Tissue regeneration and transplantation of solid organs involve complex processes that can only be studied in the context of the living organism, and methods of analyzing these processes in vivo are essential for development of effective transplantation and regeneration procedures. We utilized in vivo bioluminescence imaging (BLI) to noninvasively visualize engraftment, survival, and rejection of transplanted tissues from a transgenic donor mouse that constitutively expresses luciferase. Dynamic early events of hematopoietic reconstitution were accessible and engraftment from as few as 200 transplanted whole bone marrow (BM) cells resulted in bioluminescent foci in lethally irradiated, syngeneic recipients. The transplantation of autologous...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
To promote cancer research and to develop innovative therapies, refined pre-clinical mouse tumor mod...
In vivo imaging technology can detect and diagnose almost all of transplanted cells remains unestabl...
Molecular imaging holds great promise for the in vivo study of cell therapy. Our hypothesis was that...
Stem cell therapy has been studied intensively as a promising therapeutic strategy toward a cure for...
The aim of this study is to determine and characterize factors influencing in vivo bioluminescence i...
Abstract: Cell-based therapies have emerged during the last decade in various clinical fields. Espec...
Bioluminescence imaging (BLI) is an optical imaging method that can be translated from the cell cult...
<p>Whole bone marrow cells from NSG mice transplanted with mock-infected, or DM scAAV6-B19p6-Gluc ve...
Cell transplantation has been proposed as a promising therapeutic strategy for curing the diseases r...
Noninvasive serial monitoring of the fate of transplanted cells would be invaluable to evaluate the ...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
We have developed a mouse system by which to track the migration and homing of cells in a setting of...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
To promote cancer research and to develop innovative therapies, refined pre-clinical mouse tumor mod...
In vivo imaging technology can detect and diagnose almost all of transplanted cells remains unestabl...
Molecular imaging holds great promise for the in vivo study of cell therapy. Our hypothesis was that...
Stem cell therapy has been studied intensively as a promising therapeutic strategy toward a cure for...
The aim of this study is to determine and characterize factors influencing in vivo bioluminescence i...
Abstract: Cell-based therapies have emerged during the last decade in various clinical fields. Espec...
Bioluminescence imaging (BLI) is an optical imaging method that can be translated from the cell cult...
<p>Whole bone marrow cells from NSG mice transplanted with mock-infected, or DM scAAV6-B19p6-Gluc ve...
Cell transplantation has been proposed as a promising therapeutic strategy for curing the diseases r...
Noninvasive serial monitoring of the fate of transplanted cells would be invaluable to evaluate the ...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
We have developed a mouse system by which to track the migration and homing of cells in a setting of...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
Determining the cell fate and the distribution of mesenchymal stromal/stem cells (MSCs) after transp...
To promote cancer research and to develop innovative therapies, refined pre-clinical mouse tumor mod...
In vivo imaging technology can detect and diagnose almost all of transplanted cells remains unestabl...