Recent advances in the extraction and purification of decellularized extracellular matrix (dECM) obtained from healthy or malignant tissues open new avenues for engineering physiomimetic 3D in vitro tumor models, which closely recapitulate key biomolecular hallmarks and the dynamic cancer cell-ECM interactions in the tumor microenvironment. We review current and upcoming methodologies for chemical modification of dECM-based biomaterials and advanced bioprocessing into organotypic 3D solid tumor models. A comprehensive review of disruptive advances and shortcomings of exploring dECM-based biomaterials for recapitulating the native tumor-supporting matrix is also provided. We hope to drive the discussion on how 3D dECM testing platforms can b...
Decellularization aims to remove cells from tissue ultrastructure while preserving the mechanical an...
A physiologically relevant tumor microenvironment is favorable for the progression and growth of gas...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
Today it is widely accepted that molecular mechanisms triggering cancer initiate with a genetic modi...
More than a physical structure providing support to tissues, the extracellular matrix (ECM) is a com...
Decellularized extracellular matrix (dECM) is emerging as a valuable tool for generating 3D in vitro...
Cancer is an unmet global challenge causing a high socioeconomic impact, worldwide. Every year, an i...
Genetic mutation and alterations of intracellular signaling have been focused on to understand the m...
The extracellular matrix (ECM) operates as a complex network of cell-supporting macromolecules in ti...
Three-dimensional (3D) cancer models are overlooking the scientific landscape with the primary goal ...
In tissue engineering, the need for hierarchical assembly of three-dimensional (3D) tissues has beco...
Decellularized matrices are steadily gaining popularity to study the biology of cells and tissues, a...
Tissue engineering has produced innovative tools for cancer research. 3D cancer models based on mole...
Most morphogenetic and pathological processes are driven by cells responding to the surrounding matr...
The extracellular matrix (ECM) is a critical cue to direct tumorigenesis and metastasis. Although tw...
Decellularization aims to remove cells from tissue ultrastructure while preserving the mechanical an...
A physiologically relevant tumor microenvironment is favorable for the progression and growth of gas...
While much progress has been made in the war on cancer, shortcomings in the drug development process...
Today it is widely accepted that molecular mechanisms triggering cancer initiate with a genetic modi...
More than a physical structure providing support to tissues, the extracellular matrix (ECM) is a com...
Decellularized extracellular matrix (dECM) is emerging as a valuable tool for generating 3D in vitro...
Cancer is an unmet global challenge causing a high socioeconomic impact, worldwide. Every year, an i...
Genetic mutation and alterations of intracellular signaling have been focused on to understand the m...
The extracellular matrix (ECM) operates as a complex network of cell-supporting macromolecules in ti...
Three-dimensional (3D) cancer models are overlooking the scientific landscape with the primary goal ...
In tissue engineering, the need for hierarchical assembly of three-dimensional (3D) tissues has beco...
Decellularized matrices are steadily gaining popularity to study the biology of cells and tissues, a...
Tissue engineering has produced innovative tools for cancer research. 3D cancer models based on mole...
Most morphogenetic and pathological processes are driven by cells responding to the surrounding matr...
The extracellular matrix (ECM) is a critical cue to direct tumorigenesis and metastasis. Although tw...
Decellularization aims to remove cells from tissue ultrastructure while preserving the mechanical an...
A physiologically relevant tumor microenvironment is favorable for the progression and growth of gas...
While much progress has been made in the war on cancer, shortcomings in the drug development process...