您的位置: 专家智库 > >

国家自然科学基金(11202053)

作品数:5 被引量:16H指数:2
相关作者:杨洪伟姚伟曾毅更多>>
相关机构:复旦大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划上海市自然科学基金更多>>
相关领域:医药卫生理学生物学更多>>

文献类型

  • 5篇中文期刊文章

领域

  • 3篇医药卫生
  • 1篇生物学
  • 1篇理学

主题

  • 3篇INTERS...
  • 2篇RELEAS...
  • 2篇FLUID_...
  • 2篇LTC4
  • 2篇MAST_C...
  • 1篇多孔介质
  • 1篇原纤维
  • 1篇针刺
  • 1篇针刺效应
  • 1篇细胞
  • 1篇细胞力学
  • 1篇细胞外
  • 1篇细胞外基质
  • 1篇基质
  • 1篇胶原纤维
  • 1篇肥大
  • 1篇胞外基质
  • 1篇NETWOR...
  • 1篇SYSTEM
  • 1篇ANALYT...

机构

  • 1篇复旦大学

作者

  • 1篇曾毅
  • 1篇姚伟
  • 1篇杨洪伟

传媒

  • 1篇复旦学报(自...
  • 1篇Journa...
  • 1篇Journa...
  • 1篇Scienc...
  • 1篇Advanc...

年份

  • 1篇2016
  • 1篇2014
  • 3篇2013
5 条 记 录,以下是 1-5
排序方式:
Dynamics of Calcium Signal and Leukotriene C_(4) Release in Mast Cells Network Induced by Mechanical Stimuli and Modulated by Interstitial Fluid Flow被引量:1
2016年
Mast cells(MCs)play an important role in the immune system.Through connective tissues,mechanical stimuli activate intracellular calcium signaling pathways,induce a variety of mediators including leukotriene C4(LTC4)release,and affect MCs’microenvironment.This paper focuses on MCs’intracellular calcium dynamics and LTC4 release responding to mechanical stimuli,explores signaling pathways in MCs and the effect of interstitial fluid flow on the transport of biological messengers and feedback in the MCs network.We use a mathematical model to show that(i)mechanical stimuli including shear stress induced by interstitial fluid flow can activate mechano-sensitive(MS)ion channels on MCs’membrane and allow Ca^(2+)entry,which increases intracellular Ca^(2+)concentration and leads to LTC4 release;(ii)LTC4 in the extracellular space(ECS)acts on surface cysteinyl leukotriene receptors(LTC4R)on adjacent cells,leading to Ca^(2+)influx through Ca^(2+)release-activated Ca^(2+)(CRAC)channels.An elevated intracellular Ca^(2+)concentration further stimulates LTC4 release and creates a positive feedback in the MCs network.The findings of this study may facilitate our understanding of the mechanotransduction process in MCs induced by mechanical stimuli,contribute to understanding of interstitial flow-related mechanobiology in MCs network,and provide a methodology for quantitatively analyzing physical treatment methods including acupuncture and massage in traditional Chinese medicine(TCM).
Wei YaoHongwei YangYabei LiGuanghong Ding
关键词:NETWORK
A dynamic model of calcium signaling in mast cells and LTC_4 release induced by mechanical stimuli
2014年
Mast cells(MCs) play an important role in the immune system. It is known that mechanical stimuli can induce intracellular Ca2+signal and release a variety of mediators, including leukotriene C4(LTC4), leading to other cellular and physiological changes. In this paper, we present a mathematical model to explore signalling pathways in MCs, by including cellular mechanisms for intracellular Ca2t increase and LTC4release in response to mechanical stimuli, thapsigargin(TG, SERCA pump inhibitor), and LTC4 stimuli. We show that(i) mechanical stimuli activate mechano-sensitive ion channels and induce inward ion fluxes and Ca2?entry which increases intracellular Ca2+concentration and releases LTC4;(ii) TG inhibits SERCA pumps, empties the internal Ca2+ stores,which activates Ca2+release-activated Ca2+channels and results in sustained intracellular Ca2+increase; and(iii)LTC4activates receptors on MCs surface and increases intracellular Ca2+concentration. Our results are consistent with experimental observations, and furthermore, they also reveal that mechanical stimuli can increase intracellular Ca2+even when LTC4release is blocked, which suggests a feed forward loop involved in LTC4production. This study may facilitate our understanding of the mechanotransduction process in MCs and provide a useful modeling tool for quantitatively analyzing immune mechanisms involving MCs.
Wei YaoHuaxiong HuangGuanghong Ding
关键词:CELLSCALCIUMSIGNALINGLTC4RELEASE
Analytic solutions of the interstitial fluid flow models被引量:2
2013年
In this paper, we present the analytic solutions of several continuum porous media models that describe the interstitial fluid flow in the interosseous membrane. We first compare the results of the Brinkman, Stokes and Darcy systems in describing the isotropic interstitial fluid flows. Our calculations show that the Stokes equations can well approximate the Brinkman equations when the Darcy number Da 〉 0.2, while the Darcy model is an appropriate approximation to the Brinkman model in the interosseous membrane when Da 〈 2 × 10-4. Yet, in most cases, the anisotropy dominates the interstitial fluid. Therefore, we build an anisotropic Darcy model and show that an isotropic model can be used as a suitable approximation when the ratio between the transverse and longitudinal permeabilities is no larger than 20. Lastly, we take the blood flow in capillaries into consideration as well and introduce the coupled Stokes-Darcy system to describe the cases comprising both the capillary and the interstitial domain. Our results reveal that the profile of the interface exchange flow is not exactly in the linear form as was widely adopted in the numerical simulation, instead, the flux near the artery and the vein is more significant, which in turn results in the increase of the maximum horizontal velocity in the interstitial space while the outflow rate remains the same.
姚伟李亚贝陈南
胶原纤维对肥大细胞力学环境的影响及其与针刺效应的相关性研究被引量:2
2013年
基于肥大细胞及周围组织液与纤维的特征,建立了三维生物力学模型并进行了模拟计算,计算结果显示:纤维结构对细胞周围的力学环境有着显著的影响,并对肥大细胞有一定的保护作用,尤其与组织液流动方向相垂直的纤维影响效果较明显;数值模拟针灸过程中,肥大细胞周围纤维数量的增多会增大细胞表面的最大流速和最大切应力,从而促进肥大细胞的活化和脱颗粒.模型的研究结果与临床和经络针灸实验的研究结果相一致,有助于从生物力学角度对针刺作用的机理进行分析.
曾毅杨洪伟姚伟
关键词:细胞外基质胶原纤维多孔介质
Mechanisms of Qi-blood circulation and Qi deficiency syndrome in view of blood and interstitial fluid circulation被引量:11
2013年
OBJECTIVE: Based on comparison between fundamental theories of Traditional Chinese Medicine (TCM) and Western Medicine (WM) and modern scientific research on meridians, we find that "Qi" in TCM is closely related to tissue fluid. In this study, the essence of Qi is explored in the view of circulation of blood and interstitial fluid. METHODS: Because the concept of Qi is complicated, Qi deficiency syndrome (QDS) is chosen to probe the relationship between of Qi deficiency and Qi-blood circulation (QBC). We analyze Qi-blood theory in terms of WM, set up a hemodynamic model to describe QBC, and review clinical research on QDS in the view of blood-interstitial fluid circulation. RESULTS: QDS is caused by imbalances of substance exchanges between blood and interstitial fluid, leading to an increase in the interstitial liquid volume or a decrease in nutrients and retention ofmetabolic wastes in interstitial fluid. CONCLUSION: This study describes the essence of Qi, providing support for further research on theories of Qiand Qi-blood circulation inTCM.
Wei YaoHongwei YangGuanghong Ding
共1页<1>
聚类工具0