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个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 中国地面机器系统学会委员,中国微米纳米技术学会青年工作委员会委员,中国微米纳米技术学会制造及装备分会秘书,中国机械工程学会高级会员,大连医科大学附属第一医院康复医疗器械专家工作站设站专家
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:机械工程学院
学科:机械电子工程
办公地点:知方楼6011
联系方式:0411-84707713-8118
电子邮箱:jingminl@dlut.edu.cn
细胞三维动态培养微器件的设计与制作
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发表时间:2022-10-06
发表刊物:光学精密工程
所属单位:机械工程学院
卷号:26
期号:7
页面范围:1672-1679
ISSN号:1004-924X
摘要:Cell culture is the basis of cell research. In order to provide an approximate microenvironment for cell culture, a micro-device for three-dimensional and dynamic cell culture was designed. First, a micro-channel network was designed for transportation of liquid. The cell culture chamber was symmetrically arranged in the micro-channel network. A series of 'multiple input and multiple output' micro-channels were connected with the inlet and outlet of the cell culture chamber. Second, the physical fields of laminar and porous media in the COMSOL software were coupled, which was used to simulate the velocity of the liquid in the cell culture chamber of the micro-device. The network structure of micro-channels was optimized by comparing the homogeneity and stability of the flow field. Third, the electrohydrodynamic direct-writing technology was used to integrate polycaprolactone (PCL) three-dimensional scaffolds in the cell culture chamber, which constructed the three-dimensional culture space. Finally, after the welding of the micro-device, the fluid flow condition in the cell culture chamber of the micro-device was tested, and cell experiments were performed. The results show that the fluid stability and homogeneity in the cell culture chamber of a '2×2' micro-device are appropriate. The fiber spacing of the three-dimensional scaffolds is 400 μm, the diameter is 80 μm, and the porosity is 64%. Besides, the cell survival rate is more than 90%. The micro-device, which can be used for three-dimensional dynamic cell culture, precisely simulates the microenvironment needed for the survival of cells in vivo. Cells in the culturing chamber grew well; therefore, the micro-device can satisfy the design requirements. © 2018, Science Press. All right reserved.
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