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Polymers | Free Full-Text | Collagen Type I Containing Hybrid Hydrogel  Enhances Cardiomyocyte Maturation in a 3D Cardiac Model | HTML
Polymers | Free Full-Text | Collagen Type I Containing Hybrid Hydrogel Enhances Cardiomyocyte Maturation in a 3D Cardiac Model | HTML

Epithelial structures observed in mixed Matrigel™-collagen gels. A) H&E...  | Download Scientific Diagram
Epithelial structures observed in mixed Matrigel™-collagen gels. A) H&E... | Download Scientific Diagram

Lesion-like structures on collagen I and Matrigel. (A) Confocal images... |  Download Scientific Diagram
Lesion-like structures on collagen I and Matrigel. (A) Confocal images... | Download Scientific Diagram

Matrigel, but not collagen I, maintains the differentiation capacity of  muscle derived cells in vitro | Semantic Scholar
Matrigel, but not collagen I, maintains the differentiation capacity of muscle derived cells in vitro | Semantic Scholar

Comparative surface energetic study of Matrigel® and collagen I  interactions with endothelial cells - ScienceDirect
Comparative surface energetic study of Matrigel® and collagen I interactions with endothelial cells - ScienceDirect

Lesion-like structures on collagen I and Matrigel. (A) Confocal images... |  Download Scientific Diagram
Lesion-like structures on collagen I and Matrigel. (A) Confocal images... | Download Scientific Diagram

Generation of 3D Tumor Spheroids with Encapsulating Basement Membranes for  Invasion Studies - Nazari - 2020 - Current Protocols in Cell Biology -  Wiley Online Library
Generation of 3D Tumor Spheroids with Encapsulating Basement Membranes for Invasion Studies - Nazari - 2020 - Current Protocols in Cell Biology - Wiley Online Library

Matrigel uses in cell biology and for the identification of thymosin β4, a  mediator of tissue regeneration | Applied Biological Chemistry | Full Text
Matrigel uses in cell biology and for the identification of thymosin β4, a mediator of tissue regeneration | Applied Biological Chemistry | Full Text

Microextrusion printing cell-laden networks of type I collagen with  patterned fiber alignment and geometry - Soft Matter (RSC Publishing)
Microextrusion printing cell-laden networks of type I collagen with patterned fiber alignment and geometry - Soft Matter (RSC Publishing)

Comparative evaluation of GelMA, Matrigel, and type-I collagen... |  Download Scientific Diagram
Comparative evaluation of GelMA, Matrigel, and type-I collagen... | Download Scientific Diagram

Matrigel, but not collagen I, maintains the differentiation capacity of  muscle derived cells in vitro | Semantic Scholar
Matrigel, but not collagen I, maintains the differentiation capacity of muscle derived cells in vitro | Semantic Scholar

Matrigel and collagen gel exerts similar effects on down-regulation of... |  Download Scientific Diagram
Matrigel and collagen gel exerts similar effects on down-regulation of... | Download Scientific Diagram

Oriented collagen fibers direct tumor cell intravasation | PNAS
Oriented collagen fibers direct tumor cell intravasation | PNAS

Comparison of Matrigel and type-I-collagen matrix architecture. - ppt  download
Comparison of Matrigel and type-I-collagen matrix architecture. - ppt download

Comparative surface energetic study of Matrigel® and collagen I  interactions with endothelial cells - ScienceDirect
Comparative surface energetic study of Matrigel® and collagen I interactions with endothelial cells - ScienceDirect

Polymers | Free Full-Text | Extracellular Matrix Optimization for Enhanced  Physiological Relevance in Hepatic Tissue-Chips | HTML
Polymers | Free Full-Text | Extracellular Matrix Optimization for Enhanced Physiological Relevance in Hepatic Tissue-Chips | HTML

Three-dimensional culture and clinical drug responses of a highly  metastatic human ovarian cancer HO-8910PM cells in nanofibrous  microenvironments of three hydrogel biomaterials | Journal of  Nanobiotechnology | Full Text
Three-dimensional culture and clinical drug responses of a highly metastatic human ovarian cancer HO-8910PM cells in nanofibrous microenvironments of three hydrogel biomaterials | Journal of Nanobiotechnology | Full Text

ECM microenvironment regulates collective migration and local dissemination  in normal and malignant mammary epithelium | PNAS
ECM microenvironment regulates collective migration and local dissemination in normal and malignant mammary epithelium | PNAS

Controlled generation of cell–laden hydrogel microspheres with core–shell  scaffold mimicking microenvironment of tumor<xref  rid="cpb_27_12_128703_fn1" ref-type="fn">*</xref><fn  id="cpb_27_12_128703_fn1"><label>*</label><p>Project supported by the ...
Controlled generation of cell–laden hydrogel microspheres with core–shell scaffold mimicking microenvironment of tumor<xref rid="cpb_27_12_128703_fn1" ref-type="fn">*</xref><fn id="cpb_27_12_128703_fn1"><label>*</label><p>Project supported by the ...

Collagen I but not Matrigel matrices provide an MMP-dependent barrier to  ovarian cancer cell penetration | BMC Cancer | Full Text
Collagen I but not Matrigel matrices provide an MMP-dependent barrier to ovarian cancer cell penetration | BMC Cancer | Full Text

Development of a tunable method to generate various three-dimensional  microstructures by replenishing macromolecules such as extracellular matrix  components and polysaccharides | Scientific Reports
Development of a tunable method to generate various three-dimensional microstructures by replenishing macromolecules such as extracellular matrix components and polysaccharides | Scientific Reports

Figure 2 | Modeling Collective Invasion and Single-Cell Mesenchymal  Invasion in Three-Dimensional Matrigel–Collagen I Cultures | SpringerLink
Figure 2 | Modeling Collective Invasion and Single-Cell Mesenchymal Invasion in Three-Dimensional Matrigel–Collagen I Cultures | SpringerLink

The use of mixed collagen-Matrigel matrices of increasing complexity  recapitulates the biphasic role of cell adhesion in cancer cell migration:  ECM sensing, remodeling and forces at the leading edge of cancer invasion
The use of mixed collagen-Matrigel matrices of increasing complexity recapitulates the biphasic role of cell adhesion in cancer cell migration: ECM sensing, remodeling and forces at the leading edge of cancer invasion

The use of mixed collagen-Matrigel matrices of increasing complexity  recapitulates the biphasic role of cell adhesion in cancer cell migration:  ECM sensing, remodeling and forces at the leading edge of cancer invasion
The use of mixed collagen-Matrigel matrices of increasing complexity recapitulates the biphasic role of cell adhesion in cancer cell migration: ECM sensing, remodeling and forces at the leading edge of cancer invasion