Adult human mesenchymal stem cells show structural rearrangements of their cytoskeletal network during mechanically induced differentiation toward various cell types. In particular, the alignment of acto-myosin fibers is cell fate-dependent and can serve as an early morphological marker of differentiation. Quantification of such nanostructures on a mesoscopic scale requires high-resolution imaging techniques. Here, we use small- angle x-ray scattering with a spot size in the micro- and submicrometer range as a high-resolution and label-free imaging technique to reveal structural details of stem cells and differentiated cell types. We include principal component analysis into an automated empirical analysis scheme that allows the local chara...
In recent years, X-ray imaging of biological cells has emerged as a complementary alternative to flu...
Softcover, 17x24Understanding the intricate details of muscle contraction has a long-standing tradit...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Adult human mesenchymal stem cells show structural rearrangements of their cytoskeletal network duri...
AbstractAdult human mesenchymal stem cells show structural rearrangements of their cytoskeletal netw...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
X-ray diffraction from biomolecular assemblies is a powerful technique which can provide structural ...
Softcover, 17x24X-rays provide an ideal probe for studying structures at the nano-scale and are rout...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
The topography of a biomaterial regulates cellular interactions and determine stem cell fate. A comp...
We present a multiscale imaging approach to characterize the structure of isolated adult murine card...
X-ray imaging of intact biological cells is emerging as a complementary method to visible light or e...
Spatiotemporal organized patterns of cell surface-associated and extracellular matrix (ECM)-embedded...
Spatiotemporal organized patterns of cell surface-associated and extracellular matrix (ECM)-embedded...
Current methods to characterize mesenchymal stem cells (MSCs) are limited to CD marker expression, p...
In recent years, X-ray imaging of biological cells has emerged as a complementary alternative to flu...
Softcover, 17x24Understanding the intricate details of muscle contraction has a long-standing tradit...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Adult human mesenchymal stem cells show structural rearrangements of their cytoskeletal network duri...
AbstractAdult human mesenchymal stem cells show structural rearrangements of their cytoskeletal netw...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
X-ray diffraction from biomolecular assemblies is a powerful technique which can provide structural ...
Softcover, 17x24X-rays provide an ideal probe for studying structures at the nano-scale and are rout...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
The topography of a biomaterial regulates cellular interactions and determine stem cell fate. A comp...
We present a multiscale imaging approach to characterize the structure of isolated adult murine card...
X-ray imaging of intact biological cells is emerging as a complementary method to visible light or e...
Spatiotemporal organized patterns of cell surface-associated and extracellular matrix (ECM)-embedded...
Spatiotemporal organized patterns of cell surface-associated and extracellular matrix (ECM)-embedded...
Current methods to characterize mesenchymal stem cells (MSCs) are limited to CD marker expression, p...
In recent years, X-ray imaging of biological cells has emerged as a complementary alternative to flu...
Softcover, 17x24Understanding the intricate details of muscle contraction has a long-standing tradit...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...