Three-dimensional (3D) culture could partially simulate in vivo conditions. In this work, we developed a 3D collagen scaffold to investigate cellular properties of MCF-7 cells. The porous scaffolds not only induced the diversification of cell morphologies but also extended cell proliferation. The expression of pro-angiogenic growth factors and the transcriptions of matrix metalloproteinases (MMPs) were significantly increased in cells cultured in 3D collagen scaffolds. In addition, 3D collagen scaffolds could generate a cell population with the properties of cancer stem cells (CSCs). The upregulation of EMT markers and the downregulation of the epithelial cell marker were observed in cells cultured in collagen scaffolds. The expression of s...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
Background: Cancer research focuses increasingly on cancer stem cell study as those cells are though...
Current conventional cancer drug screening models based on two-dimensional (2D) cell culture have se...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
AbstractTumor cells naturally live in three-dimensional (3D) microenvironments, while common laborat...
Introduction: Three-dimensional (3D) collagen scaffold models, due to their ability to mimic the tis...
Metastasis is clinically the most challenging and lethal aspect of breast cancer. While animal-based...
Background. Human cancer is a three-dimensional (3D) structure consisting of neighboring cells, extr...
Background. Human cancer is a three-dimensional (3D) structure consisting of neighboring cells, extr...
Metastasis is clinically the most challenging and lethal aspect of breast cancer. While animal-based...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
Background: Cancer research focuses increasingly on cancer stem cell study as those cells are though...
Current conventional cancer drug screening models based on two-dimensional (2D) cell culture have se...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
AbstractTumor cells naturally live in three-dimensional (3D) microenvironments, while common laborat...
Introduction: Three-dimensional (3D) collagen scaffold models, due to their ability to mimic the tis...
Metastasis is clinically the most challenging and lethal aspect of breast cancer. While animal-based...
Background. Human cancer is a three-dimensional (3D) structure consisting of neighboring cells, extr...
Background. Human cancer is a three-dimensional (3D) structure consisting of neighboring cells, extr...
Metastasis is clinically the most challenging and lethal aspect of breast cancer. While animal-based...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
Background: Cancer research focuses increasingly on cancer stem cell study as those cells are though...
Current conventional cancer drug screening models based on two-dimensional (2D) cell culture have se...