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首页> 外文期刊>Journal of the Royal Society Interface >Quantifying the correlation between spatially defined oxygen gradients and cell fate in an engineered three-dimensional culture model
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Quantifying the correlation between spatially defined oxygen gradients and cell fate in an engineered three-dimensional culture model

机译:在工程化三维培养模型中量化空间定义的氧梯度与细胞命运之间的相关性

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摘要

A challenge in three-dimensional tissue culture remains the lack of quantitative information linking nutrient delivery and cellular distribution. Both in vivo and in vitro, oxygen is delivered by diffusion from its source (blood vessel or the construct margins). The oxygen level at a defined distance from its source depends critically on the balance of diffusion and cellular metabolism. Cells may respond to this oxygen environment through proliferation, death and chemotaxis, resulting in spatially resolved gradients in cellular density. This study extracts novel spatially resolved and simultaneous data on tissue oxygenation, cellular proliferation, viability and chemotaxis in three-dimensional spiralled, cellular collagen constructs. Oxygen concentration gradients drove preferential cellular proliferation rates and viability in the higher oxygen zones and induced chemotaxis along the spiral of the collagen construct; an oxygen gradient of 1.03 mmHg mm~(-1) in the spiral direction induced a mean migratory speed of 1015 μm day~(-1). Although this movement was modest, it was effective in balancing the system to a stable cell density distribution, and provided insights into the natural cell mechanism for adapting cell number and activity to a prevailing oxygen regime.
机译:三维组织培养中的一个挑战仍然是缺乏将营养物输送和细胞分布联系在一起的定量信息。在体内和体外,氧气都是通过从其来源(血管或构建体边缘)扩散而递送的。距其来源一定距离的氧气含量主要取决于扩散和细胞代谢的平衡。细胞可能通过增殖,死亡和趋化性对这种氧气环境作出反应,从而导致细胞密度的空间分辨梯度。这项研究提取了三维空间螺旋细胞胶原蛋白构造中有关组织氧合,细胞增殖,活力和趋化性的新的空间分辨和同步数据。氧气浓度梯度推动了较高氧气区域的优先细胞增殖速率和活力,并沿胶原结构的螺旋结构诱导了趋化性。在螺旋方向上1.03 mmHg mm〜(-1)的氧梯度引起的平均迁移速度为1015μmday〜(-1)。尽管这种运动是适度的,但是它在使系统平衡到稳定的细胞密度分布方面是有效的,并提供了对自然细胞机制的见解,以使细胞数量和活性适应当前的氧气状况。

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