International audienceTechnical progress in materials science and bioprinting has for the past few decades fostered considerable advances in medicine. More recently, the understanding of the processes of self-organization of cells into three-dimensional multicellular structures and the study of organoids have opened new perspectives for tissue engineering. Here, we review microengineering approaches for building functional tissues, and discuss recent progress in the understanding of morphogenetic processes and in the ability to steer them in vitro. On the basis of biological and technical considerations, we emphasize the achievements and remaining challenges of bringing together microengineering and morphogenesis. Our viewpoint underlines t...
Abstract—Highly organized structures are a defining feature of biological tissues, from vascular and...
A 3D bioprinting approach has been developed to facilitate tissue morphogenesis by directly depositi...
Recent advances in developmental biology, systems biology, and network science are converging to poi...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Cells are inherently conferred with the ability to self-organize into the tissues and organs compris...
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...
Tissue engineering approaches, with the goals of replacing or recovering damaged or diseased tissues...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Background: Inside the body, cells lie in direct contact or in close proximity to other cell types i...
Developmental biology has advanced the understanding of the intricate and dynamic processes involved...
Abstract—Highly organized structures are a defining feature of biological tissues, from vascular and...
A 3D bioprinting approach has been developed to facilitate tissue morphogenesis by directly depositi...
Recent advances in developmental biology, systems biology, and network science are converging to poi...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
In vitro-generated tissues hold significant promise in modern biology since they can potentially mim...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Cells are inherently conferred with the ability to self-organize into the tissues and organs compris...
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...
Tissue engineering approaches, with the goals of replacing or recovering damaged or diseased tissues...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Background: Inside the body, cells lie in direct contact or in close proximity to other cell types i...
Developmental biology has advanced the understanding of the intricate and dynamic processes involved...
Abstract—Highly organized structures are a defining feature of biological tissues, from vascular and...
A 3D bioprinting approach has been developed to facilitate tissue morphogenesis by directly depositi...
Recent advances in developmental biology, systems biology, and network science are converging to poi...