Recent advances in the isolation of tissue-resident adult stem cells and the identification of inductive factors that efficiently direct differentiation of human pluripotent stem cells along specific lineages have facilitated the development of high-fidelity modelling of several tissues in vitro. Many of the novel approaches have employed self-organizing three-dimensional (3D) culturing of organoids, which offer several advantages over conventional two-dimensional platforms. Organoid technologies hold great promise for modelling diseases and predicting the outcome of drug responses in vitro. Here, we outline the historical background and some of the recent advances in the field of three-dimensional organoids. We also highlight some of the c...
Two-dimensional (2D) cell culture is a valuable method for cell-based research, However, it may prov...
Introduction: The article describes a new method of tissue engineering, which is based on the use of...
During the past 10 years the world has experienced enormous progress in the organoids field. Human o...
Recent advances in the isolation of tissue-resident adult stem cells and the identification of ind...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Tissue and organ biology are very challenging to study in mammals, and progress can be hindered, par...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
In vitro three-dimensional (3D) cultures are emerging as novel systems with which to study tissue de...
Although historically, the traditional bidimensional in vitro cell system has been widely used in re...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
In the last ten years, there has been a dramatic surge in the number of publications where single or...
In nature, cells reside in tissues subject to complex cell-cell interactions, signals from extracell...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
Using the classical embryoid body approach, 3D aggregate cultures facilitate enhanced multi-lineage ...
Three-dimensional (3D) in vitro models span the gap between two-dimensional cell cultures and whole-...
Two-dimensional (2D) cell culture is a valuable method for cell-based research, However, it may prov...
Introduction: The article describes a new method of tissue engineering, which is based on the use of...
During the past 10 years the world has experienced enormous progress in the organoids field. Human o...
Recent advances in the isolation of tissue-resident adult stem cells and the identification of ind...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Tissue and organ biology are very challenging to study in mammals, and progress can be hindered, par...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
In vitro three-dimensional (3D) cultures are emerging as novel systems with which to study tissue de...
Although historically, the traditional bidimensional in vitro cell system has been widely used in re...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
In the last ten years, there has been a dramatic surge in the number of publications where single or...
In nature, cells reside in tissues subject to complex cell-cell interactions, signals from extracell...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
Using the classical embryoid body approach, 3D aggregate cultures facilitate enhanced multi-lineage ...
Three-dimensional (3D) in vitro models span the gap between two-dimensional cell cultures and whole-...
Two-dimensional (2D) cell culture is a valuable method for cell-based research, However, it may prov...
Introduction: The article describes a new method of tissue engineering, which is based on the use of...
During the past 10 years the world has experienced enormous progress in the organoids field. Human o...