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Generation of stable complex gradients across two-dimensional surfaces and three-dimensional gels

机译:在二维表面和三维凝胶上生成稳定的复杂梯度

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摘要

Many chemical and biological processes are dependent on molecular gradients. We describe a new microfluidic approach that can be used to produce spatiotemporal gradients across two-dimensional surfaces and three-dimensional gels under flow-free conditions. Free diffusion between dynamically replenished flow channels acting as a sink and source is utilized to give rise to stable steady-state gradient profiles. The gradient profile is dictated by the engineered design of the device's gradient-generating region. Different designs can yield both linear and non-linear gradients of varying profiles. More complex gradients can be made by juxtaposing different designs within a single gradient-generating region. By fabricating an array of designs along the gradient-generating region, different gradient profiles can be generated simultaneously, allowing for parallel analysis. Additionally, simple methods of localizing gels into microdevices are demonstrated. The device was characterized by experimentally obtained gradient profiles of fluorescent molecules that corroborated closely with a simulated finite element model.
机译:许多化学和生物学过程都依赖于分子梯度。我们描述了一种新的微流控方法,可用于在无流动条件下跨二维表面和三维凝胶产生时空梯度。动态补充的流动通道之间的自由扩散(用作汇和源)用于产生稳定的稳态梯度曲线。梯度曲线由设备的梯度生成区域的工程设计决定。不同的设计可以产生变化轮廓的线性和非线性梯度。可以通过在单个梯度生成区域内并置不同的设计来制作更复杂的梯度。通过沿梯度生成区域制作一系列设计,可以同时生成不同的梯度轮廓,从而进行并行分析。此外,展示了将凝胶定位到微型设备中的简单方法。该设备的特点是通过实验获得的荧光分子的梯度曲线得到了证实,该曲线与模拟有限元模型密切相关。

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