Vascularized human brain organoid on-chip

Modelling the human brain in vitro has been extremely challenging due to the brain's intricate cellular composition and specific structural architecture. The recent emergence of brain organoids that recapitulate many key features of human brain development has thus piqued the interest of many t...

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Veröffentlicht in:Lab on a chip 2023-06, Vol.23 (12), p.2693-279
Hauptverfasser: Tan, Sin Yen, Feng, Xiaohan, Cheng, Lily Kwan Wai, Wu, Angela Ruohao
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Sprache:eng
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Zusammenfassung:Modelling the human brain in vitro has been extremely challenging due to the brain's intricate cellular composition and specific structural architecture. The recent emergence of brain organoids that recapitulate many key features of human brain development has thus piqued the interest of many to further develop and apply this in vitro model for various physiological and pathological investigations. Despite ongoing efforts, the existing brain organoids demonstrate several limitations, such as the lack of a functional human vasculature with perfusion capability. Microfluidics is suited to enhance such brain organoid models by enabling vascular perfusion and a curated blood-brain barrier microenvironment. In this review, we first provide an introduction to in vivo human brain development and present the state-of-the-art in vitro human brain models. We further elaborate on different strategies to improve the vascularized human brain organoid microenvironment using microfluidic devices, while discussing the current obstacles and future directions in this field. We review the existing in vitro human brain models and elaborate on various strategies that enable the curation of a vascularized human brain organoid using microfluidic devices.
ISSN:1473-0197
1473-0189
DOI:10.1039/d2lc01109c