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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Extracellular matrix stiffness modulates VEGF calcium signaling in endothelial cells: individual cell and population analysis
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Extracellular matrix stiffness modulates VEGF calcium signaling in endothelial cells: individual cell and population analysis

机译:细胞外基质硬度调节内皮细胞中的VEGF钙信号传导:单个细胞和群体分析

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Vascular disease and its associated complications are the number one cause of death in the Western world. Both extracellular matrix stiffening and dysfunctional endothelial cells contribute to vascular disease. We examined endothelial cell calcium signaling in response to VEGF as a function of extracellular matrix stiffness. We developed a new analytical tool to analyze both population based and individual cell responses. Endothelial cells on soft substrates, 4 kPa, were the most responsive to VEGF, whereas cells on the 125 kPa substrates exhibited an attenuated response. Magnitude of activation, not the quantity of cells responding or the number of local maximums each cell experienced distinguished the responses. Individual cell analysis, across all treatments, identified two unique cell clusters. One cluster, containing most of the cells, exhibited minimal or slow calcium release. The remaining cell cluster had a rapid, high magnitude VEGF activation that ultimately defined the population based average calcium response. Interestingly, at low doses of VEGF, the high responding cell cluster contained smaller cells on average, suggesting that cell shape and size may be indicative of VEGF-sensitive endothelial cells. This study provides a new analytical tool to quantitatively analyze individual cell signaling response kinetics, that we have used to help uncover outcomes that are hidden within the average. The ability to selectively identify highly VEGF responsive cells within a population may lead to a better understanding of the specific phenotypic characteristics that define cell responsiveness, which could provide new insight for the development of targeted anti- and pro-angiogenic therapies.
机译:血管疾病及其相关并发症是西方世界第一大死亡原因。细胞外基质变硬和内皮细胞功能异常均导致血管疾病。我们检查了内皮细胞钙信号转导对血管内皮生长因子的响应作为细胞外基质硬度的函数。我们开发了一种新的分析工具,可以分析基于群体的反应和单个细胞的反应。软基质上的内皮细胞(4 kPa)对VEGF的响应最强,而125 kPa基质上的细胞则显示减弱的应答。激活的大小而不是响应的细胞数量或每个细胞所经历的局部最大值的数量区分了响应。在所有治疗中,单独的细胞分析确定了两个独特的细胞簇。包含大部分细胞的一簇细胞显示出最少或缓慢的钙释放。其余的细胞簇具有快速的,高强度的VEGF激活,最终激活了基于群体的平均钙反应。有趣的是,在低剂量的VEGF下,高响应细胞簇平均包含较小的细胞,这表明细胞的形状和大小可能表示VEGF敏感的内皮细胞。这项研究提供了一种新的分析工具,可以定量分析单个细胞信号转导的动力学,我们已经用来帮助揭示平均水平内所隐藏的结果。选择性鉴定群体中高VEGF反应性细胞的能力可能导致对定义细胞反应性的特定表型特征有更好的了解,这可以为靶向抗血管生成和促血管生成疗法的发展提供新的见识。

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