个人信息Personal Information
教授
博士生导师
硕士生导师
主要任职:光电工程与仪器科学学院院长、党委副书记
其他任职:辽宁省先进光电子技术重点实验室副主任,大连市新型功能材料与光电子器件重点实验室主任,中国超材料学会理事,中国机械工程学会极端制造分委员会委员,国际先进材料学会会士,Microsystems&Nanoengineering、chemosensors等期刊副编辑
性别:男
毕业院校:布里斯托尔大学
学位:博士
所在单位:光电工程与仪器科学学院
学科:光学工程. 电磁场与微波技术. 光学. 测试计量技术及仪器. 精密仪器及机械
办公地点:研教楼706
联系方式:0411-84706156
电子邮箱:caotun1806@dlut.edu.cn
A microfluidic platform enabling real-time control of dynamic biochemical stimuli to biological cells
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论文类型:期刊论文
发表时间:2020-09-01
发表刊物:JOURNAL OF MICROMECHANICS AND MICROENGINEERING
收录刊物:SCIE
卷号:30
期号:9
ISSN号:0960-1317
关键字:microfluidic platform; dynamic biochemical stimuli; real-time control; biological cell; cellular dynamic response
摘要:In the present study, we report a microfluidic platform that enables real-time control of biochemical stimuli to biological cells. The microfluidic platform is designed by integrating a 'Christmas tree' inlet for pre-generating spatially linear concentration gradient, with a Y-shaped channel to modulate dynamic signals with an external programmable air pump. The proposed design is simple and straightforward, has negligible response time compared to the traditional Y-shaped channel, and for the first time, provides the capability of generating versatile waveforms of dynamic stimuli and implementing multiple dynamic stimulating signals with different amplitudes synchronously. The feasibility of the microfluidic platform is proved by both computational fluid dynamics simulation and fluorescein experiment. The applicability of the proposed platform is demonstrated by characterizing the intracellular calcium ion dynamics in human umbilical vein endothelial cells in response to multiple dynamic stimuli within a single run. The proposed platform provides a simple approach to rapidly control dynamic stimuli with versatile waveforms to biological cells and shows the potential for the quantitative study of biological cellular dynamic responses.