糖萼
剪应力
微流控
微流控芯片
压力(语言学)
炸薯条
材料科学
芯片上器官
生物医学工程
纳米技术
复合材料
化学
工程类
生物化学
电气工程
语言学
哲学
作者
Lina Lin,Chaoyu Yang,Xiaoya Ding,Yan Zu,Weijian Wang
出处
期刊:ACS materials letters
[American Chemical Society]
日期:2024-08-26
卷期号:: 4412-4420
标识
DOI:10.1021/acsmaterialslett.4c01108
摘要
The vessel-on-a-chip has shown a significant preponderance in vascular disease research. While the vessel-on-a-chip has rarely demonstrated the effects of endogenous and/or exogenous stimuli on endothelial glycocalyx that plays a critical role in regulating vessel function. Here, an innovative vessel-on-a-chip combined with inverse opal films was developed to investigate glycocalyx integrity and its barrier function under different stimuli. By integrating inverse opal films into the chip, we achieved the real-time observation of the barrier function of glycocalyx in vitro. We demonstrated that the glycocalyx integrity and its barrier function can be maintained under physiological shear stress, and further, the restoration of glycocalyx treated with sevoflurane after being destroyed by low shear stress was also confirmed. Thus, it is clear that the vessel-on-a-chip system holds considerable promise for studying the mechanisms of various vessel diseases and provides a valuable candidate for preclinical drug assessment.
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