydimethylsiloxane (PDMS) stamps and micromolding techniques were utilized to develop collagen based 3D tumor model. Geometrical design was optimized for the PDMS stamp to compartmentalize the tumor and stromal region of the 3D model. Addition of tumor and stromal cells into the platform further demonstrated the successful fabrication of the 3D model which will be used to investigate the role of stromal components on tumor growth and progression. Atomic force microscopy will also be utilized to access stromal remodeling during active invasion
The National Cancer Institute estimates that approximately 40% of men and women will be diagnosed wi...
There is a lack of experimental model to study the interactions of tumor versus normal cells. There ...
abstract: Stromal cells play an important role in facilitating disease progression of ductal carcino...
The tumor microenvironment contains a multitude of biomolecules, stromal cells such as fibroblasts, ...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
In this study, to model 3D chemotactic tumor-stroma invasion in vitro, we developed an innovative mi...
Breast cancer is the most common cancer in women worldwide, and while screening, diagnostic tools an...
The complex microenvironment in which malignant tumor cells grow is crucial for cancer progression. ...
In this work, a new model of breast cancer is proposed featuring both epithelial and stromal tissues...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
Cancer occurs when cells acquire genomic instability and inflammation, produce abnormal levels of ep...
The in vitro evaluation of chemotherapeutic delivery systems is essential as a prediction of in vivo...
Cancer research has considerably progressed with the improvement of in vitro study models, helping t...
Breast cancers are highly heterogeneous and their metastatic potential and response to therapeutic d...
The National Cancer Institute estimates that approximately 40% of men and women will be diagnosed wi...
There is a lack of experimental model to study the interactions of tumor versus normal cells. There ...
abstract: Stromal cells play an important role in facilitating disease progression of ductal carcino...
The tumor microenvironment contains a multitude of biomolecules, stromal cells such as fibroblasts, ...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
In this study, to model 3D chemotactic tumor-stroma invasion in vitro, we developed an innovative mi...
Breast cancer is the most common cancer in women worldwide, and while screening, diagnostic tools an...
The complex microenvironment in which malignant tumor cells grow is crucial for cancer progression. ...
In this work, a new model of breast cancer is proposed featuring both epithelial and stromal tissues...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
Cancer occurs when cells acquire genomic instability and inflammation, produce abnormal levels of ep...
The in vitro evaluation of chemotherapeutic delivery systems is essential as a prediction of in vivo...
Cancer research has considerably progressed with the improvement of in vitro study models, helping t...
Breast cancers are highly heterogeneous and their metastatic potential and response to therapeutic d...
The National Cancer Institute estimates that approximately 40% of men and women will be diagnosed wi...
There is a lack of experimental model to study the interactions of tumor versus normal cells. There ...
abstract: Stromal cells play an important role in facilitating disease progression of ductal carcino...