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Growth cone response to ephrin gradients produced by microfluidic networks

机译:生长锥对微流网络产生的ephrin梯度的反应

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A microfluidic network (μFN) etched into a silicon wafer was used to deliver protein solutions containing different concentrations of the axonal guidance molecule ephrinA5 onto a silicone stamp. In a subsequent microcontact printing (μCP) step, the protein was transferred onto a polystyrene culture dish. In this way, stepwise substrate-bound concentration gradients of ephrinA5 were fabricated spanning a total distance of 320 μm. We tested the response of chick retinal ganglion cell (RGC) axons, which are guided in vivo by ephrin gradients, to these in vitro gradients. Temporal, but not nasal axons stop at a distinct zone in the gradient, which is covered with a certain surface density of substrate-bound ephrinA5. Within the temporal RGC population, all axons respond uniformly to the gradients tested. The position of the stop zone depends on the slope of the gradient with axons growing further into the gradient in shallow gradients than in steep gradients. However, axons stop at lower ephrinA5 concentrations in shallow gradients than in steep gradients, indicating that the growth cone can adjust its sensitivity during the detection of a concentration gradient of ephrinA5.
机译:蚀刻到硅晶片中的微流体网络(μFN)用于将包含不同浓度的轴突引导分子ephrinA5的蛋白质​​溶液输送到硅树脂印模上。在随后的微接触印刷(μCP)步骤中,将蛋白质转移到聚苯乙烯培养皿上。以此方式,制造了跨越320μm总距离的ephrinA5的基质结合的逐步浓度梯度。我们测试了雏鸡视网膜神经节细胞(RGC)轴突的响应,在体外由ephrin梯度指导,对这些体外梯度。颞轴突而非鼻突突终止于梯度的一个明显区域,该区域被基质结合的ephrinA5的一定表面密度所覆盖。在颞RGC群体中,所有轴突均对测试的梯度做出统一响应。停止区的位置取决于梯度的斜率,其中轴突在浅梯度中比在陡峭梯度中进一步生长到梯度中。但是,轴突在浅梯度中的ephrinA5浓度低于陡峭梯度时停止,这表明生长锥可以在检测ephrinA5浓度梯度时调节其灵敏度。

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