人脑
小动脉
低温保存
神经血管束
人类疾病
脑组织
自愈水凝胶
组织工程
生物医学工程
体内
微循环
神经科学
生物
病理
血脑屏障
功能(生物学)
管腔(解剖学)
细胞生物学
人体生理学
细胞
血管
解剖
再生医学
微流控
周细胞
内皮
电池类型
人类健康
人胎盘
舱室(船)
医学
内皮干细胞
作者
Brian O'Grady,A. Scott McCall,Samuel Cullison,Daniel Chavarría,Matthew S. Schrag,Ethan S. Lippmann
标识
DOI:10.1002/adhm.202504167
摘要
ABSTRACT Brain vasculature is a complex and heterogeneous structure that serves specialized roles in maintaining brain health and homeostasis. There is substantial interest in developing representative human models of the brain vasculature for drug screening and disease modeling applications. Many contemporary strategies have focused on culturing neurovascular cell types in hydrogels and microdevices, but it remains challenging to achieve anatomically relevant vascular structures that have similar function to their in vivo counterparts. Here, we present a strategy for isolating microvessels from cryopreserved human cortical tissue and culturing these vessels in a biomimetic gelatin‐based hydrogel contained in a microfluidic device. We provide histological evidence of arteriole and capillary architectures within hydrogels, as well as anastomosis to the hydrogel edges allowing lumen perfusion. In capillaries, we demonstrate restricted diffusion of a 10 kDa dextran, indicating intact passive blood‐brain barrier function. We anticipate this bona fide human brain vasculature‐on‐a‐chip will be useful for various biotechnology applications.
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