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国家自然科学基金(11232010)

作品数:14 被引量:35H指数:3
相关作者:齐颖新韩悦包晗姜宗来龚晓波更多>>
相关机构:上海交通大学更多>>
发文基金:国家自然科学基金国家教育部博士点基金更多>>
相关领域:医药卫生一般工业技术金属学及工艺理学更多>>

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14 条 记 录,以下是 1-10
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microRNA-133b在低切应力诱导血管内皮细胞影响血管平滑肌细胞增殖中的作用被引量:7
2016年
目的研究血管内皮细胞(endothelial cells,ECs)直接感受低切应力刺激后分泌类胰岛素生长因子-1(insulinlike growth factor-1,IGF-1)影响血管平滑肌细胞(vascular smooth muscle cells,VSMCs)增殖这一过程中microRNAs(miRs)的作用。方法用平行平板流动腔系统对ECs施加1.5 Pa正常切应力(normal shear stress,NSS)和0.5 Pa低切应力(low shear stress,Low SS),Real-time PCR检测VSMCs的miRs变化。用miRs预测网站预测miR-133b靶基因并验证。Western blotting检测核糖核酸结合蛋白1(polypyrimidine tract binding protein 1,Ptbp1)和N-myc下游调节基因1(N-myc downstream regulated 1,Ndrg1)的蛋白水平变化。Ed U流式检测miR-133b对VSMCs增殖的影响。结果 IGF-1静态刺激后,VSMCs的miR-133b和miR-378a表达上升。Low SS条件下,VSMCs的miR-133b表达显著上升,miR-378a表达无明显变化。下调VSMCs的miR-133b表达,Ptbp1、Ndrg1的mRNA水平均显著升高,上调VSMCs的miR-133b的表达,Ptbp1、Ndrg1的mRNA和蛋白水平显著降低,并且显著促进VSMCs增殖。结论在Low SS条件下ECs分泌IGF-1可能通过调控联合培养VSMCs的miR-133b和靶基因Ptbp1和Ndrg1促进VSMCs增殖。研究结果为心血管疾病治疗提供了一个新的潜在靶标。
马英英王璐包晗韩悦齐颖新
关键词:切应力内皮细胞血管平滑肌细胞细胞增殖
Numerical study of biomechanical characteristics of plaque rupture at stenosed carotid bifurcation:a stenosis mechanical property-specific guide for blood pressure control in daily activities
2019年
Acute stress concentration plays an important role in plaque rupture and may cause stroke or myocardial infarction.Quantitative evaluation of the relation between in vivo plaque stress and variations in blood pressure and flow rates is valuable to optimize daily monitoring of the cardiovascular system for high-risk patients as well as to set a safe physical exercise intensity for better quality of life.In this study,we constructed an in vivo stress model for a human carotid bifurcation with atherosclerotic plaque,and analyzed the effects of blood pressure,flow rates,plaque stiffness,and stenosis on the elastic stress and fluid viscous stress around the plaque.According to the maximum values of the mechanical stress,we define a risk index to predict the risk level of plaque rupture under different exercise intensities.For a carotid bifurcation where the blood flow divides,the results suggest that the stenosis ratio determines the ratio of the contributions of elastic shear stress and viscous shear stress to plaque rupture.A n increase of the plaque stiffness enhances the maximum elastic shear stress in the plaque,indicating that a high-stiffness plaque is more prone to rupture for given stenosis ratio.High stress co-localization at the shoulder of plaques agrees with the region of plaque injury in clinical observations.It is demonstrated that,due to the stress-shield effect,the rupture risk of a high-stiffness plaque tends to decrease under high-stenosis conditions,suggesting the existence of a specific stenosis corresponding to the maximum risk.This study may help to complement risk stratification of vulnerable plaques in clinical practice and provides a stenosis mechanical property-specific guide for blood pressure control in cardiovascular health management.
Shaoxiong YangQinghu WangWeihao ShiWencheng GuoZonglai JiangXiaobo Gong
循环肿瘤细胞在不同微循环流动情况下的运动和应力分析
循环肿瘤细胞与血管壁黏附过程是癌症转移的重要一环,模拟循环肿瘤细胞在不同微循环流动情况下的运动和受力是研究循环肿瘤细胞与血管壁黏附的重要基础。本文采用浸入式边界法分,分别模拟了考虑黏附和不考虑黏附情况下,循环肿瘤细胞在不...
景鹏王骁龙龚晓波
关键词:循环肿瘤细胞血流动力学
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A prediction of in vivo mechanical stresses in blood vessels using thermal expansion method and its application to hypertension and vascular stenosis被引量:7
2018年
Mechanical stimuli play critical roles in cardiovascular diseases,in which in vivo stresses in blood vessels present a great challenge to predict.Based on the structural-thermal coupled finite element method,we propose a thermal expansion method to estimate stresses in multi-layer blood vessels under healthy and pathological conditions.The proposed method provides a relatively simple and convenient means to predict reliable in vivo mechanical stresses with accurate residual stress.The method is first verified with the opening-up process and the pressure-radius responses for single and multi-layer vessel models.It is then applied to study the stress variation in a human carotid artery at different hypertension stages and in a plaque of vascular stenosis.Our results show that specific or optimal residual stresses exist for different blood pressures,which helps form a homogeneous stress distribution across vessel walls.High elastic shear stress is identified on the shoulder of the plaque,which contributes to the tearing effect in plaque rupture.The present study indicates that the proposed numerical method is a capable and efficient in vivo stress evaluation of patient-specific blood vessels for clinical purposes.
Shaoxiong YangLucy T.ZhangCheng HuaYunqiao LiuJingdong TangXiaobo GongZonglai Jiang
关键词:CARDIOVASCULARVIVOMULTI-LAYERVESSELHYPERTENSIONVESSEL
血管力学生物学研究进展被引量:3
2018年
2011年春天,我在美国加州大学圣迭戈分校(UCSD)短期访问学习期间有幸第一次拜访了冯元桢先生。还记得当天的天气是圣迭戈典型的阳光明媚,可是让我感触更为深刻的是冯先生睿智的思想、爽朗的笑声和对生物力学学科的热爱.冯先生和我讲到了论语中的'吾日三省吾身:为人谋而不忠乎?与朋友交而不信乎?传不习乎?',先生对于中华文化和思想的理解与践行都深深地打动了我。
齐颖新
关键词:力学生物学血管重建低切应力分子机制生物学研究核骨架
TNF-α促进内皮源性微体的数量与ICAM-1表达被引量:2
2015年
目的探讨高张应变调控的肿瘤坏死因子-α(tumor necrosis factor-α,TNF-α)对内皮源性微体(endothelial microparticles,EMPs)数量与表面细胞间黏附分子-1(intercellular cell adhesion molecule-1,ICAM-1)表达的作用。方法采用Flexercell细胞张应变加载系统对大鼠胸主动脉内皮细胞(endothelial cells,ECs)分别施加5%(模拟正常生理状态)和18%(模拟高血压状态)幅度的周期性张应变,加载频率均为1.25 Hz,加载持续时间为24 h,实时PCR检测不同幅度张应变条件下ECs的TNF-αmRNA表达水平。之后应用TNF-α刺激大鼠胸主动脉ECs,收集上清液,超速离心提取得到内皮源性微体(endothelial microparticles,EMPs);用亲脂性苯乙烯基(lipophilic styryl)以及透射电镜对EMPs进行形态鉴定;流式细胞术对TNF-α刺激产生的Annexin V阳性EMPs进行计数,并检测EMPs表面ICAM-1的表达。结果与5%正常张应变组相比,18%高张应变条件下ECs的TNF-α表达水平显著上升。TNF-α能够显著上调ECs产生Annexin V阳性的EMPs数量,且TNF-α刺激ECs产生的EMPs表面ICAM-1表达量显著增加。结论高张应变条件下ECs高表达TNF-α可能介导了EMPs产生和表面ICAM-1高表达。研究结果为后续探讨EMPs在血管重建力学生物学机制中的作用提供新的实验证据。
吴垒磊庄飞韩悦刘妍妍齐颖新姜宗来
关键词:内皮细胞周期性张应变细胞间黏附分子-1
从生物力学到力学生物学的发展——为冯元桢先生百岁寿辰献礼被引量:1
2018年
今年9月15日将迎来冯元桢先生的百岁华诞。回顾我国生物力学事业发展的历程,看到今天我国生物力学的蓬勃进步,作为亲历者深深地感恩冯先生,是在冯先生的大力推动和热情关怀下,生物力学作为一门新兴的交叉学科在我国起步和发展,又是在冯先生'应力-生长'理论的指引下,经过40年,可以说两代科学家的勤奋努力,我们才有了能够为先生百岁寿辰献上的学术硕果。
姜宗来
关键词:生物力学细胞分子生物医学工程力学生物学
A cellular scale numerical study of the effect of mechanical properties of erythrocytes on the near-wall motion of platelets
2014年
The effect of mechanical properties of erythrocytes on the near-wall motion of platelets was numerically studied with the immersed boundary method. Cells were modeled as viscous-fluid-filled capsules surrounded by hyper-elastic membranes with negligible thickness. The numerical results show that with the increase of hematocrit, the near-wall approaching of platelets is enhanced, with which platelets exhibit larger deformation and orientation angle of its near-wall tank-treading motion, and the lateral force pushing platelets to the wall is increased with larger fluctuation amplitude. Meanwhile the near-wall approaching is reduced by increasing the stiffness of erythrocytes.
Jing XuXiao-Long WangYun-Qiao LiuXiao-Bo Gong
关键词:红细胞压积
颈动脉分叉处血管粥样硬化斑块的体内应力分析被引量:9
2019年
目的探究颈动脉分叉处血管斑块的体内应力分布,为颈动脉分叉处血管斑块破裂行为的研究和诊断治疗方案的设计提供力学机理参考。方法基于人体颈动脉分叉血管的平均几何参数,建立三维颈动脉分叉血管及其斑块的几何模型,通过"热-结构"耦合重建颈动脉分叉血管及其斑块的残余应力,并计算血压和血流分别作用下颈动脉分叉处血管斑块的体内应力。结果斑块的肩部同时存在着最大主应力和弹性剪切应力的应力集中。斑块肩部的弹性剪切应力随着狭窄率增大或血压升高均增加。斑块上游区域的流体壁面切应力明显高于斑块下游区域,斑块下游区域的振荡剪切指数则显著大于上游区域。且斑块的弹性剪切应力和流体壁面切应力大小随着狭窄率的变化呈现出不同的变化规律。结论斑块从内部中心位置到壁面肩部承受着非均匀的应力分布,血管严重狭窄时"内压外拉"的受力状态更容易导致斑块破裂。随着血压的变化,斑块结构应力的周期性变化可能使斑块产生结构疲劳,增加破裂风险。斑块上下游区域流体动力学参数的差异可能是斑块上下游组分、易损程度等性质不同的原因之一。
王庆虎杨少雄许怡隽龚晓波
关键词:粥样硬化斑块颈动脉分叉残余应力斑块破裂
循环肿瘤细胞在不同微循环流动情况下的运动和应力分析
循环肿瘤细胞与血管壁黏附过程是癌症转移的重要一环,模拟循环肿瘤细胞在不同微循环流动情况下的运动和受力是研究循环肿瘤细胞与血管壁黏附的重要基础。本文采用浸入式边界法分,分别模拟了考虑黏附和不考虑黏附情况下,循环肿瘤细胞在不...
景鹏王骁龙龚晓波
关键词:循环肿瘤细胞血流动力学
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