炸薯条
范围(计算机科学)
芯片上器官
微流控
计算机科学
微流控芯片
芯片上的系统
纳米技术
实验室晶片
嵌入式系统
材料科学
电信
程序设计语言
作者
Zhaohe Wang,Yongqian Zhang,Zhe Li,Hao Wang,N Li,Yulin Deng
出处
期刊:Small
[Wiley]
日期:2023-08-31
卷期号:19 (52)
被引量:4
标识
DOI:10.1002/smll.202304427
摘要
Abstract As an ideal in vitro model, brain‐on‐chip (BoC) is an important tool to comprehensively elucidate brain characteristics. However, the in vitro model for the definition scope of BoC has not been universally recognized. In this review, BoC is divided into brain cells‐on‐a‐ chip, brain slices‐on‐a‐chip, and brain organoids‐on‐a‐chip according to the type of culture on the chip. Although these three microfluidic BoCs are constructed in different ways, they all use microfluidic chips as carrier tools. This method can better meet the needs of maintaining high culture activity on a chip for a long time. Moreover, BoC has successfully integrated cell biology, the biological material platform technology of microenvironment on a chip, manufacturing technology, online detection technology on a chip, and so on, enabling the chip to present structural diversity and high compatibility to meet different experimental needs and expand the scope of applications. Here, the relevant core technologies, challenges, and future development trends of BoC are summarized.
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