Role of endothelial cells in the regulation of mechanical microenvironment on tumor progression

来源 :力学学报(英文版) | 被引量 : 0次 | 上传用户:gzhguozhihong
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Majority of cancer patients die from cancer metastases.The physical stimulation produced by microenvironment regulates invasive behavior of cancer cells.Blood vessel is one of the“pathways”for cancer to metastasize,in which tumor cells need to cross the endothelial barrier for intravasation and extravasation.Tumor vessels are arranged in untraditional hierarchies and characterized with rupture,bend,swell and high permeability that are beneficial to intravasation of cancer cell.Abnormal vessels are accompanied with uneven blood flow,increased compression and interstitial fluid pressure.Meanwhile,exces-sive proliferation of tumor leads to low oxygen pressure in solid tumor.The aberrant tumor mechanical microenvironment changes the biochemical and mechanical signal transduction of endothelial cells and participates in tumor progression.Many current researches focus on how chemical signals regulate endothelial cell function while the role of physical cues is unclear.In this review,the role of endothelial cells in the regulation of shear stress,intercellular force,extracellular matrix and pressure on tumor progression is summarized.
其他文献
A novel statistical second-order reduced multiscale(SSRM)approach is established for nonlinear composite materials with random distribution of grains.For these composites considered in this work,the complex microstructure of grains,including their shape,o
Optical dynamic measurements are widely used for non-contact vibration,continuous deformation,or moving objects.Various measurement techniques were developed for different deformation amplitudes.This paper reviews three types of technique for different me
Decoding genetic information is crucial for gene therapy and cancer diagnosis,which has attracted growing interest in the field of clinical medicine and life science.In this study,we conducted a comprehensive exploration to obtain the detection mechanism
Poroelasticity of cytoplasm is a rate-and size-dependent biphasic material behavior that reflects the normal activities and pathological states of cells,mainly caused by the migration of fluid molecules and the deformation of porous solid skeleton(protein
In this paper,we derive mathematical formulas for the skin friction coefficient in wall-bounded turbulence based on the Reynolds averaged streamwise momentum equation and the total stress.Specifically,with a theoretical or empirical relation of the total
Nature and technology often adopt structures that can be described as tubular helical assemblies.However,the role and mechanisms of these structures remain elusive.In this paper,we study the mechanical response under compression and extension of a tubular
针对过冷云分布的探测,设计了一种近红外机载偏振同轴微脉冲激光雷达系统.该系统采用波长1550 nm激光激励,可有效减少云中小尺度气溶胶粒子的消光,从而提高大尺度云粒子的探测距离和效率.通过非球形粒子的退偏比来甄别云粒子相态,同时提出了云含水量的激光雷达反演算法,并结合机载温度数据和对流层特征,反演过冷云的空间分布.基于标准大气模型和机载仪器的云粒子谱数据,仿真分析了不同激励波长偏振微脉冲激光雷达在两种对流层云中的探测性能,结果表明下层云中的探测距离约为1.1 km,而上层云中的探测距离可达1.5 km.
As originally proposed by professor Alberto Corigliano of Politecnico di Milano and professor Jizeng Wang of Lan-zhou University,the Chinese Society of Theoretical and Applied Mechanics(CSTAM)and the Italian Association for Theoretical and Applied Mechani
期刊
研究了玻色-爱因斯坦凝聚孤子在双势作用下的动力学演化,基于数值模拟详细讨论了双势阱、双势垒和混合势的相关参数对玻色-爱因斯坦凝聚孤子演化的影响.提出了一种操控玻色-爱因斯坦凝聚孤子位置的方法,并研究了双孤子在双势阱和双势垒中的演化行为.结果表明:单孤子会在不同参数的双势作用下表现出摆动、遂穿和被势阱俘获等不同的演化行为;控制双势的参数达到合适的数值时,双孤子则会展现出被势阱吸引和被势垒排斥的现象.
Nonlinear vibration absorbers have been widely used for vibration suppression of elastic structures,but they were usually placed within the structures.However,designing such a vibration damping device within an engineering structure is pos-sibly difficult