Probing the mechano-biology of cell-cell adhesion in a novel single cell assay
Probing the mechano-biology of cell-cell adhesion in a novel single cell assay
批准号:
EP/Y002245/1
负责人:
Darius Koester
金额:
$21.07万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2024
资助国家:
英国
项目状态:
未结题
起止时间:
2024 至 --
中文摘要
我们,动物和许多其他生物体都是由许多细胞组成的。这些细胞并不是被动地粘在一起的简单积木,而是每个细胞都包含一个复杂的机制来连接它的邻居并相互施加力。这种至关重要的能力是由细胞表面的多种粘附分子提供的,这些粘附分子通过衔接蛋白连接到产生力的细胞骨架上。力的平衡以及不同细胞相互粘附的强度都是发育过程中细胞运动和分化协调的重要线索。现在很清楚,细胞水平上的机械变化可以改变组织的命运。在癌症中,导致转移的细胞脱离与细胞力学的变化有关。我们感兴趣的是剖析细胞间粘附中细胞内机械信号的基础。为此,我们正在建立一个新的国际合作,以研究细胞粘附过程中力的作用。我们使用新的检测方法,通过用含有粘附分子的平面脂质双层代替一个细胞,用高分辨率荧光显微镜观察细胞-细胞粘附界面。这将与三种机械操作模式相结合:限制,剪切应力和横向拉伸。除了荧光显微镜技术,以遵循粘附和细胞骨架蛋白的动态,我们将采用干涉反射显微镜,以揭示纳米精度的细胞膜的波动。这将使我们对细胞粘附过程中的蛋白质动力学和细胞膜力学有一个前所未有的了解。用于此类实验的工具通常由单个实验室制造,这限制了能够使用此类设备的人员的范围。这就是为什么我们希望利用这次合作的综合专业知识来设计和工程机械WOSM,这是一个用于机械生物学实验的开源显微镜平台。
英文摘要
We, animals and many other organisms are built from lots of cells. These are not simple building blocks that are passively stuck together, but each cell contains an elaborate machinery to connect to its neighbours and exert force on one other. This crucial ability is provided by multiple adhesion molecules at the cell surface that link up to the force generating cytoskeleton via adapter proteins. The balancing of forces and how strong different cells stick to each other are all important cues in the orchestration of cell motion and differentiation during development. And it is now clear that mechanical changes on the cellular level can alter the fate of the tissue. In cancer, the detachment of cells leading to metastasis is related to a change of cell mechanics.We are interested to dissect the basis of intracellular mechanical signalling in cell-cell adhesion. For this, we are establishing a new international collaboration to study the role of forces in the process of cell adhesion. We use novel assay to look at the cell-cell adhesion interface with high resolution fluorescence microscopy by replacing one cell with a planar lipid bilayer containing adhesion molecules. This will be combined with three modes of mechanical manipulations: confinement, shear stress and lateral stretch. In addition to fluorescence microscopy techniques to follow the dynamics of adhesion and cytoskeletal proteins, we will employ interferometric reflection microscopy to reveal the fluctuations of the cell membrane with nanometre precision. This will give us an unprecedented insight into the protein dynamics and cell membrane mechanics during cell adhesion. The tools for such experiments are often built by individual labs which limits the range of people having access to such equipment. That's why we want to use the combined expertise of this collaboration to design and engineer MechanoWOSM, an open source microscope platform for mechano-biology experiments.
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会议论文
Bio-inspired active sheets: control of membrane shape dynamics by force-generating biopolymer networks
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批准号:EP/V043498/1
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项目类别:Research Grant
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资助金额:$76.08万
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财政年份:2022
-
负责人:Darius Koester
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依托单位:
国内基金
海外基金
生物力学传导通路mechano-YAP/TAZ对放射损伤引起的勃起功能障碍中组织再生和功能修复的研究
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批准号:82373525
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项目类别:面上项目
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资助金额:49万元
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批准年份:2023
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负责人:畅磊
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依托单位:
振动力量训练促进肌肉力量增加的机制研究
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批准号:10572097
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项目类别:面上项目
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资助金额:36.0万元
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批准年份:2005
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负责人:危小焰
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依托单位: