Microscopy techniques based on laser-induced nonlinear optical processes allow for chemically specific imaging of unmodified samples at high spatial resolution in three dimensions and provide powerful tools for characterization of tissue-engineering constructs. This is highlighted by the simultaneous imaging of scaffold material, cells, and produced extracellular matrix collagen in samples consisting of osteoprogenitor MC3T3-E1 cells seeded on microporous bacterial cellulose (BC), a potential scaffold material for synthesis of osseous tissue. BC and collagen have been visualized by second harmonic generation (SHG) microscopy, and verification of collagen identification on cellulose scaffolds has been carried out on sectioned samples by comp...
Tissue engineering is a rapidly developing field, based on using scaffolds made from natural or synt...
<div><p>The biological and mechanical function of connective tissues is largely determined by contro...
Collagen is the protein primarily responsible for the load-bearing properties of tissues and collage...
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...
Non-linear microscopy has been used to characterize bovine smooth muscle cells and their proliferati...
Cellulose perforated by micro-channels (phi? similar to 500 mu m) has been investigated as a potenti...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
A variety of optical microscopy techniques can visualise individual cells in their extracellular mat...
By controlling the microarchitecture of bioengineered scaffolds for artificial tissues, their materi...
Extracellularly distributed collagen and chondro- cytes seeded in gelatine and poly-e-caprolactone s...
International audienceWe implemented in situ time-lapse Second Harmonic Generation (SHG) microscopy ...
Second-harmonic-generation (SHG) microscopy is a new tool for observing the collagen fiber in tissue...
Objective: Current systems to evaluate outcomes from tissue-engineered cartilage (TEC) are sub-optim...
In this study, we combined two-photon autofluorescence and second harmonic generation imaging to inv...
Tissue engineering is a rapidly developing field, based on using scaffolds made from natural or synt...
<div><p>The biological and mechanical function of connective tissues is largely determined by contro...
Collagen is the protein primarily responsible for the load-bearing properties of tissues and collage...
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...
Non-linear microscopy has been used to characterize bovine smooth muscle cells and their proliferati...
Cellulose perforated by micro-channels (phi? similar to 500 mu m) has been investigated as a potenti...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
A variety of optical microscopy techniques can visualise individual cells in their extracellular mat...
By controlling the microarchitecture of bioengineered scaffolds for artificial tissues, their materi...
Extracellularly distributed collagen and chondro- cytes seeded in gelatine and poly-e-caprolactone s...
International audienceWe implemented in situ time-lapse Second Harmonic Generation (SHG) microscopy ...
Second-harmonic-generation (SHG) microscopy is a new tool for observing the collagen fiber in tissue...
Objective: Current systems to evaluate outcomes from tissue-engineered cartilage (TEC) are sub-optim...
In this study, we combined two-photon autofluorescence and second harmonic generation imaging to inv...
Tissue engineering is a rapidly developing field, based on using scaffolds made from natural or synt...
<div><p>The biological and mechanical function of connective tissues is largely determined by contro...
Collagen is the protein primarily responsible for the load-bearing properties of tissues and collage...