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Application notes

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Air-Liquid Interface Culture of Nasal and Tracheal Airway Epithelial Cells
Air-Liquid Interface Culture of Nasal and Tracheal Airway Epithelial Cells
Cat No AP001
Generation of a 3D human airway model with primary human nasal and tracheal epithelial cells using our Air-Liquid Interface Medium (ALI-Airway).
0,00 €
Real-time analysis of stem cell proliferation during differentiation
Real-time analysis of stem cell proliferation during differentiation
Cat No AP003
Here we describe the real-time analysis of human stem cell differentiation using cell-based assays. This allows for quantification of cell viability, proliferation and apoptosis.
0,00 €
Automated monitoring of metabolic activity and differentiation of human mesenchymal stem cells
Automated monitoring of metabolic activity and differentiation of human mesenchymal stem cells
Cat No AP004
Detailed analysis of human stem cells offers the potential for the specific treatment of diseases by cell-based therapies. With an automated real-time analysis, we assess phenotypic changes during mesenchymal stem cell (MSC) differentiation.
0,00 €
Osteogenic differentiation and analysis of MSC thumbnail
Osteogenic differentiation and analysis of mesenchymal stem cells (MSC)
Cat No AP005
Differentiate mesenchymal stem cells (MSC) into osteoblasts. Read our application note and find out more. The multipotency of these cells is one essential characteristic of MSC, according to the International Society for Cellular Therapy.
0,00 €
Neurogenic differentiation and analysis of mesenchymal stem cells (MSC)
Neurogenic differentiation and analysis of mesenchymal stem cells (MSC)
Cat No AP006
Specific culture conditions allow for transdifferentiation of mesenchymal stem cells (MSC) into cells of non-mesenchymal origin such as neurons. To do so, specific culture conditions and stimuli are needed.
0,00 €
Chondrogenic differentiation and analysis of mesenchymal stem cells (MSC)
Chondrogenic differentiation and analysis of mesenchymal stem cells (MSC)
Cat No AP007
Managed in vitro differentiation of mesenchymal stem cells (MSC) into chondrocytes. Multipotent adult stem cells are important for various tissues of the musculoskeletal system.
0,00 €
Adipogenic differentiation of mesenchymal stem cells: A complete protocol with Oil Red O staining
Adipogenic differentiation of mesenchymal stem cells: A complete protocol with Oil Red O staining
Cat No AP008
Turning mesenchymal stem cells (MSCs) into adipocytes is the focus of this application note, providing a clear and reliable protocol for adipogenic differentiation and analysis.
0,00 €
Osteoblast differentiation and mineralization
Osteoblast differentiation and mineralization
Cat No AP009
Osteoblasts are specialized fibroblasts that secrete and mineralize the bone matrix. Their differentiation in vitro and in vivo can be characterized in three stages. We describe analysis of different molecular markers of those processes.
0,00 €
Xeno-free MSC culture: high yield, better viability and morphology
Xeno-free MSC culture: high yield, better viability and morphology
Cat No AP010
Are you trying to mimic in vivo conditions in your MSC cultures as closely as possible, but need to avoid serum? Then find out how the combination of PromoCell DXF medium and a unique coating called myMATRIX help you make your conditions highly physiological while maintaining reproducibility.
0,00 €
MSC cultivation in single-use stirred tank bioreactors
MSC cultivation in single-use stirred tank bioreactors
Cat No AP011
MSCs have gained significant attention because of their therapeutic potential for many difficult-to-treat diseases. In this app note, we provide a protocol for (GMP) compliant large-scale production of MSCs in a single-use bioreactor using our MSC Growth Medium XF.
0,00 €
Cancer organoid model
Cancer organoid model
Cat No AP013
This application note describes a method for easy 3D organoid culture of Primary Human Dermal Fibroblasts (NHDF) and MCF-7 cells in our Cancer Cell Line Medium XF.
0,00 €
Development of a high throughput 3D in vitro wound healing model
Development of a high throughput 3D in vitro wound healing model
Cat No AP016
Studying wound healing is a challenge, however the ability to quantifying the difference between 3D skin models is now possible.
0,00 €

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