...
首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >A neuron-benign microfluidic gradient generator for studying the response of mammalian neurons towards axon guidance factors
【24h】

A neuron-benign microfluidic gradient generator for studying the response of mammalian neurons towards axon guidance factors

机译:一种神经元良性微流梯度发生器,用于研究哺乳动物神经元对轴突指导因子的反应

获取原文
获取原文并翻译 | 示例
           

摘要

Investigation of biochemical cues in isolation or in combinations in cell culture systems is crucial for unraveling the mechanisms that govern neural development and repair. The most widely used experimental paradigms that elicit axon guidance in vitro utilize as the source of the gradient a pulsatile pipette, transfected cells, or a loaded gel, producing time-varying gradients of poor reproducibility which are not well suited for studying slow-growing mammalian cells. Although microfluidic device design have allowed for generating stable, complex gradients of diffusible molecules, the flow-induced shear forces in a microchannel has made it impossible to maintain viable mammalian neuronal cultures for sufficiently long times. In this paper, we describe axonal responses of mouse cortical neurons in a "neuron-benign" gradient-generator device based on an open chamber that can establish highly stable gradients of diffusible molecules for at least 6 h with negligible shear stress, and also allows the neurons to thrive for at least 2 weeks. Except for the period when the gradient is on, the cells in the gradient are under the same conditions as the cells on the control surfaces, which ensure a consistent set of micro-environmental variables. The gradient stability and uniformity over the cell culture surface achieved by the device, together with our software platform for acquiring, post-processing and quantitatively analyzing the large number of images allowed us to extract valuable information even from small datasets. We report a directed response of primary mammalian neurons (from E14 embryonic mice cortex) to a diffusible gradient of netrin in vitro. We infer from our studies that a large majority (similar to 73%) of the neurons that extend axons during the gradient application grow towards the netrin source, and our data analysis also indicates that netrin acts as a growth factor for this same population of neurons.
机译:在细胞培养系统中分离或组合研究生化线索对于阐明控制神经发育和修复的机制至关重要。引起轴突引导的最广泛使用的实验范式利用搏动吸管,转染的细胞或上样的凝胶作为梯度的来源,产生了重现性差的随时间变化的梯度,不适用于研究生长缓慢的哺乳动物细胞。尽管微流体装置的设计允许产生稳定,复杂的可扩散分子梯度,但是在微通道中由流动引起的剪切力使得不可能将哺乳动物的神经元培养物维持足够长的时间。在本文中,我们描述了基于开放腔室的“神经元良性”梯度发生器中的小鼠皮质神经元的轴突响应,该开放腔室可在至少6 h的时间内建立可扩散分子的高度稳定梯度,且剪切应力可忽略不计,并且允许神经元至少可以存活2周。除了打开渐变的时间段外,渐变中的单元格与控制表面上的单元格处于相同条件下,这确保了一组一致的微环境变量。该设备在细胞培养表面上实现的梯度稳定性和均匀性,再加上我们用于获取,后处理和定量分析大量图像的软件平台,使我们甚至可以从较小的数据集中提取有价值的信息。我们报告了主要的哺乳动物神经元(从E14胚胎小鼠皮层)到netrin的体外扩散梯度的定向反应。从我们的研究中可以推断出,在梯度应用过程中,大多数轴突的神经元(约占73%)向着netrin源生长,并且我们的数据分析还表明,netrin充当了同一神经元群体的生长因子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号