3D Electro-Rotation of Single Cells
暫譯: 單細胞的三維電旋轉
Huang, Liang, Wang, Wenhui
- 出版商: Morgan & Claypool
- 出版日期: 2019-12-26
- 售價: $1,930
- 貴賓價: 9.5 折 $1,834
- 語言: 英文
- 頁數: 119
- 裝訂: Quality Paper - also called trade paper
- ISBN: 1681736918
- ISBN-13: 9781681736914
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商品描述
Dielectrophoresis microfluidic chips have been widely used in various biological applications due to their advantages of convenient operation, high throughput, and low cost.
However, most of the DEP microfluidic chips are based on 2D planar electrodes which have some limitations, such as electric field attenuation, small effective working regions, and weak DEP forces. In order to overcome the limitations of 2D planar electrodes, two kinds of thick-electrode DEP chips were designed to realize manipulation and multi-parameter measurement of single cells.
Based on the multi-electrode structure of thick-electrode DEP, a single-cell 3D electro-rotation chip of "Armillary Sphere" was designed. The chip uses four thick electrodes and a bottom planar electrode to form an electric field chamber, which can control 3D rotation of single cells under different electric signal configurations. Electrical property measurement and 3D image reconstruction of single cells are achieved based on single-cell 3D rotation. This work overcomes the limitations of 2D planar electrodes and effectively solves the problem of unstable spatial position of single-cell samples, and provides a new platform for single-cell analysis.
Based on multi-electrode structure of thick-electrode DEP, a microfluidic chip with optoelectronic integration was presented. A dual-fiber optical stretcher embedded in thick electrodes can trap and stretch a single cell while the thick electrodes are used for single-cell rotation. Stretching and rotation manipulation gives the chip the ability to simultaneously measure mechanical and electrical properties of single cells, providing a versatile platform for single-cell analysis, further extending the application of thick-electrode DEP in biological manipulation and analysis.
商品描述(中文翻譯)
介電泳微流體晶片因其操作方便、高通量和低成本的優勢,已廣泛應用於各種生物應用。然而,大多數的介電泳(DEP)微流體晶片基於2D平面電極,這些電極存在一些限制,例如電場衰減、有效工作區域小以及介電泳力弱。為了克服2D平面電極的限制,設計了兩種厚電極DEP晶片,以實現對單細胞的操控和多參數測量。
基於厚電極DEP的多電極結構,設計了一種名為「天球儀」的單細胞3D電旋轉晶片。該晶片使用四個厚電極和一個底部平面電極來形成電場腔室,能夠在不同的電信號配置下控制單細胞的3D旋轉。基於單細胞3D旋轉,實現了單細胞的電性質測量和3D影像重建。這項工作克服了2D平面電極的限制,有效解決了單細胞樣本空間位置不穩定的問題,並為單細胞分析提供了一個新平台。
基於厚電極DEP的多電極結構,提出了一種光電整合的微流體晶片。嵌入厚電極中的雙光纖光學拉伸器可以在厚電極用於單細胞旋轉的同時,捕捉並拉伸單個細胞。拉伸和旋轉的操控使該晶片能夠同時測量單細胞的機械和電性質,提供了一個多功能的平台進行單細胞分析,進一步擴展了厚電極DEP在生物操控和分析中的應用。