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Standing surface acoustic wave-assisted fabrication of patterned microstructures for enhancing cell migration 被引量:1

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摘要 Microfluidic device with patterned microstructures on the substrate surface was used to regulate cell adhesion,morphology,and functions in tissue engineering.We developed a microfluidic device which employing microscale patterned microstructures to achieve enhanced cell adhesion and migration.Biocompatible hydrogel substrates with micro-wavy and lattice-patterned microstructures were fabricated using standing surface acoustic waves and ultraviolet solidification.After seeding the L929 mouse fibroblast cells onto the patterned substrate of the microfluidic device,we determined that the viability and proliferation rate of cell migration can be greatly enhanced.Furthermore,L929 cells showed two types of gathering modes after 48 h of culturing.Cell growth was guided by the patterned substrate used in the microfluidic device and showed differences in the location distribution.Therefore,the developed microfluidic device with patterned microstructures can extend the application of in vitro cell culturing for future drug development and disease diagnosis.
出处 《Bio-Design and Manufacturing》 SCIE CSCD 2020年第2期87-97,共11页 生物设计与制造(英文)
基金 The authors acknowledge the funding support from the National Natural Science Foundation of China(U1809220) Zhejiang Provincial Funds for Distinguished Young Scientists of China(LR19E050001) Open Fund Project of Zhijiang Laboratory(2019MC0AB02) Fund for Creative Research Groups of National Natural Science Foundation of China(51821093).
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