By controlling the microarchitecture of bioengineered scaffolds for artificial tissues, their material and cell-interaction properties can be designed to mimic native correspondents. Current understanding of this relationship is sparse and based oil microscopy requiring harsh sample preparation and labeling, leaving it open to which extent the natural morphology is studied. This work introduces multimodal nonlinear microscopy for label-free imaging of tissue scaffolds, exemplified by bacterial Cellulose. Unique three-dimensional images visualizing the formation of nanofiber networks throughout the biosynthesis, revealing that supra-structures (layered structures, cavities) are formed. Cell integration in compact scaffolds was visualized and...
BACKGROUND: Cell culture methods allow the detailed observations of individual plant cells and their...
The aim of this thesis work was to understand the interactions between plant-derived cellulose nanof...
Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased funct...
Major efforts are presently made to develop artificial replacement tissues with optimal architectura...
Microscopy techniques based on laser-induced nonlinear optical processes allow for chemically specif...
We have developed a protocol employing dual-mode non-linear microscopy for the monitoring of the bio...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
Abstract: This study presents a novel approach, based on fluorescence multiphoton microscopy (MPM), ...
Non-linear microscopy has been used to characterize bovine smooth muscle cells and their proliferati...
In nature, cells exist in three-dimensional (3D) microenvironments with topography, stiffness, surfa...
Proliferation, integration, and neurite extension of PC12 cells, a widely used culture model for cho...
As a rapidly growing area in materials design, the biomimetic approach at the frontier between biolo...
A powerful replica molding methodology to transfer on-demand functional topographies to the surface ...
Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased funct...
BACKGROUND: Cell culture methods allow the detailed observations of individual plant cells and their...
The aim of this thesis work was to understand the interactions between plant-derived cellulose nanof...
Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased funct...
Major efforts are presently made to develop artificial replacement tissues with optimal architectura...
Microscopy techniques based on laser-induced nonlinear optical processes allow for chemically specif...
We have developed a protocol employing dual-mode non-linear microscopy for the monitoring of the bio...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
Abstract: This study presents a novel approach, based on fluorescence multiphoton microscopy (MPM), ...
Non-linear microscopy has been used to characterize bovine smooth muscle cells and their proliferati...
In nature, cells exist in three-dimensional (3D) microenvironments with topography, stiffness, surfa...
Proliferation, integration, and neurite extension of PC12 cells, a widely used culture model for cho...
As a rapidly growing area in materials design, the biomimetic approach at the frontier between biolo...
A powerful replica molding methodology to transfer on-demand functional topographies to the surface ...
Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased funct...
BACKGROUND: Cell culture methods allow the detailed observations of individual plant cells and their...
The aim of this thesis work was to understand the interactions between plant-derived cellulose nanof...
Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased funct...