The ability to generate human tissues in vitro from stem cells has raised enormous expectations among the biomedical research community, patients, and the general public. These organoids enable studies of normal development and disease and allow the testing of compounds directly on human tissue. Organoids hold the promise to influence the entire innovation cycle in biomedical research. They affect fields that have been subjects of intense ethical debate, ranging from animal experiments and the use of embryonic or fetal human tissues to precision medicine, organoid transplantation, and gene therapy. However, organoid research also raises additional ethical questions that require reexamination and potential recalibration of ethical and legal ...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Abstract Background Regenerative medicine has the potential to treat genetic disorders and replace d...
The ability to generate human tissues in vitro from stem cells has raised enormous expectations amon...
The ability to generate human tissues in vitro from stem cells has raised enormous expectations amon...
Recent advances in the stem cell field make it possible to culture three-dimensional human tissues i...
Organoids hold great promises for numerous applications in biomedicine and biotechnology. Despite it...
Recent developments in biotechnology allow for the generation of increasingly complex products out o...
The historical reliance of biological research on the use of animal models has sometimes made it cha...
Organoids are 3D miniature tissue mimics and have been effectively used for various purposes, includ...
For many decades, human infectious diseases have been studied in immortalized cell lines, isolated p...
Animal models have been standard methods for non-clinical research in drug development for decades. ...
For many decades, human infectious diseases have been studied in immortalized cell lines, isolated p...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Innumerable studies associated with cellular differentiation, tissue response and disease modeling h...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Abstract Background Regenerative medicine has the potential to treat genetic disorders and replace d...
The ability to generate human tissues in vitro from stem cells has raised enormous expectations amon...
The ability to generate human tissues in vitro from stem cells has raised enormous expectations amon...
Recent advances in the stem cell field make it possible to culture three-dimensional human tissues i...
Organoids hold great promises for numerous applications in biomedicine and biotechnology. Despite it...
Recent developments in biotechnology allow for the generation of increasingly complex products out o...
The historical reliance of biological research on the use of animal models has sometimes made it cha...
Organoids are 3D miniature tissue mimics and have been effectively used for various purposes, includ...
For many decades, human infectious diseases have been studied in immortalized cell lines, isolated p...
Animal models have been standard methods for non-clinical research in drug development for decades. ...
For many decades, human infectious diseases have been studied in immortalized cell lines, isolated p...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Innumerable studies associated with cellular differentiation, tissue response and disease modeling h...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Abstract Background Regenerative medicine has the potential to treat genetic disorders and replace d...