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典型文献
Numerical study of opposed zero-net-mass-flow jet-induced erythrocyte mechanoporation
文献摘要:
With the advantages of biosafety and efficiency,increasing attention has been paid to the devices for gene and macromolecular drug delivery based on mechanoporation.The transient pore formation on the cell membrane allows cargo transportation when the membrane areal strain is beyond the critical pore value and below the lysis tension threshold.Based on this principle,we propose a method to apply the proper fluid stress on cells moving in a microchannel under the action of zero-net-mass-flux(ZNMF)jets.In this study,an immersed finite element method(IFEM)is adopted to simulate the interaction between the cells and the fluid fields so as to investigate the cell movement and deformation in this mechanoporation system.To evaluate the efficiency of the cargo delivery,a pore integral is defined as the mean pore rate when the cell passes through the jet region.By analyzing the effects of the parameters,including the pressure gradient along the microchannel,the jet amplitude,and the jet frequency,on the pore integrals,a group of optimized parameters for cargo delivery efficiency are obtained.Additionally,the stability and safety of this system are analyzed in detail.These results are helpful in designing the mechanoporation devices and improving their efficiency of drug delivery.
文献关键词:
作者姓名:
Xinyue LIU;Jinfang AI;Jun XIE;Guohui HU
作者机构:
Shanghai Institute of Applied Mathematics and Mechanics,School of Mechanics and Engineering Science,Shanghai Key Laboratory of Mechanics in Energy Engineering,Collaborative Innovation Center for the Marine Artificial Intelligent,Shanghai University,Shanghai 200072,China;Zhejiang Lab,Hangzhou 311121,China
引用格式:
[1]Xinyue LIU;Jinfang AI;Jun XIE;Guohui HU-.Numerical study of opposed zero-net-mass-flow jet-induced erythrocyte mechanoporation)[J].应用数学和力学(英文版),2022(11):1763-1776
A类:
mechanoporation,ZNMF,IFEM
B类:
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AB值:
0.528065
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