Vascularization of tissues, organoids and organ-on-chip models has been attempted using endothelial cells. However, the cultured endothelial cells lack the capacity to interact with other somatic cell types, which is distinct from developing vascular cells in vivo. Recently, it was demonstrated that blood vessel organoids (BVOs) recreate the structure and functions of developing human blood vessels. However, the tissue-specific adaptability of BVOs had not been assessed in somatic tissues. Herein, we investigated whether BVOs infiltrate human cerebral organoids and form a blood–brain barrier. As a result, vascular cells arising from BVOs penetrated the cerebral organoids and developed a vessel-like architecture composed of CD31+ endothelial...
Endothelial cells of different vascular beds display diverse functional and morphological characteri...
Pluripotent stem cell-derived organoids have transformed our ability to recreate complex three-dimen...
The human blood brain barrier (BBB) is a selective barrier formed by human brain endothelial cells (...
The aim of this study was to vascularize brain organoids with a patient's own endothelial cells (ECs...
Background and Objectives: Brain organoids have the potential to improve our understanding of brain ...
Organoids derived from human pluripotent stem cells are interesting models to study mechanisms of mo...
The blood-brain barrier (BBB) regulates the transport of molecules from the blood into the brain par...
Blood vessel organoids are an important in vitro model to understand the underlying mechanisms of hu...
International audienceOBJECTIVE: The vascular system is adapted to specific functions in different t...
In evaluating drugs that enter or are excluded from the brain, novel pharmaceutical strategies are n...
Our group has recently created a novel in-vivo human brain organoid vascularized with human iPSC-der...
Modeling the processes of neuronal progenitor proliferation and differentiation to produce mature co...
Organs-on-chips are microengineered in vitro tissue structures that can be used as platforms for phy...
Abstract Organoids are biomimetic tissue analogs that are generated via the self‐organization of ste...
Our group has recently created a novel in-vivo human brain organoid vascularized with human iPSC-der...
Endothelial cells of different vascular beds display diverse functional and morphological characteri...
Pluripotent stem cell-derived organoids have transformed our ability to recreate complex three-dimen...
The human blood brain barrier (BBB) is a selective barrier formed by human brain endothelial cells (...
The aim of this study was to vascularize brain organoids with a patient's own endothelial cells (ECs...
Background and Objectives: Brain organoids have the potential to improve our understanding of brain ...
Organoids derived from human pluripotent stem cells are interesting models to study mechanisms of mo...
The blood-brain barrier (BBB) regulates the transport of molecules from the blood into the brain par...
Blood vessel organoids are an important in vitro model to understand the underlying mechanisms of hu...
International audienceOBJECTIVE: The vascular system is adapted to specific functions in different t...
In evaluating drugs that enter or are excluded from the brain, novel pharmaceutical strategies are n...
Our group has recently created a novel in-vivo human brain organoid vascularized with human iPSC-der...
Modeling the processes of neuronal progenitor proliferation and differentiation to produce mature co...
Organs-on-chips are microengineered in vitro tissue structures that can be used as platforms for phy...
Abstract Organoids are biomimetic tissue analogs that are generated via the self‐organization of ste...
Our group has recently created a novel in-vivo human brain organoid vascularized with human iPSC-der...
Endothelial cells of different vascular beds display diverse functional and morphological characteri...
Pluripotent stem cell-derived organoids have transformed our ability to recreate complex three-dimen...
The human blood brain barrier (BBB) is a selective barrier formed by human brain endothelial cells (...