中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
A Microfluidic-Based Multi-Shear Device for Investigating the Effects of Low Fluid-Induced Stresses on Osteoblasts

文献类型:期刊论文

作者Yu, WL; Qu, H; Hu GQ(胡国庆); Zhang, Q; Song, K; Guan, HJ; Liu, TJ; Qin, JH
刊名PLOS ONE
出版日期2014-02-27
卷号9期号:2页码:e89966
通讯作者邮箱tingjiao@dlmedu.edu.cn; jhqin@dicp.ac.cn
关键词elasto-plastic-damage behavior anisotropy physical mechanism finite deformation constitutive theory component assembling model
ISSN号1932-6203
产权排序[Yu, Weiliang; Zhang, Qian; Guan, Haijie; Liu, Tingjiao] Dalian Med Univ, Coll Stomatol, Sect Oral Pathol, Dalian, Peoples R China; [Yu, Weiliang; Qu, Hong] Dalian Med Univ, Coll Stomatol, Sect Orthodont, Dalian, Peoples R China; [Qin, Jianhua] Chinese Acad Sci, Dalian Inst Chem Phys, Dept Biotechnol, Dalian, Peoples R China; [Hu, Guoqing; Song, Kui] Chinese Acad Sci, Inst Mech, State Key Lab Nonlinear Mech LNM, Beijing 100080, Peoples R China
通讯作者Liu, TJ (reprint author), Dalian Med Univ, Coll Stomatol, Sect Oral Pathol, Dalian, Peoples R China.
合作状况国内
中文摘要Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear stresses on cells. Fluid flow-induced stress (FSS) plays an important role during tissue morphogenesis. To investigate the effect of low FSS generated by IFF on cells, we developed a microfluidic-based cell culture device that can generate multiple low shear stresses. By changing the length and width of the flow-in channels, different continuous low level shear stresses could be generated in individual cell culture chambers. Numerical calculations demonstrate uniform shear stress distributions of the major cell culture area of each chamber. This calculation is further confirmed by the wall shear stress curves. The effects of low FSS on MC3T3-E1 proliferation and differentiation were studied using this device. It was found that FSS ranging from 1.5 to 52.6 mu Pa promoted MC3T3-E1 proliferation and differentiation, but FSS over 412 mu Pa inhibited the proliferation and differentiation of MC3T3-E1 cells. FSS ranging from 1.5 to 52.6 mu Pa also increased the expression of Runx2, a key transcription factor regulating osteoblast differentiation. It is suggested that Runx2 might be an important regulator in low FSS-induced MC3T3-E1 differentiation. This device allows for detailed study of the effect of low FSS on the behaviors of cells; thus, it would be a useful tool for analysis of the effects of IFF-induced shear stresses on cells.
学科主题Science & Technology - Other Topics
分类号二类/Q1
收录类别SCI
资助信息This work was supported by National Natural Science Foundation of China (No. 81171425) and Program for Liaoning Excellent Talents in University (No. LR201013). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
原文出处http://dx.doi.org/10.1371/journal.pone.0089966
语种英语
WOS记录号WOS:000332390800061
公开日期2014-05-09
源URL[http://dspace.imech.ac.cn/handle/311007/48765]  
专题力学研究所_非线性力学国家重点实验室
推荐引用方式
GB/T 7714
Yu, WL,Qu, H,Hu GQ,et al. A Microfluidic-Based Multi-Shear Device for Investigating the Effects of Low Fluid-Induced Stresses on Osteoblasts[J]. PLOS ONE,2014,9(2):e89966.
APA Yu, WL.,Qu, H.,Hu GQ.,Zhang, Q.,Song, K.,...&Qin, JH.(2014).A Microfluidic-Based Multi-Shear Device for Investigating the Effects of Low Fluid-Induced Stresses on Osteoblasts.PLOS ONE,9(2),e89966.
MLA Yu, WL,et al."A Microfluidic-Based Multi-Shear Device for Investigating the Effects of Low Fluid-Induced Stresses on Osteoblasts".PLOS ONE 9.2(2014):e89966.

入库方式: OAI收割

来源:力学研究所

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