Cells are inherently conferred with the ability to self-organize into the tissues and organs comprising the human body. Self-organization can be recapitulated in vitro and recent advances in the organoid field are just one example of how we can generate small functioning elements of organs. Tissue engineers can benefit from the power of self-organization and should consider how they can harness and enhance the process with their constructs. For example, aggregates of stem cells and tissue-specific cells benefit from the input of carefully selected biomolecules to guide their differentiation toward a mature phenotype. This can be further enhanced by the use of technologies to provide a physiological microenvironment for self-organization, en...
Over the past two decades, molecular cell biology has graduated from a mostly analytic science to on...
Purpose of reviewEngineering functional organs starting from stem or progenitor cells holds promise ...
Purpose of review Engineering functional organs starting from stem or progenitor cells holds promise...
Cells are inherently conferred with the ability to self-organize into the tissues and organs compris...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Self-organization of cells is a fundamental design principle in biology, yet the inherent non-linear...
Self-organization of cells is a fundamental design principle in biology, yet the inherent non-linear...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
Self-organization is an all-important feature of living systems that provides the means to achieve s...
Organoids constitute biological systems which are used to model organ development, homeostasis, rege...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Over the past two decades, molecular cell biology has graduated from a mostly analytic science to on...
Purpose of reviewEngineering functional organs starting from stem or progenitor cells holds promise ...
Purpose of review Engineering functional organs starting from stem or progenitor cells holds promise...
Cells are inherently conferred with the ability to self-organize into the tissues and organs compris...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Self-organization of cells is a fundamental design principle in biology, yet the inherent non-linear...
Self-organization of cells is a fundamental design principle in biology, yet the inherent non-linear...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
Self-organization is an all-important feature of living systems that provides the means to achieve s...
Organoids constitute biological systems which are used to model organ development, homeostasis, rege...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Over the past two decades, molecular cell biology has graduated from a mostly analytic science to on...
Purpose of reviewEngineering functional organs starting from stem or progenitor cells holds promise ...
Purpose of review Engineering functional organs starting from stem or progenitor cells holds promise...